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WO2018072062A1 - 信息传输方法和装置 - Google Patents

信息传输方法和装置 Download PDF

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Publication number
WO2018072062A1
WO2018072062A1 PCT/CN2016/102286 CN2016102286W WO2018072062A1 WO 2018072062 A1 WO2018072062 A1 WO 2018072062A1 CN 2016102286 W CN2016102286 W CN 2016102286W WO 2018072062 A1 WO2018072062 A1 WO 2018072062A1
Authority
WO
WIPO (PCT)
Prior art keywords
target uplink
information
terminal device
uplink information
time unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2016/102286
Other languages
English (en)
French (fr)
Inventor
林亚男
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Oppo Mobile Telecommunications Corp Ltd
Original Assignee
Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to CN202110540780.9A priority Critical patent/CN113329500B/zh
Priority to JP2019513429A priority patent/JP6971308B2/ja
Priority to CN202110539993.XA priority patent/CN113329499A/zh
Priority to KR1020197006979A priority patent/KR102719004B1/ko
Priority to CA3036519A priority patent/CA3036519C/en
Priority to US16/331,103 priority patent/US11350417B2/en
Priority to RU2019112311A priority patent/RU2727166C1/ru
Priority to AU2016427037A priority patent/AU2016427037B2/en
Priority to BR112019007625-5A priority patent/BR112019007625B1/pt
Priority to CN201680088941.2A priority patent/CN109691213B/zh
Priority to MX2019004471A priority patent/MX2019004471A/es
Priority to MYPI2019001840A priority patent/MY199232A/en
Application filed by Guangdong Oppo Mobile Telecommunications Corp Ltd filed Critical Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority to PCT/CN2016/102286 priority patent/WO2018072062A1/zh
Priority to EP16919221.8A priority patent/EP3496496B1/en
Priority to TW106130401A priority patent/TWI741025B/zh
Publication of WO2018072062A1 publication Critical patent/WO2018072062A1/zh
Priority to PH12019500542A priority patent/PH12019500542A1/en
Priority to ZA201901616A priority patent/ZA201901616B/en
Priority to IL265460A priority patent/IL265460B/en
Anticipated expiration legal-status Critical
Priority to US17/490,721 priority patent/US20220022191A1/en
Priority to JP2021178234A priority patent/JP2022009774A/ja
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/53Allocation or scheduling criteria for wireless resources based on regulatory allocation policies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/0413MIMO systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0619Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
    • H04B7/0621Feedback content
    • H04B7/0626Channel coefficients, e.g. channel state information [CSI]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/1607Details of the supervisory signal
    • H04L1/1671Details of the supervisory signal the supervisory signal being transmitted together with control information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1867Arrangements specially adapted for the transmitter end
    • H04L1/1893Physical mapping arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signalling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signalling, i.e. of overhead other than pilot signals
    • H04L5/0055Physical resource allocation for ACK/NACK
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signalling, i.e. of overhead other than pilot signals
    • H04L5/0057Physical resource allocation for CQI
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0453Resources in frequency domain, e.g. a carrier in FDMA
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W74/00Wireless channel access
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/02Selection of wireless resources by user or terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network

Definitions

  • the present application relates to the field of communications and, more particularly, to an information transmission method and apparatus in the field of communications.
  • the current New Radio (“NR") system supports dynamic frame structure configuration, that is, dynamically determines uplink and downlink transmission time resources in a frequency band according to service requirements. Therefore, there may be three time units in one frequency band: an uplink time unit, a downlink time unit, and a hybrid time unit, wherein the uplink time unit is used for transmitting uplink information, the downlink time unit is used for transmitting downlink information, and the hybrid time unit is used for transmitting uplink information. Information and downstream information.
  • the uplink information mainly includes: uplink control information, uplink data information, and an uplink reference signal.
  • the uplink control information includes Acknowledgement/Non-Acknowledgement (abbreviated as "ACK/NACK”) information, Channel State Information (CSI), and aperiodic CSI.
  • ACK/NACK Acknowledgement/Non-Acknowledgement
  • CSI Channel State Information
  • the sending time of the periodic CSI is semi-statically configured by the base station; after receiving the downlink data sent by the network device, the ACK/NACK information is sent by the terminal device to the network device, and therefore, the ACK/NACK information can be related to the downlink data. Transmission in the same time unit may also be transmitted in other time units after the time unit in which the downlink data is transmitted.
  • the terminal device always uses a single type of time unit to perform uplink information transmission. For example, for periodic CSI, the CSI is used in each transmission period, or the CSI is used in each transmission period. Mixing time units, which inevitably affects the flexibility of time resource allocation in the system.
  • the information transmission method and apparatus provided by the embodiments of the present application can improve the flexibility of time resource allocation in the system.
  • an information transmission method comprising: determining, by a terminal device, a first transmission mode used for transmitting target uplink information in a first time unit, where the first transmission mode and the terminal device are in a first The second transmission used to transmit the target uplink information in the second time unit The time length of the second time unit for transmitting the target uplink information is different from the time length for transmitting the target uplink information in the first time unit; the terminal device uses the The first transmission mode sends the target uplink information to the network device.
  • the first transmission mode used for transmitting the target uplink information in the first time unit is determined by the terminal device, and the target uplink information is sent to the network device by using the first transmission mode, where The first transmission mode is different from the second transmission mode used by the terminal device to transmit the target uplink information in a second time unit different from the first time unit.
  • the terminal device can send the target uplink information through different time units by using different transmission modes, which can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • the first transmission unit may be a hybrid time unit
  • the second transmission unit may be a conventional uplink time unit, but the embodiment of the present invention does not limit this.
  • the foregoing time unit can be understood as a transport block (referred to as “TB”).
  • the time unit may be a basic unit of a time domain physical resource for transmitting a signal, and may be a subframe, a Transmission Time Interval (TTI), a time slot, and an orthogonal frequency division multiplexing.
  • TTI Transmission Time Interval
  • OFDM Orthogonal Frequency Division Multiplexing
  • RE Resource Element
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes: receiving, by the terminal device a first notification message sent by the network device, where the first notification message is used to notify the terminal device that the target uplink information can be transmitted in the first time unit and the second time unit.
  • the target uplink information includes acknowledgement/non-acknowledgment ACK/NACK information and/or periodic channel state information CSI.
  • the first transmission manner includes at least one of the following manners and the second transmission mode includes the following At least one of the different manners: a pre-processing manner of the target uplink information by the terminal device; a transmission mode used by the terminal device to transmit the target uplink information, where the transmission mode is multiple input multiple output MIMO transmission Mode; the terminal device transmits the target The number of frequency domain resources used by the line information; the transmission power used by the terminal device to transmit the target uplink information; and the resource number of the resource used by the terminal device to transmit the target uplink information.
  • the foregoing pre-processing manner may be a compression process, or may be a merge process, which is not limited in this embodiment of the present application.
  • the foregoing transmission mode may be a transmission diversity mode, and may also be other transmission modes such as spatial multiplexing, beamforming, and the like, which is not limited in this embodiment of the present application.
  • the terminal device determines, by using the first transmission manner, that the target uplink information is used in the first time unit, including: Determining, by the terminal device, a first transmission mode used to transmit the target uplink information in the first time unit, where the first transmission mode is a pre-agreed transmission mode.
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes: the terminal device receiving, by the network device, a first transmission mode used by the network device to transmit the target uplink information in the first time unit.
  • the first transmission mode may be a transmission mode determined by the terminal device directly according to a predetermined agreement, or may be a transmission mode directly configured by the network device to the terminal device. It should be understood that the first transmission mode adopted by the terminal device in the first time unit may be the same as the second transmission mode used in the second time unit, or may be different, which is not limited by the embodiment of the present application.
  • the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit includes: Determining, by the terminal device, the quantity of the first frequency domain resource used for transmitting the target uplink information in the first time unit according to at least one of the following information: the quantity of the second frequency domain resource, the first time The number of uplink time resources in the unit and the number of uplink time resources in the second time unit, where the second frequency domain resource quantity is that the terminal device transmits the target uplink information in the second time unit The number of frequency domain resources used; or the terminal device determines the quantity of the first frequency domain resource according to a pre-agreed parameter or a pre-agreed rule.
  • the terminal device may determine the quantity of the first frequency domain resource in multiple manners. Because the terminal device knows the size of the target uplink information, the terminal device may directly determine the number of uplink time resources in the first time unit. Determining the quantity of the first frequency domain resource; the terminal device may Determining, according to the quantity of the second frequency domain resource used for transmitting the target uplink information in the second time unit, the quantity of the first frequency domain resource; the terminal device may be based on the quantity of the second frequency domain resource and the first time unit The number of the uplink time resources is determined by the number of the first frequency domain resources; the terminal device may also combine the quantity of the second frequency domain resources, the number of uplink time resources in the first time unit, and the uplink time in the second time unit.
  • the number of resources determines the number of the first frequency domain resources mentioned above.
  • the terminal device may determine the quantity of the first frequency domain resource according to a pre-agreed parameter or a pre-agreed rule, which is not limited in this embodiment of the present application.
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, The method further includes: the terminal device receiving, by the network device, a quantity of a first frequency domain resource used by the network device to transmit the target uplink information in the first time unit.
  • the number of the first frequency domain resources may be determined by the terminal device directly according to a pre-agreed agreement, or may be directly configured by the network device to the terminal device, which is not limited in this embodiment of the present application.
  • the quantity of the first frequency domain resource is The A and the B are all positive numbers, and the A is the second frequency domain resource quantity or a pre-agreed parameter, and the B is a pre-agreed parameter, and the parameter is determined according to a pre-agreed rule.
  • the terminal device receives a parameter sent by the network device.
  • the number of the first frequency domain resources determined according to A and B can be obtained by using a plurality of different combinations.
  • the embodiment of the present invention does not limit this.
  • the method further includes: receiving, by the terminal device, the first power adjustment message sent by the network device The first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit, or the first power adjustment message is used to adjust transmission in the first time unit Transmitting the transmit power of the target uplink information and the transmit power of the target uplink information in the second time unit; the terminal device determining the first transmission mode used to transmit the target uplink information in the first time unit, including: Determining, by the terminal device, the first transmit power used to transmit the target uplink information in the first time unit according to the first power adjustment message.
  • the first time unit and the second time unit may adopt an independent power control manner, or may adopt a unified power control manner, that is, the first power adjustment information may be used only to adjust the transmission of the target in the first time unit.
  • the transmit power of the uplink information may be used to adjust the transmit power of the target uplink information in the first time unit and the transmit power of the target uplink information in the second time unit, which is not limited in this embodiment of the present application.
  • the terminal device determines, by using, the first transmission manner used for transmitting the target uplink information in the first time unit, including Determining, by the terminal device, the first resource number used to transmit the target uplink information in the first time unit according to the first information, where the first information is different from the second information, and the The second information is used by the terminal device to determine a second resource number used to transmit the target uplink information in the second time unit.
  • the foregoing first information may be a specific resource number, or may be other parameters related to the resource number, such as a physical resource number occupied by the downlink control signaling, or a physical resource number occupied by the downlink data channel, or other
  • the high-level signaling is not limited in this embodiment of the present application.
  • the terminal device determines a first transmission manner used for transmitting the target uplink information in the first time unit, including Determining, by the terminal device, the first resource number used to transmit the target uplink information in the first time unit according to the third information and the first algorithm, where the first algorithm is different from the second algorithm,
  • the second algorithm is used by the terminal device to determine, according to the third information, a second resource number used to transmit the target uplink information in the second time unit.
  • the foregoing third information may be configuration signaling that is sent by the network device to the terminal device, for example, downlink control signaling, high-layer signaling, and the like, which is not limited by the embodiment of the present application.
  • the foregoing first algorithm may be a pre-agreed algorithm, or may be an algorithm configured by the network device for the terminal device, which is not limited in this embodiment of the present application.
  • the first preprocessing manner is to select the periodic CSI.
  • the information with the highest priority is transmitted; or if the target uplink information is ACK/NACK information, the first pre-processing manner is to perform the combining processing on the ACK/NACK information.
  • the second aspect provides an information transmission method, where the method includes: the network device receives target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, where the first transmission mode is related to the terminal device The second transmission mode in which the target uplink information is transmitted in the second time unit is different, and the time length of the second time unit for transmitting the target uplink information is used to transmit the target in the first time unit The length of the uplink information is different.
  • the information transmission method of the embodiment of the present application receives, by the network device, target uplink information that is sent by the terminal device according to the first transmission mode, where the first transmission mode and the terminal device are different from the second time unit.
  • the second transmission method used to transmit the target uplink information in the time unit is different.
  • the network device can receive the target uplink information by using the different transmission modes of the terminal device, and can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • the target uplink information includes acknowledgement/non-acknowledgment ACK/NACK information and/or periodic channel state information CSI.
  • the first transmission manner includes at least one of the following manners and the second transmission mode includes the following At least one of the different manners: a pre-processing manner of the target uplink information by the terminal device; a transmission mode used by the terminal device to transmit the target uplink information, where the transmission mode is multiple input multiple output MIMO transmission a mode; a quantity of a frequency domain resource used by the terminal device to transmit the target uplink information; a transmission power used by the terminal device to transmit the target uplink information; and a used by the terminal device to transmit the target uplink information The resource number of the resource.
  • a third possible implementation in the second aspect In the mode, before the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes: sending, by the network device, the The first transmission mode used by the target uplink information in the first time unit.
  • the network device in the network device, receives a target uplink that is sent by the terminal device in the first transmission unit by using the first transmission mode. Before the information, the method further includes: sending, by the network device, the first frequency domain resource used by the target uplink device to transmit the target uplink information in the first time unit.
  • the quantity of the first frequency domain resource is The A and the B are all positive numbers, and the A is the second frequency domain resource quantity or a pre-agreed parameter, and the B is a pre-agreed parameter, and the parameter is determined according to a pre-agreed rule.
  • the terminal device receives a parameter sent by the network device.
  • the network device in the network device, receives a target uplink that is sent by the terminal device in the first transmission unit by using the first transmission mode. Before the information, the method further includes: the network device sending a first power adjustment message to the terminal device, where the first power adjustment message is used to adjust to transmit the target uplink information in the first time unit Sending power, or the first power adjustment message is used to adjust transmit power of transmitting the target uplink information in the first time unit and transmit power of transmitting the target uplink information in the second time unit.
  • the network device sends the third information and the first algorithm to the terminal device, where the third information And the first algorithm is used by the terminal device to determine a first resource number used to transmit the target uplink information in the first time unit, and the first algorithm is different from the second algorithm, where the The second algorithm is used by the terminal device to determine, according to the third information, a second resource number used to transmit the target uplink information in the second time unit.
  • the first pre-processing manner is to select the periodic CSI priority The highest level information is transmitted; or if the target uplink information is ACK/NACK information, the first preprocessing mode is to perform merging processing on the ACK/NACK information.
  • the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission manner.
  • the method further includes: the network device sending a first notification message to the terminal device, where the first notification message is used to notify the terminal device that the first time unit and the second time are The target uplink information is transmitted in the unit.
  • an information transmission apparatus for performing the method of any of the above first aspect or any of the possible implementations of the first aspect.
  • the apparatus comprises means for performing the method of any of the above-described first aspect or any of the possible implementations of the first aspect.
  • an information transmission apparatus for performing the method of any of the above-described second aspect or any of the possible implementations of the second aspect.
  • the apparatus comprises means for performing the method of any of the above-described second aspect or any of the possible implementations of the second aspect.
  • an information transmission apparatus comprising: a receiver, a transmitter, a memory, a processor, and a bus system.
  • the receiver, the transmitter, the memory and the processor are connected by the bus system, the memory is for storing instructions for executing the instructions stored by the memory to control the receiver to receive signals and control the sending Send a signal and when When the processor executes the instructions stored by the memory, the execution causes the processor to perform the method of the first aspect or any of the possible implementations of the first aspect.
  • an information transmission apparatus comprising: a receiver, a transmitter, a memory, a processor, and a bus system.
  • the receiver, the transmitter, the memory and the processor are connected by the bus system, the memory is for storing instructions for executing the instructions stored by the memory to control the receiver to receive signals and control the sending
  • the transmitter transmits a signal, and when the processor executes the memory stored instructions, the execution causes the processor to perform the method of any of the second aspect or any of the possible implementations of the second aspect.
  • an information transmission system comprising the apparatus of any one of the possible implementations of the third aspect or the third aspect, and any one of the possible implementations of the fourth aspect or the fourth aspect Device; or
  • the system comprises the apparatus of any of the possible implementations of the fifth aspect or the fifth aspect, and the apparatus of any of the possible implementations of the sixth aspect or the sixth aspect.
  • a computer readable medium for storing a computer program, the computer program comprising instructions for performing the method of the first aspect or any of the possible implementations of the first aspect.
  • a ninth aspect a computer readable medium for storing a computer program, the computer program comprising instructions for performing the method of any of the second aspect or the second aspect of the second aspect.
  • FIG. 1 is a schematic flowchart of an information transmission method according to an embodiment of the present application.
  • FIG. 2 is a schematic flowchart of another information transmission method according to an embodiment of the present application.
  • FIG. 3 is a schematic block diagram of an information transmission apparatus according to an embodiment of the present application.
  • FIG. 4 is a schematic block diagram of another information transmission apparatus according to an embodiment of the present application.
  • FIG. 5 is a schematic block diagram of another information transmission apparatus according to an embodiment of the present application.
  • FIG. 6 is a schematic block diagram of another information transmission apparatus according to an embodiment of the present application.
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • GPRS General Packet Radio Service
  • LTE Long Term Evolution
  • FDD Frequency Division Duplex
  • TDD Time Division Duplex
  • UMTS Universal Mobile Telecommunication System
  • WiMAX Global Interoperability for Microwave Access
  • the terminal device may be referred to as a user equipment (User Equipment, referred to as "UE"), a terminal device, a mobile station (Mobile Station, referred to as "MS”), and a mobile terminal (Mobile).
  • UE User Equipment
  • MS Mobile Station
  • Mobile Mobile terminal
  • the terminal devices can communicate with one or more core networks via a Radio Access Network (Radio Access Network, hereinafter referred to as "RAN"), for example, the terminals can be mobile phones ( Or a "cellular" telephone) or a computer with a mobile terminal, etc., for example, the terminal can also be a portable, pocket, handheld, computer built-in or in-vehicle mobile device that exchanges voice and/or with the wireless access network. data.
  • Radio Access Network Radio Access Network
  • RAN Radio Access Network
  • the terminals can be mobile phones ( Or a "cellular" telephone) or a computer with a mobile terminal, etc.
  • the terminal can also be a portable, pocket, handheld, computer built-in or in-vehicle mobile device that exchanges voice and/or with the wireless access network. data.
  • the network device can be used to communicate with the mobile device, and the network device can be a base station in the Global System of Mobile communication (“GSM”) or Code Division Multiple Access (“CDMA”) (Base Transceiver). Station (abbreviated as “BTS”) may also be a base station (NodeB, referred to as "NB”) in Wideband Code Division Multiple Access (WCDMA), or an evolved base station in LTE ( Evolutional Node B, referred to as "eNB” or “eNodeB”, or a relay station or access point, or an in-vehicle device, a wearable device, and an access network device in a future 5G network.
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • BTS Base Transceiver
  • BTS Global System of Mobile communication
  • NB Wideband Code Division Multiple Access
  • eNB Evolutional Node B
  • eNodeB evolved base station in LTE
  • eNB Evolutional Node B
  • eNodeB Evolutional Node B
  • FIG. 1 is a schematic flowchart of an information transmission method 100 according to an embodiment of the present application.
  • FIG. 1 shows the steps or operations of the information transmission method, but the steps or operations are merely examples.
  • the embodiment of the present application may also perform other operations or variants of the operations of FIG. 1.
  • the method 100 includes:
  • the terminal device determines a first transmission mode used to transmit the target uplink information in the first time unit, where the first transmission mode is used by the terminal device to transmit the target uplink information in the second time unit.
  • the second transmission mode is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit;
  • the terminal device sends the target uplink information to the network device by using the first transmission manner.
  • the first transmission mode used for transmitting the target uplink information in the first time unit is determined by the terminal device, and the target uplink information is sent to the network device by using the first transmission mode, where The first transmission mode is different from the second transmission mode used by the terminal device to transmit the target uplink information in a second time unit different from the first time unit.
  • the terminal device can send the target uplink information through different time units by using different transmission modes, which can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • FIG. 2 shows a schematic flowchart of another information transmission method 200 in the embodiment of the present application.
  • FIG. 2 shows the steps or operations of the information transmission method, but the steps or operations are merely examples.
  • the embodiment of the present application may also perform other operations or variants of the operations of FIG. 2, and the method 200 includes:
  • the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, where the first transmission mode and the terminal device transmit the second information of the target uplink information in the second time unit.
  • the transmission mode is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit.
  • the information transmission method of the embodiment of the present application receives, by the network device, target uplink information that is sent by the terminal device by using the first transmission mode, where the first transmission mode and the terminal device are in a second time unit different from the first time unit.
  • the second transmission method used to transmit the target uplink information is different.
  • the network device can receive the target uplink information by using the different transmission modes of the terminal device, and can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • the first transmission unit may be a hybrid time unit
  • the second transmission unit may be a conventional uplink time unit, but the embodiment of the present invention does not limit this.
  • the size of the sequence numbers of the above processes does not mean the order of execution, and the order of execution of each process should be determined by its function and internal logic, and should not be implemented in the present application.
  • the implementation of the examples constitutes any limitation.
  • the foregoing time unit can be understood as a transport block (referred to as “TB”).
  • the time unit may be a basic unit of a time domain physical resource for transmitting a signal, and may be a subframe, a Transmission Time Interval (TTI), a time slot, and an orthogonal frequency division multiplexing.
  • TTI Transmission Time Interval
  • OFDM Orthogonal Frequency Division Multiplexing
  • RE Resource Element
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes:
  • the terminal device receives the first indication information that is sent by the network device, where the first indication information is used to indicate that the terminal device uses the first transmission mode to transmit the target uplink information in the first time unit. ;
  • the terminal device determines to transmit target uplink information in a first transmission manner in the first time unit, including:
  • the terminal device determines the first transmission mode according to the first indication information.
  • the network device before the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the network device sends the first indication information to the terminal device, where The first indication information is used to indicate that the terminal device transmits the target uplink information by using the first transmission mode in the first time unit.
  • the terminal device determines a first transmission manner used to transmit the target uplink information in the first time unit, including:
  • the terminal device determines the first transmission mode according to a pre-agreed rule.
  • the terminal device can determine the transmission target in the first time unit in multiple manners.
  • the first transmission mode used by the uplink information as described above, the first transmission mode may be indicated by the network device, that is, determined by receiving the first indication information sent by the network device, or may be determined by the terminal device according to the pre-agreed
  • the rules of the present application are not limited in this embodiment.
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes: the terminal device receiving, sending, by the network device The first notification message is used to notify the terminal device that the target uplink information can be transmitted in the first time unit and the second time unit.
  • the method further includes: the network device sending the first notification message to the terminal device .
  • the target uplink information includes acknowledgement/non-acknowledgment ACK/NACK information and/or periodic channel state information CSI.
  • the first transmission manner includes at least one of the following manners being different from at least one of the following manners: the terminal device uplink information to the target a preprocessing mode; a transmission mode used by the terminal device to transmit the target uplink information, where the transmission mode is a multiple input multiple output MIMO transmission mode; and the frequency domain resource used by the terminal device to transmit the target uplink information a quantity; a transmission power used by the terminal device to transmit the target uplink information; and a resource number of a resource used by the terminal device to transmit the target uplink information.
  • the foregoing pre-processing manner may be a compression process, or may be a merge process, which is not limited in this embodiment of the present application.
  • the foregoing transmission mode may be a transmission diversity mode, and may also be other transmission modes such as spatial multiplexing, beamforming, and the like, which is not limited in this embodiment of the present application.
  • the terminal device determines the first transmission mode, and the terminal device determines the first transmission mode. Transfer mode. Specifically, the terminal device can determine the first transmission mode in multiple manners, which is not limited in this embodiment of the present application.
  • the terminal device determines a first transmission manner used to transmit the target uplink information in the first time unit, including:
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes:
  • the terminal device receives a first transmission mode that is used by the network device to transmit the target uplink information in the first time unit.
  • the method before the receiving, by the network device, the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes:
  • the network device sends, to the terminal device, a first transmission mode used to transmit the target uplink information in the first time unit.
  • the first transmission mode may be a transmission mode determined by the terminal device directly according to a predetermined agreement, or may be a transmission mode directly configured by the network device to the terminal device. It should be understood that the first transmission mode adopted by the terminal device in the first time unit may be the same as the second transmission mode used in the second time unit, or may be different, which is not limited by the embodiment of the present application.
  • the terminal device determines the first transmission mode, and the terminal device determines the The number of resources in the first frequency domain. It should be understood that the terminal device may determine the quantity of the first frequency domain resource in a plurality of manners, which is not limited in this embodiment of the present application.
  • the terminal device determines a first transmission manner used to transmit the target uplink information in the first time unit, including:
  • the terminal device Determining, by the terminal device, the quantity of the first frequency domain resource used for transmitting the target uplink information in the first time unit according to at least one of the following information: the quantity of the second frequency domain resource, the first time The number of uplink time resources in the unit and the number of uplink time resources in the second time unit, where the second frequency domain resource quantity is that the terminal device transmits the target uplink information in the second time unit The number of frequency domain resources used; or
  • the terminal device determines the quantity of the first frequency domain resource according to a pre-agreed parameter or a pre-agreed rule.
  • the terminal device may determine the quantity of the first frequency domain resource in multiple manners. Because the terminal device knows the size of the target uplink information, the terminal device may directly determine the number of uplink time resources in the first time unit. Determining the quantity of the first frequency domain resource; the terminal device may directly determine the quantity of the first frequency domain resource according to the quantity of the second frequency domain resource used for transmitting the target uplink information in the second time unit; the terminal device may be configured according to Determining the quantity of the first frequency domain resource by the quantity of the second frequency domain resource and the quantity of the uplink time resource in the first time unit; The terminal device may also determine the quantity of the first frequency domain resource by combining the quantity of the second frequency domain resource, the quantity of the uplink time resource in the first time unit, and the quantity of the uplink time resource in the second time unit. In addition, the terminal device may determine the quantity of the first frequency domain resource according to a pre-agreed parameter or a pre-agreed rule, which is not limited in this embodiment of the present application.
  • the determining, by the terminal device, the quantity of the first frequency domain resource in the first transmission mode includes:
  • the terminal device receives the first frequency domain resource quantity used by the network device to transmit the target uplink information in the first time unit.
  • the method before the receiving, by the network device, the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes:
  • the network device sends the first frequency domain resource quantity to the terminal device.
  • the number of the first frequency domain resources may be determined by the terminal device directly according to a pre-agreed agreement, or may be directly configured by the network device to the terminal device, which is not limited in this embodiment of the present application.
  • the quantity of the second frequency domain resource is the quantity of the frequency domain resource used by the terminal device to transmit the target uplink information in the second time unit, and the time length for transmitting the target uplink information by the second time unit is greater than the first The length of time for transmitting the target uplink information in a time unit. Therefore, the number of frequency domain resources used for transmitting the target uplink information in the first time unit is greater than or equal to the uplink information used for transmitting the target in the second time unit.
  • the number of frequency domain resources that is, the number of resources in the first frequency domain is greater than or equal to the number of resources in the second frequency domain.
  • the quantity of the first frequency domain resource is The A and the B are all positive numbers, and the A is the second frequency domain resource quantity or a pre-agreed parameter, and the B is a pre-agreed parameter, and the parameter is determined according to a pre-agreed rule.
  • the terminal device receives a parameter sent by the network device.
  • the quantity of the first frequency domain resource may be A and/or B may be pre-agreed parameters or parameters directly configured by the network device.
  • the number of domain resources, B is a pre-agreed parameter or a parameter sent by the network device to the terminal device.
  • the quantity of the first frequency domain resource is related to the quantity of the second frequency domain resource;
  • A is a pre-agreed parameter
  • B is a pre-agreed parameter, that is, the quantity of the first frequency domain resource is (4)
  • A is a pre-agreed parameter, and B is a parameter sent by the network device to the terminal device, then the number of the first frequency domain resource can be understood as being configured by the network device;
  • the The M is the number of uplink time resources in the second time unit, the k is a positive integer, and the k is a pre-agreed parameter or the terminal device receives the parameter sent by the network device; or
  • the M is the number of uplink time resources in the second time unit, the t is a positive number, and the t is a pre-agreed parameter or the terminal device receives the parameter sent by the network device; or
  • the B q ⁇ x, wherein the q is a positive number, and the q is a pre-agreed parameter or the terminal device receives a parameter sent by the network device.
  • the method before the determining, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, the method further includes:
  • the terminal device Receiving, by the terminal device, a first power adjustment message sent by the network device, where the first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit, or the first The power adjustment message is used to adjust a transmission power for transmitting the target uplink information in the first time unit and a transmission power for transmitting the target uplink information in the second time unit;
  • the terminal device determines a first transmission manner used for transmitting target uplink information in the first time unit, including:
  • the method before the receiving, by the network device, the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes:
  • the network device sends a first power adjustment message to the terminal device
  • the terminal is configured.
  • the first transmission mode is determined, and the terminal device determines the first transmission power.
  • the terminal device determines that the first transmit power can be determined by receiving first power adjustment information sent by the network device.
  • the terminal device determines a first transmission manner used to transmit the target uplink information in the first time unit, including:
  • the terminal device determines the first transmission mode, and the terminal device determines the first resource number. It should be understood that the first resource number and the second resource number respectively corresponding to the first time unit and the second time unit are different. Therefore, the terminal device may determine the first resource number according to the first information different from the second information, where the second information is used to indicate the second resource number used by the terminal device to transmit the target uplink information in the second time unit.
  • the foregoing first information may be directly a specific resource number, or may be other parameters related to the resource number, such as a physical resource number occupied by the downlink control signaling, or a physical resource number occupied by the downlink data channel, or other
  • the high-level signaling is not limited in this embodiment of the present application.
  • the method before the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes:
  • the network device sends the first information to the terminal device.
  • the terminal device determines a first transmission manner used to transmit the target uplink information in the first time unit, including:
  • the second algorithm is used by the terminal device to determine, according to the third information, a second resource number used to transmit the target uplink information in the second time unit.
  • the third information is used to indicate that the terminal device transmits the first resource number of the target uplink information in the first time unit, and is used to indicate that the terminal device transmits the target uplink information in the second time unit.
  • the terminal device can pass the third information
  • the first resource number is determined.
  • the first algorithm may be any other algorithm that is different from the second algorithm, and the second algorithm is used by the terminal device to combine the third information with the second algorithm to determine the second resource number. Therefore, in the embodiment of the present application, the first resource number determined by the terminal device is different from the second resource number for transmitting the target uplink information in the second time unit.
  • the foregoing third information may be configuration signaling that is sent by the network device to the terminal device, for example, downlink control signaling, high-layer signaling, and the like, which is not limited by the embodiment of the present application.
  • the foregoing first algorithm may be a pre-agreed algorithm, or may be an algorithm configured by the network device for the terminal device, which is not limited in this embodiment of the present application.
  • the method before the network device receives the target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, the method further includes:
  • the network device sends the third information and the first algorithm to the terminal device.
  • the first pre-processing mode is to select the information with the highest priority among the periodic CSIs for transmission;
  • the first pre-processing manner is to perform merging processing on the ACK/NACK information.
  • the information transmission method according to the embodiment of the present application is described in detail above with reference to FIG. 1 and FIG. 2.
  • the information transmission apparatus according to the embodiment of the present application will be described in detail below with reference to FIG. 3 to FIG.
  • FIG. 3 is a schematic diagram of an information transmission device 300 according to an embodiment of the present application.
  • the device may be, for example, a terminal device in the method 300.
  • the device 300 includes:
  • a determining unit 310 configured to determine a first transmission manner used to transmit the target uplink information in the first time unit, where the first transmission manner is used by the apparatus to transmit the target uplink information in the second time unit
  • the second transmission mode is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit;
  • the sending unit 320 is configured to send the target uplink information to the network device by using the first transmission mode.
  • the information transmission device of the embodiment of the present application determines, by the terminal device, the first transmission mode used for transmitting the target uplink information in the first time unit, and sends the target uplink information to the network device by using the first transmission mode, where The first transmission mode and the second transmission mode used by the terminal device to transmit the target uplink information in a second time unit different from the first time unit with.
  • the terminal device can send the target uplink information through different time units by using different transmission modes, which can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • the target uplink information includes acknowledgement/non-acknowledgment ACK/NACK information and/or periodic channel state information CSI.
  • the first transmission manner includes at least one of the following manners being different from at least one of the following manners: the device 300 is configured to the target uplink information.
  • the pre-processing mode the transmission mode adopted by the device 300 for transmitting the target uplink information; the number of frequency domain resources used by the device 300 to transmit the target uplink information; and the terminal device transmitting the target uplink information Transmit power; and a resource number of the resource used by the apparatus 300 to transmit the target uplink information.
  • the determining unit 310 is specifically configured to: determine a first transmission mode used by the target to transmit the target uplink information in the first time unit, where the first transmission mode is a pre-agreed Transmission mode.
  • the apparatus 300 further includes: a first receiving unit, configured to send, by the network device, before determining, by using the first transmission mode used to transmit the target uplink information in the first time unit The first transmission mode used to transmit the target uplink information in the first time unit.
  • the determining unit 310 is specifically configured to: determine, according to at least one of the following information, a quantity of the first frequency domain resource used to transmit the target uplink information in the first time unit: a quantity of the second frequency domain resource, a quantity of the uplink time resource in the first time unit, and a quantity of the uplink time resource in the second time unit, where the second frequency domain resource quantity is Determining, by the second time unit, the number of frequency domain resources used for transmitting the target uplink information; or determining the quantity of the first frequency domain resource according to a pre-agreed parameter or a pre-agreed rule.
  • the apparatus 300 further includes: a second receiving unit, configured to send, by the network device, before determining, by using the first transmission mode used to transmit the target uplink information in the first time unit The number of first frequency domain resources used to transmit the target uplink information in the first time unit.
  • the quantity of the first frequency domain resource is The A and the B are all positive numbers, and the A is the second frequency domain resource quantity or a pre-agreed parameter, and the B is a pre-agreed parameter, and the parameter is determined according to a pre-agreed rule.
  • the device 300 receives parameters sent by the network device.
  • the apparatus 300 further includes: a third receiving unit, configured to send, by the network device, before determining, by using the first transmission mode used to transmit the target uplink information in the first time unit a first power adjustment message, where the first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit, or the first power adjustment message is used to adjust Transmitting the transmission power of the target uplink information and the transmission power of the target uplink information in the second time unit in a time unit; the determining unit 310 is specifically configured to: determine, according to the first power adjustment message, Transmitting, by the first time unit, a first transmit power used by the target uplink information.
  • a third receiving unit configured to send, by the network device, before determining, by using the first transmission mode used to transmit the target uplink information in the first time unit a first power adjustment message, where the first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit, or the first power adjustment message is used to adjust Transmitting the transmission power of the
  • the determining unit 310 is specifically configured to: determine, according to the first information, a first resource number used to transmit the target uplink information in the first time unit, where the first The information is different from the second information, and the second information is used by the apparatus 300 to determine a second resource number used to transmit the target uplink information in the second time unit.
  • the determining unit 310 is specifically configured to: determine, according to the third information and the first algorithm, a first resource number used to transmit the target uplink information in the first time unit, where The first algorithm is different from the second algorithm, and the second algorithm is used by the device 300 to determine, according to the third information, a second resource number used to transmit the target uplink information in the second time unit. .
  • the first pre-processing mode is to select the information with the highest priority in the periodic CSI for transmission; or if the target uplink information is ACK/NACK The first preprocessing mode is to perform a combining process on the ACK/NACK information.
  • the apparatus 300 further includes: a fourth receiving unit, configured to Receiving a first notification message sent by the network device, before the first transmission mode used for transmitting the target uplink information in the first time unit, the first notification message is used to notify the device that the The target uplink information is transmitted in a time unit and the second time unit.
  • a fourth receiving unit configured to Receiving a first notification message sent by the network device, before the first transmission mode used for transmitting the target uplink information in the first time unit, the first notification message is used to notify the device that the The target uplink information is transmitted in a time unit and the second time unit.
  • the apparatus 300 herein is embodied in the form of a functional module.
  • the term "unit” herein may refer to an application specific integrated circuit (ASIC), an electronic circuit, a processor for executing one or more software or firmware programs (eg, a shared processor, a proprietary processor, or a group). Processors, etc.) and memory, merge logic, and/or other suitable components that support the described functionality.
  • ASIC application specific integrated circuit
  • the device 300 may be specifically the terminal device in the foregoing embodiment, and the device 300 may be used to perform various processes and/or steps corresponding to the terminal device in the foregoing method embodiment. To avoid repetition, we will not repeat them here.
  • FIG. 4 is a schematic diagram of an information transmission device 400 according to an embodiment of the present application.
  • the device may be, for example, a terminal device in the method 400.
  • the device 400 includes:
  • the receiving unit 410 is configured to receive target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, where the first transmission mode and the terminal device transmit the target uplink information in the second time unit.
  • the second transmission mode is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit.
  • the information transmission device of the embodiment of the present application receives, by the network device, target uplink information that is sent by the terminal device by using the first transmission mode, where the first transmission mode and the terminal device are in a second time unit different from the first time unit.
  • the second transmission method used to transmit the target uplink information is different.
  • the network device can receive the target uplink information by using the different transmission modes of the terminal device, and can improve the flexibility of time resource allocation in the system, thereby improving system performance.
  • the target uplink information includes acknowledgement/non-acknowledgment ACK/NACK information and/or periodic channel state information CSI.
  • the first transmission manner includes at least one of the following manners being different from at least one of the following manners: the terminal device uplink information to the target a preprocessing mode; a transmission mode used by the terminal device to transmit the target uplink information, where the transmission mode is a multiple input multiple output MIMO transmission mode; and the frequency domain resource used by the terminal device to transmit the target uplink information a quantity; a transmission power used by the terminal device to transmit the target uplink information;
  • the apparatus further includes: a first sending unit, configured to send, to the terminal device, a first transmission mode used to transmit the target uplink information in the first time unit.
  • the apparatus further includes: a second sending unit, configured to send, to the terminal device, a quantity of the first frequency domain resource used by the target information in the first time unit to transmit the target uplink information.
  • the quantity of the first frequency domain resource is The A and the B are both positive numbers, and the A is a second frequency domain resource quantity or a pre-agreed parameter used to transmit the target uplink information in the first time unit, and the B is a pre-agreed parameter, a parameter determined according to a pre-agreed rule, or the terminal device receives a parameter transmitted by the device 400.
  • the device further includes: a third sending unit, configured to send, to the terminal device, a first power adjustment message, where the first power adjustment message is used to adjust in the first time unit Transmitting a transmission power of the target uplink information, or the first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit and transmitting the target in the second time unit The transmission power of the uplink information.
  • a third sending unit configured to send, to the terminal device, a first power adjustment message, where the first power adjustment message is used to adjust in the first time unit Transmitting a transmission power of the target uplink information, or the first power adjustment message is used to adjust transmission power of transmitting the target uplink information in the first time unit and transmitting the target in the second time unit The transmission power of the uplink information.
  • the apparatus further includes: a fourth sending unit, configured to send first information to the terminal device, where the first information is used by the terminal device to determine at the first time a first resource number used by the unit to transmit the target uplink information, and the first information is different from the second information, where the second information is used by the terminal device to determine to transmit in the second time unit The second resource number used for the target uplink information.
  • a fourth sending unit configured to send first information to the terminal device, where the first information is used by the terminal device to determine at the first time a first resource number used by the unit to transmit the target uplink information, and the first information is different from the second information, where the second information is used by the terminal device to determine to transmit in the second time unit The second resource number used for the target uplink information.
  • the apparatus further includes: a fifth sending unit, configured to send the third information and the first algorithm to the terminal device, where the third information and the first algorithm are used by the Determining, by the terminal device, that the target uplink information is transmitted in the first time unit a first resource number, and the first algorithm is different from the second algorithm, where the second algorithm is used by the terminal device to determine, according to the third information, that the target uplink information is transmitted in the second time unit.
  • the first pre-processing mode is to select the information with the highest priority in the periodic CSI for transmission; or if the target uplink information is ACK/NACK The first preprocessing mode is to perform a combining process on the ACK/NACK information.
  • the device further includes: a sixth sending unit, configured to send, to the terminal device, the target terminal device before using the target uplink information sent by using the first transmission manner in the first transmission unit a first notification message, the first notification message is used to notify the terminal device that the target uplink information can be transmitted in the first time unit and the second time unit.
  • a sixth sending unit configured to send, to the terminal device, the target terminal device before using the target uplink information sent by using the first transmission manner in the first transmission unit a first notification message, the first notification message is used to notify the terminal device that the target uplink information can be transmitted in the first time unit and the second time unit.
  • the apparatus 400 herein is embodied in the form of a functional module.
  • the term "unit” herein may refer to an application specific integrated circuit (ASIC), an electronic circuit, a processor for executing one or more software or firmware programs (eg, a shared processor, a proprietary processor, or a group). Processors, etc.) and memory, merge logic, and/or other suitable components that support the described functionality.
  • ASIC application specific integrated circuit
  • the device 400 may be specifically the network device in the foregoing embodiment, and the device 400 may be used to perform various processes and/or steps corresponding to the network device in the foregoing method embodiments. To avoid repetition, we will not repeat them here.
  • FIG. 5 shows an information transmission apparatus 500 provided by an embodiment of the present application.
  • the apparatus 500 includes a receiver 510, a processor 520, a transmitter 530, a memory 540, and a bus system 550.
  • the receiver 510, the processor 520, the transmitter 530 and the memory 540 are connected by a bus system 550 for storing instructions for executing instructions stored in the memory 540 to control the receiver 510.
  • a signal is received and the transmitter 530 is controlled to send an instruction.
  • the processor 520 is configured to determine a first transmission mode used to transmit target uplink information in a first time unit, where the first transmission mode and the apparatus transmit the target uplink information in a second time unit The second transmission mode used is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit;
  • the transmitter 530 is configured to send the target uplink information to the network device by using the first transmission mode.
  • the device 500 may be specifically the terminal device in the foregoing embodiment, and may be used to perform various steps and/or processes corresponding to the terminal device in the foregoing method embodiments.
  • the memory 540 can include read only memory and random access memory and provides instructions and data to the processor. A portion of the memory may also include a non-volatile random access memory.
  • the memory can also store information of the device type.
  • the processor 520 can be configured to execute instructions stored in a memory, and when the processor executes the instructions, the processor can perform various steps corresponding to the terminal device in the above method embodiments.
  • FIG. 6 shows an information transmission device 600 provided by an embodiment of the present application.
  • the device 600 includes a receiver 610, a processor 620, a transmitter 630, a memory 640, and a bus system 660.
  • the receiver 610, the processor 620, the transmitter 630 and the memory 640 are connected by a bus system 660 for storing instructions for executing instructions stored in the memory 640 to control the receiver 610.
  • a signal is received and the transmitter 630 is controlled to send an instruction.
  • the receiver 610 is configured to receive target uplink information that is sent by the terminal device in the first transmission unit by using the first transmission mode, where the first transmission mode and the terminal device transmit the target uplink in a second time unit.
  • the second transmission mode of the information is different, and the length of time for the second time unit to transmit the target uplink information is different from the length of time for transmitting the target uplink information in the first time unit.
  • the device 600 may be specifically the network device in the foregoing embodiment, and may be used to perform various steps and/or processes corresponding to the network device in the foregoing method embodiments.
  • the memory 640 can include read only memory and random access memory and provide instructions and data to the processor. A portion of the memory may also include a non-volatile random access memory.
  • the memory can also store information of the device type.
  • the processor 620 can be configured to execute instructions stored in a memory, and when the processor executes the instructions, the processor can perform various steps corresponding to the network device in the above method embodiments.
  • the processor may be a central processing unit (CPU), and the processor may also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), Field Programmable Gate Array (FPGA) or other programmable logic device, discrete gate or transistor logic device, discrete hardware components, etc.
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the size of the sequence numbers of the foregoing processes does not mean the order of execution sequence, and the order of execution of each process should be determined by its function and internal logic, and should not be applied to the embodiment of the present application.
  • the implementation process constitutes any limitation.
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product. Based on such understanding, the technical solution of the present application or the part contributing to the prior art or the part of the technical solution may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present application.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

本申请实施例提供了一种信息传输方法和装置,该方法包括:终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;所述终端设备使用所述第一传输方式向网络设备发送所述目标上行信息。本申请实施例的信息传输方法和装置,能够提高系统中时间资源分配的灵活性,从而提升系统性能。

Description

信息传输方法和装置 技术领域
本申请涉及通信领域,并且更具体地,涉及通信领域中的信息传输方法和装置。
背景技术
目前的新无线(New Radio,简称为“NR”)系统中支持动态的帧结构配置,即根据业务需求动态地确定频带内上下行传输时间资源。因此,一个频带可能存在三种时间单元:上行时间单元、下行时间单元以及混合时间单元,其中,上行时间单元用于传输上行信息,下行时间单元用于传输下行信息,混合时间单元用于传输上行信息和下行信息。
上行信息主要包括:上行控制信息、上行数据信息及上行参考信号。上行控制信息包括确认/非确认(Acknowledgement/Non-Acknowledgement,简称为“ACK/NACK”)信息、周期信道状态信息(Channel State Information,简称为“CSI”)和非周期CSI。其中,周期CSI的发送时间由基站半静态配置;ACK/NACK信息在终端设备接收到网络设备发送的下行数据之后,由该终端设备发送给该网络设备,因此,ACK/NACK信息可以与下行数据在同一个时间单元内传输,也可以在传输下行数据的时间单元之后的其他时间单元内传输。
在现有技术中,终端设备总是采用单一类型的时间单元来进行上行信息的传输,例如,对于周期CSI而言,每一次发送周期CSI都采用上行时间单元,或者每一次发送周期CSI都采用混合时间单元,这样必然会影响系统中时间资源分配的灵活性。
发明内容
本申请实施例提供的信息传输方法和装置,能够提高系统中时间资源分配的灵活性。
第一方面,提供了一种信息传输方法,该方法包括:终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息所使用的第二传 输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;所述终端设备使用所述第一传输方式向网络设备发送所述目标上行信息。
本申请实施例的信息传输方法,通过终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,并采用该第一传输方式向网络设备发送该目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不同。这样,该终端设备可以采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
应理解,第一传输单元可以为混合时间单元,第二传输单元可以为常规的上行时间单元,但本发明实施例对此不作限定。
可选地,上述时间单元可以理解为一个传输块(Transport Block,简称为“TB”)。例如,该时间单元可以是用于传输信号的时域物理资源的基本单位,具体可以是子帧、传输时间间隔(Transmission Time Interval,简称为“TTI”)、时隙、正交频分复用技术(Orthogonal Frequency Division Multiplexing,简称为“OFDM”)符号或者资源单元(Resource Element,简称为“RE”)等,本申请实施例对此不作限定。
在第一方面的第一种可能的实现方式中,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:所述终端设备接收所述网络设备发送的第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
结合第一方面的上述可能的实现方式,在第一方面的第二种可能的实现方式中,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
结合第一方面的上述可能的实现方式,在第一方面的第三种可能的实现方式中,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:所述终端设备对所述目标上行信息的预处理方式;所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;所述终端设备传输所述目标上 行信息所使用的频域资源数量;所述终端设备传输所述目标上行信息所采用的发送功率;以及所述终端设备传输所述目标上行信息所使用的资源的资源编号。
应理解,上述预处理方式可以为压缩处理,还可以为合并处理,本申请实施例对此不作限定。上述传输模式可以为发送分集模式,还可以为空间复用、波束赋形等其他传输模式,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第四种可能的实现方式中,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式,其中,所述第一传输模式为预先约定的传输模式。
结合第一方面的上述可能的实现方式,在第一方面的第五种可能的实现方式中,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
如上所述,该第一传输模式可以是该终端设备直接根据预先约定确定的传输模式,也可以是由网络设备直接配置给终端设备的传输模式。应理解,该终端设备在第一时间单元中采用的第一传输模式与在第二时间单元中采用的第二传输模式可以相同,也可以不同,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第六种可能的实现方式中,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:所述终端设备根据下列信息中的至少一种,确定在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量:第二频域资源数量、所述第一时间单元中上行时间资源的数量以及所述第二时间单元中上行时间资源的数量,其中,所述第二频域资源数量为所述终端设备在所述第二时间单元中传输所述目标上行信息所使用的频域资源数量;或所述终端设备根据预先约定的参数或预先约定的规则,确定所述第一频域资源数量。
具体地,该终端设备可以通过多种方式确定该第一频域资源数量,由于该终端设备已知目标上行信息的大小,该终端设备可以直接根据该第一时间单元中上行时间资源的数量,确定上述第一频域资源数量;该终端设备可以 直接根据在第二时间单元中传输该目标上行信息所使用的第二频域资源数量,确定上述第一频域资源数量;该终端设备可以根据该第二频域资源数量以及该第一时间单元中上行时间资源的数量,确定上述第一频域资源数量;该终端设备也可以结合该第二频域资源数量、该第一时间单元中上行时间资源的数量以及该第二时间单元中上行时间资源的数量,确定上述第一频域资源数量。此外,该终端设备还可以根据预先约定的参数或者预先约定的规则来确定上述第一频域资源数量,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第七种可能的实现方式中,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
如上所述,该第一频域资源数量可以是该终端设备直接根据预先约定确定的,也可以是由网络设备直接配置给终端设备的,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第八种可能的实现方式中,所述第一频域资源数量为
Figure PCTCN2016102286-appb-000001
其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述网络设备发送的参数。
应理解,根据A和B确定出来的第一频域资源数量可以采用上述多种不同的组合得到,本发明实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第九种可能的实现方式中,所述
Figure PCTCN2016102286-appb-000002
其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或所述
Figure PCTCN2016102286-appb-000003
其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述网络设备发送的参数。
结合第一方面的上述可能的实现方式,在第一方面的第十种可能的实现 方式中,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:所述终端设备接收所述网络设备发送的第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率;所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:所述终端设备根据所述第一功率调整消息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一发送功率。
应理解,该第一时间单元和第二时间单元可以采用独立的功率控制方式,也可以采用统一的功率控制方式,即该第一功率调整信息可以仅用于调整第一时间单元中传输该目标上行信息的发送功率,也可以用于调整第一时间单元中传输该目标上行信息的发送功率以及第二时间单元中传输该目标上行信息的发送功率,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第十一种可能的实现方式中,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:所述终端设备根据第一信息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一信息与第二信息不同,且所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
具体地,上述第一信息可以直接为具体的资源编号,也可以为其他与资源编号相关的参数,例如下行控制信令占用的物理资源编号,或者下行数据信道占用的物理资源编号,或者为其他高层信令,本申请实施例对此不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第十二种可能的实现方式中,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:所述终端设备根据第三信息以及第一算法,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
具体地,上述第三信息可以为网络设备下发给终端设备的配置信令,例如,下行控制信令、高层信令等,本申请实施例对此不作限定。上述第一算法可以为预先约定的算法,也可以为网络设备为该终端设备配置的算法,本申请实施例对此也不作限定。
结合第一方面的上述可能的实现方式,在第一方面的第十三种可能的实现方式中,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
第二方面,提供了一种信息传输方法,该方法包括:网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
本申请实施例的信息传输方法,通过网络设备接收该终端设备根据采用第一传输方式发送的目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不同。这样,该网络设备可以接收该终端设备采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
在第二方面的第一种可能的实现方式中,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
结合第二方面的上述可能的实现方式,在第二方面的第二种可能的实现方式中,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:所述终端设备对所述目标上行信息的预处理方式;所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;所述终端设备传输所述目标上行信息所使用的频域资源数量;所述终端设备传输所述目标上行信息所采用的发送功率;以及所述终端设备传输所述目标上行信息所使用的资源的资源编号。
结合第二方面的上述可能的实现方式,在第二方面的第三种可能的实现 方式中,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
结合第二方面的上述可能的实现方式,在第二方面的第四种可能的实现方式中,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
结合第二方面的上述可能的实现方式,在第二方面的第五种可能的实现方式中,所述第一频域资源数量为
Figure PCTCN2016102286-appb-000004
其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述网络设备发送的参数。
结合第二方面的上述可能的实现方式,在第二方面的第六种可能的实现方式中,所述
Figure PCTCN2016102286-appb-000005
其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或所述
Figure PCTCN2016102286-appb-000006
其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述网络设备发送的参数。
结合第二方面的上述可能的实现方式,在第二方面的第七种可能的实现方式中,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率。
结合第二方面的上述可能的实现方式,在第二方面的第八种可能的实现方式中,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输 方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送第一信息,其中,所述第一信息用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一信息与第二信息不同,所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
结合第二方面的上述可能的实现方式,在第二方面的第九种可能的实现方式中,所述网络设备向所述终端设备发送第三信息和第一算法,其中,所述第三信息和所述第一算法用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
结合第二方面的上述可能的实现方式,在第二方面的第十种可能的实现方式中,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
结合第二方面的上述可能的实现方式,在第二方面的第十一种可能的实现方式中,在所述网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
第三方面,提供了一种信息传输装置,用于执行上述第一方面或第一方面的任意可能的实现方式中的方法。具体地,该装置包括用于执行上述第一方面或第一方面的任意可能的实现方式中的方法的单元。
第四方面,提供了一种信息传输装置,用于执行上述第二方面或第二方面的任意可能的实现方式中的方法。具体地,该装置包括用于执行上述第二方面或第二方面的任意可能的实现方式中的方法的单元。
第五方面,提供了一种信息传输装置,该设备包括:接收器、发送器、存储器、处理器和总线系统。其中,该接收器、该发送器、该存储器和该处理器通过该总线系统相连,该存储器用于存储指令,该处理器用于执行该存储器存储的指令,以控制接收器接收信号,并控制发送器发送信号,并且当 该处理器执行该存储器存储的指令时,该执行使得该处理器执行第一方面或第一方面的任意可能的实现方式中的方法。
第六方面,提供了一种信息传输装置,该设备包括:接收器、发送器、存储器、处理器和总线系统。其中,该接收器、该发送器、该存储器和该处理器通过该总线系统相连,该存储器用于存储指令,该处理器用于执行该存储器存储的指令,以控制接收器接收信号,并控制发送器发送信号,并且当该处理器执行该存储器存储的指令时,该执行使得该处理器执行第二方面或第二方面的任意可能的实现方式中的方法。
第七方面,提供了一种信息传输系统,该系统包括上述第三方面或第三方面的任一种可能实现方式中的装置以及上述第四方面或第四方面的任一种可能实现方式中的装置;或者
该系统包括上述第五方面或第五方面的任一种可能实现方式中的装置以及上述第六方面或第六方面的任一种可能实现方式中的装置。
第八方面,提供了一种计算机可读介质,用于存储计算机程序,该计算机程序包括用于执行第一方面或第一方面的任意可能的实现方式中的方法的指令。
第九方面,提供了一种计算机可读介质,用于存储计算机程序,该计算机程序包括用于执行第二方面或第二方面的任意可能的实现方式中的方法的指令。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例的信息传输方法的示意性流程图。
图2是本申请实施例的另一信息传输方法的示意性流程图。
图3是本申请实施例的信息传输装置的示意性框图。
图4是本申请实施例的另一信息传输装置的示意性框图。
图5是本申请实施例的另一信息传输装置的示意性框图。
图6是本申请实施例的另一信息传输装置的示意性框图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
应理解,本申请实施例的技术方案可以应用于各种通信系统,例如:全球移动通讯(Global System of Mobile communication,简称为“GSM”)系统、码分多址(Code Division Multiple Access,简称为“CDMA”)系统、宽带码分多址(Wideband Code Division Multiple Access,简称为“WCDMA”)系统、通用分组无线业务(General Packet Radio Service,简称为“GPRS”)、长期演进(Long Term Evolution,简称为“LTE”)系统、LTE频分双工(Frequency Division Duplex,简称为“FDD”)系统、LTE时分双工(Time Division Duplex,简称为“TDD”)、通用移动通信系统(Universal Mobile Telecommunication System,简称为“UMTS”)或全球互联微波接入(Worldwide Interoperability for Microwave Access,简称为“WiMAX”)通信系统,以及未来可能出现的通讯系统等。
还应理解,在本申请实施例中,终端设备可以称之为用户设备(User Equipment,简称为“UE”)、终端设备、移动台(Mobile Station,简称为“MS”)、移动终端(Mobile Terminal)或未来5G网络中的终端设备等,该终端设备可以经无线接入网(Radio Access Network,简称为“RAN”)与一个或多个核心网进行通信,例如,终端可以是移动电话(或称为“蜂窝”电话)或具有移动终端的计算机等,例如,终端还可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语音和/或数据。
网络设备可用于与移动设备通信,网络设备可以是全球移动通讯(Global System of Mobile communication,简称“GSM”)或码分多址(Code Division Multiple Access,简称“CDMA”)中的基站(Base Transceiver Station,简称“BTS”),也可以是宽带码分多址(Wideband Code Division Multiple Access,简称“WCDMA”)中的基站(NodeB,简称“NB”),还可以是LTE中的演进型基站(Evolutional Node B,简称“eNB”或“eNodeB”),或者中继站或接入点,或者车载设备、可穿戴设备以及未来5G网络中的接入网设备。
图1示出本申请实施例的信息传输方法100的示意性流程图。图1示出了信息传输方法的步骤或操作,但这些步骤或操作仅是示例,本申请实施例还可以执行其他操作或者图1的各个操作的变形,该方法100包括:
S110,终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;
S120,所述终端设备使用所述第一传输方式向网络设备发送所述目标上行信息。
本申请实施例的信息传输方法,通过终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,并采用该第一传输方式向网络设备发送该目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不同。这样,该终端设备可以采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
图2示出本申请实施例的另一信息传输方法200的示意性流程图。图2示出了信息传输方法的步骤或操作,但这些步骤或操作仅是示例,本申请实施例还可以执行其他操作或者图2的各个操作的变形,该方法200包括:
S210,网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
本申请实施例的信息传输方法,通过网络设备接收终端设备采用第一传输方式发送的目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不同。这样,该网络设备可以接收该终端设备采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
应理解,在本申请实施例中,引入编号“第一”“第二”只是为了区分不同的对象,比如为了区分不同的“时间单元”,或者区分不同的“传输方式”方式,下文出现的编号也是为了区分不同的对象,这些都不构成对本申请实施例的限定。
在本发明实施例中,第一传输单元可以为混合时间单元,第二传输单元可以为常规的上行时间单元,但本发明实施例对此不作限定。
还应理解,在本申请的各种实施例中,上述各过程的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本申请实施例的实施过程构成任何限定。
可选地,上述时间单元可以理解为一个传输块(Transport Block,简称为“TB”)。例如,该时间单元可以是用于传输信号的时域物理资源的基本单位,具体可以是子帧、传输时间间隔(Transmission Time Interval,简称为“TTI”)、时隙、正交频分复用技术(Orthogonal Frequency Division Multiplexing,简称为“OFDM”)符号或者资源单元(Resource Element,简称为“RE”)等,本申请实施例对此不作限定。
作为一个可选实施例,在S110,终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
所述终端设备接收所述网络设备发送的第一指示信息,所述第一指示信息用于指示所述终端设备在所述第一时间单元中采用所述第一传输方式传输所述目标上行信息;
S110,所述终端设备确定在第一时间单元中以第一传输方式传输目标上行信息,包括:
所述终端设备根据所述第一指示信息,确定所述第一传输方式。
则对应地,在S210,所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述网络设备向所述终端设备发送第一指示信息,所述第一指示信息用于指示所述终端设备在所述第一时间单元中采用所述第一传输方式传输所述目标上行信息。
作为一个可选实施例,S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备根据预先约定的规则,确定所述第一传输方式。
具体地,该终端设备可以通过多种方式确定在第一时间单元中传输目标 上行信息所使用的第一传输方式,如上所述,该第一传输方式可以是由网络设备指示的,即通过接收网络设备发送的第一指示信息确定的,也可以是该终端设备根据预先约定的规则确定的,本申请实施例对此不作限定。
作为一个可选实施例,在S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:所述终端设备接收所述网络设备发送的第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
则对应地,在所述网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:所述网络设备向所述终端设备发送第一通知消息。
作为一个可选实施例,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
作为一个可选实施例,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:所述终端设备对所述目标上行信息的预处理方式;所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;所述终端设备传输所述目标上行信息所使用的频域资源数量;所述终端设备传输所述目标上行信息所采用的发送功率;以及所述终端设备传输所述目标上行信息所使用的资源的资源编号。
应理解,上述预处理方式可以为压缩处理,还可以为合并处理,本申请实施例对此不作限定。上述传输模式可以为发送分集模式,还可以为空间复用、波束赋形等其他传输模式,本申请实施例对此不作限定。
对于该第一传输方式至少包括在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式的情况,该终端设备确定该第一传输方式,包括该终端设备确定该第一传输模式。具体地,该终端设备可以通过多种方式确定该第一传输模式,本申请实施例对此不作限定。
作为一个可选实施例,S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式,其中,所述第一传输模式为预先约定的传输模式。
作为一个可选实施例,在S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
对应地,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
所述网络设备向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
如上所述,该第一传输模式可以是该终端设备直接根据预先约定确定的传输模式,也可以是由网络设备直接配置给终端设备的传输模式。应理解,该终端设备在第一时间单元中采用的第一传输模式与在第二时间单元中采用的第二传输模式可以相同,也可以不同,本申请实施例对此不作限定。
对于该第一传输方式至少包括在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量的情况,该终端设备确定该第一传输方式,包括该终端设备确定该第一频域资源数量。应理解,该终端设备可以通过多种方式确定该第一频域资源数量,本申请实施例对此不作限定。
作为一个可选实施例,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备根据下列信息中的至少一种,确定在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量:第二频域资源数量、所述第一时间单元中上行时间资源的数量以及所述第二时间单元中上行时间资源的数量,其中,所述第二频域资源数量为所述终端设备在所述第二时间单元中传输所述目标上行信息所使用的频域资源数量;或
所述终端设备根据预先约定的参数或预先约定的规则,确定所述第一频域资源数量。
具体地,该终端设备可以通过多种方式确定该第一频域资源数量,由于该终端设备已知目标上行信息的大小,该终端设备可以直接根据该第一时间单元中上行时间资源的数量,确定上述第一频域资源数量;该终端设备可以直接根据在第二时间单元中传输该目标上行信息所使用的第二频域资源数量,确定上述第一频域资源数量;该终端设备可以根据该第二频域资源数量以及该第一时间单元中上行时间资源的数量,确定上述第一频域资源数量; 该终端设备也可以结合该第二频域资源数量、该第一时间单元中上行时间资源的数量以及该第二时间单元中上行时间资源的数量,确定上述第一频域资源数量。此外,该终端设备还可以根据预先约定的参数或者预先约定的规则来确定上述第一频域资源数量,本申请实施例对此不作限定。
作为一个可选实施例,所述终端设备确定所述第一传输模式所述第一频域资源数量,包括:
所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
则对应地,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
所述网络设备向所述终端设备发送所述第一频域资源数量。
如上所述,该第一频域资源数量可以是该终端设备直接根据预先约定确定的,也可以是由网络设备直接配置给终端设备的,本申请实施例对此不作限定。
应理解,第二频域资源数量为该终端设备在第二时间单元中传输目标上行信息所使用的频域资源数量,由于该第二时间单元用于传输该目标上行信息的时间长度大于该第一时间单元中用于传输该目标上行信息的时间长度,因此,该第一时间单元中用于传输目标上行信息的频域资源数量大于或者等于该第二时间单元中用于传输目标上行信息的频域资源数量,即第一频域资源数量大于或等于第二频域资源数量。
作为一个可选实施例,所述第一频域资源数量为
Figure PCTCN2016102286-appb-000007
其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述网络设备发送的参数。
具体地,该第一频域资源数量可以为
Figure PCTCN2016102286-appb-000008
其中A和/或B可以为预先约定的参数,也可以为该网络设备直接配置的参数,这包括多种可能的实现方式,具体可以分为下列几种情况:(1)A为第二频域资源数量,B为预先约定的参数或网络设备发送给该终端设备的参数,在这种情况下,该第一频域资源数量与第二频域资源数量相关;(2)A为第二频域资源数量,B为根据预先约定的规则确定的参数,如B=f(x),x为所述第一传输单元中上行时间资源的数量,在这种情况下,该第一频域资源数量与第二频域资源数量以 及第一传输单元中上行时间资源的数量都相关;(3)A为预先约定的参数,B为预先约定的参数,即该第一频域资源数量是预先约定的;(4)A为预先约定的参数,B为网络设备发送给该终端设备的参数,那么该第一频域资源数量可以理解为是由网络设备配置的;(5)A为预先约定的参数,B为根据预先约定的规则确定的参数,如B=f(x),x为所述第一传输单元中上行时间资源的数量,在这种情况下,该第一频域资源数量仅与第一传输单元中上行时间资源的数量都相关。应理解,确定第一频域资源数量的方法还可以有其他可能的组合方式,本申请实施例对此不作限定。
作为一个可选实施例,所述
Figure PCTCN2016102286-appb-000009
其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
所述
Figure PCTCN2016102286-appb-000010
其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述网络设备发送的参数。
作为一个可选实施例,在S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
所述终端设备接收所述网络设备发送的第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率;
S110,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备根据所述第一功率调整消息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一发送功率。
则对应地,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
所述网络设备向所述终端设备发送第一功率调整消息
具体地,对于该第一传输方式至少包括第一发送功率的情况,该终端设 备确定该第一传输方式,包括该终端设备确定该第一发送功率。该终端设备确定该第一发送功率可以通过接收网络设备发送的第一功率调整信息来确定。
作为一个可选实施例,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备根据第一信息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一信息与第二信息不同,且所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
具体地,对于该第一传输方式至少包括第一资源编号的情况,该终端设备确定该第一传输方式,包括该终端设备确定该第一资源编号。应理解,第一时间单元和第二时间单元分别对应的第一资源编号和第二资源编号是不相同的。因此,该终端设备可以根据与第二信息不同的第一信息确定该第一资源编号,该第二信息用于指示终端设备在第二时间单元中传输目标上行信息所使用的第二资源编号。
应理解,上述第一信息可以直接为具体的资源编号,也可以为其他与资源编号相关的参数,例如下行控制信令占用的物理资源编号,或者下行数据信道占用的物理资源编号,或者为其他高层信令,本申请实施例对此不作限定。
作为一个可选实施例,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
所述网络设备向所述终端设备发送第一信息。
作为一个可选实施例,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
所述终端设备根据第三信息以及第一算法,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
具体地,在该第三信息既用于指示该终端设备在第一时间单元中传输目标上行信息的第一资源编号,又用于指示该终端设备在第二时间单元中传输目标上行信息的第二资源编号的情况下,该终端设备可以通过将该第三信息 与第一算法结合,确定该第一资源编号。这里,第一算法可以是与第二算法不相同的其他任意算法,第二算法用于终端设备将该第三信息与该第二算法结合,确定第二资源编号。因此,在本申请实施例中,该终端设备确定出的第一资源编号与在第二时间单元中传输该目标上行信息的第二资源编号也是不相同的。
应理解,上述第三信息可以为网络设备下发给终端设备的配置信令,例如,下行控制信令、高层信令等,本申请实施例对此不作限定。上述第一算法可以为预先约定的算法,也可以为网络设备为该终端设备配置的算法,本申请实施例对此也不作限定。
作为一个可选实施例,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
所述网络设备向所述终端设备发送第三信息和第一算法。
作为一个可选实施例,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或
若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
上文中结合图1和图2,详细描述了根据本申请实施例的信息传输方法,下面将结合图3至图6,详细描述根据本申请实施例的信息传输装置。
图3示出了根据本申请实施例提供的信息传输装置300示意图,该装置例如可以为方法300中的终端设备,该装置300包括:
确定单元310,用于确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述装置在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;
发送单元320,用于使用所述第一传输方式向网络设备发送所述目标上行信息。
本申请实施例的信息传输装置,通过终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,并采用该第一传输方式向网络设备发送该目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不 同。这样,该终端设备可以采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
作为一个可选实施例,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
作为一个可选实施例,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:所述装置300对所述目标上行信息的预处理方式;所述装置300传输所述目标上行信息所采用传输模式;所述装置300传输所述目标上行信息所使用的频域资源数量;所述终端设备传输所述目标上行信息所采用的发送功率;以及所述装置300传输所述目标上行信息所使用的资源的资源编号。
作为一个可选实施例,所述确定单元310具体用于:确定在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式,其中,所述第一传输模式为预先约定的传输模式。
作为一个可选实施例,所述装置300还包括:第一接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
作为一个可选实施例,所述确定单元310具体用于:根据下列信息中的至少一种,确定在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量:第二频域资源数量、所述第一时间单元中上行时间资源的数量以及所述第二时间单元中上行时间资源的数量,其中,所述第二频域资源数量为所述装置300在所述第二时间单元中传输所述目标上行信息所使用的频域资源数量;或根据预先约定的参数或预先约定的规则,确定所述第一频域资源数量。
作为一个可选实施例,所述装置300还包括:第二接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
作为一个可选实施例,所述第一频域资源数量为
Figure PCTCN2016102286-appb-000011
其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且 所述B为预先约定的参数、根据预先约定的规则确定的参数或所述装置300接收所述网络设备发送的参数。
作为一个可选实施例,所述
Figure PCTCN2016102286-appb-000012
其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述装置300接收所述网络设备发送的参数;或所述
Figure PCTCN2016102286-appb-000013
其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述装置300接收所述网络设备发送的参数;或所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述装置300接收所述网络设备发送的参数。
作为一个可选实施例,所述装置300还包括:第三接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率;所述确定单元310具体用于:根据所述第一功率调整消息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一发送功率。
作为一个可选实施例,所述确定单元310具体用于:根据第一信息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一信息与第二信息不同,且所述第二信息用于所述装置300确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
作为一个可选实施例,所述确定单元310具体用于:根据第三信息以及第一算法,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一算法与第二算法不同,所述第二算法用于所述装置300根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
作为一个可选实施例,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
作为一个可选实施例,所述装置300还包括:第四接收单元,用于在所 述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的第一通知消息,所述第一通知消息用于通知所述装置能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
应理解,这里的装置300以功能模块的形式体现。这里的术语“单元”可以指应用特有集成电路(Application Specific Integrated Circuit,ASIC)、电子电路、用于执行一个或多个软件或固件程序的处理器(例如共享处理器、专有处理器或组处理器等)和存储器、合并逻辑电路和/或其它支持所描述的功能的合适组件。在一个可选例子中,本领域技术人员可以理解,装置300可以具体为上述实施例中的终端设备,装置300可以用于执行上述方法实施例中与终端设备对应的各个流程和/或步骤,为避免重复,在此不再赘述。
图4示出了根据本申请实施例提供的信息传输装置400示意图,该装置例如可以为方法400中的终端设备,该装置400包括:
接收单元410,用于接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
本申请实施例的信息传输装置,通过网络设备接收终端设备采用第一传输方式发送的目标上行信息,其中,该第一传输方式与该终端设备在不同于该第一时间单元的第二时间单元中传输该目标上行信息所使用的第二传输方式不同。这样,该网络设备可以接收该终端设备采用不同的传输方式通过不同的时间单元来发送该目标上行信息,能够提高系统中时间资源分配的灵活性,从而提升系统性能。
作为一个可选实施例,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
作为一个可选实施例,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:所述终端设备对所述目标上行信息的预处理方式;所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;所述终端设备传输所述目标上行信息所使用的频域资源数量;所述终端设备传输所述目标上行信息所采用的发送功率;以及
所述终端设备传输所述目标上行信息所使用的资源的资源编号。作为一个可选实施例,所述装置还包括:第一发送单元,用于向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
作为一个可选实施例,所述装置还包括:第二发送单元,用于向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
作为一个可选实施例,所述第一频域资源数量为
Figure PCTCN2016102286-appb-000014
其中,所述A和所述B均为正数,所述A为在所述第一时间单元中传输所述目标上行信息所采用的第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述装置400发送的参数。
作为一个可选实施例,所述
Figure PCTCN2016102286-appb-000015
其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述装置400发送的参数;或所述
Figure PCTCN2016102286-appb-000016
其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述装置400发送的参数;或所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述装置400发送的参数。
作为一个可选实施例,所述装置还包括:第三发送单元,用于向所述终端设备发送第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率。
作为一个可选实施例,所述装置还包括:第四发送单元,用于向所述终端设备发送第一信息,其中,所述第一信息用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一信息与第二信息不同,所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
作为一个可选实施例,所述装置还包括:第五发送单元,用于向所述终端设备发送第三信息和第一算法,其中,所述第三信息和所述第一算法用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的 第一资源编号,且所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
作为一个可选实施例,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
作为一个可选实施例,所述装置还包括:第六发送单元,用于在所述接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,向所述终端设备发送第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
应理解,这里的装置400以功能模块的形式体现。这里的术语“单元”可以指应用特有集成电路(Application Specific Integrated Circuit,ASIC)、电子电路、用于执行一个或多个软件或固件程序的处理器(例如共享处理器、专有处理器或组处理器等)和存储器、合并逻辑电路和/或其它支持所描述的功能的合适组件。在一个可选例子中,本领域技术人员可以理解,装置400可以具体为上述实施例中的网络设备,装置400可以用于执行上述方法实施例中与网络设备对应的各个流程和/或步骤,为避免重复,在此不再赘述。
图5示出了本申请实施例提供的信息传输装置500,该装置500包括接收器510、处理器520、发送器530、存储器540和总线系统550。其中,接收器510、处理器520、发送器530和存储器540通过总线系统550相连,该存储器540用于存储指令,该处理器520用于执行该存储器540存储的指令,以控制该接收器510接收信号,并控制该发送器530发送指令。
其中,所述处理器520用于确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述装置在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;
所述发送器530用于使用所述第一传输方式向网络设备发送所述目标上行信息。
应理解,装置500可以具体为上述实施例中的终端设备,并且可以用于执行上述方法实施例中与终端设备对应的各个步骤和/或流程。可选地,该存储器540可以包括只读存储器和随机存取存储器,并向处理器提供指令和数据。存储器的一部分还可以包括非易失性随机存取存储器。例如,存储器还可以存储设备类型的信息。该处理器520可以用于执行存储器中存储的指令,并且该处理器执行该指令时,该处理器可以执行上述方法实施例中与终端设备对应的各个步骤。
图6示出了本申请实施例提供的信息传输装置600,该装置600包括接收器610、处理器620、发送器630、存储器640和总线系统660。其中,接收器610、处理器620、发送器630和存储器640通过总线系统660相连,该存储器640用于存储指令,该处理器620用于执行该存储器640存储的指令,以控制该接收器610接收信号,并控制该发送器630发送指令。
其中,该接收器610用于接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
应理解,装置600可以具体为上述实施例中的网络设备,并且可以用于执行上述方法实施例中与网络设备对应的各个步骤和/或流程。可选地,该存储器640可以包括只读存储器和随机存取存储器,并向处理器提供指令和数据。存储器的一部分还可以包括非易失性随机存取存储器。例如,存储器还可以存储设备类型的信息。该处理器620可以用于执行存储器中存储的指令,并且该处理器执行该指令时,该处理器可以执行上述方法实施例中与网络设备对应的各个步骤。
应理解,在本申请实施例中,处理器可以是中央处理单元(Central Processing Unit,CPU),处理器还可以是其他通用处理器、数字信号处理器(DSP)、专用集成电路(ASIC)、现场可编程门阵列(FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
应理解,本文中术语“和/或”,仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存 在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
应理解,在本申请的各种实施例中,上述各过程的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本申请实施例的实施过程构成任何限定。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质 中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以所述权利要求的保护范围为准。

Claims (52)

  1. 一种信息传输方法,其特征在于,所述方法包括:
    终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;
    所述终端设备使用所述第一传输方式向网络设备发送所述目标上行信息。
  2. 根据权利要求1所述的方法,其特征在于,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
  3. 根据权利要求1或2所述的方法,其特征在于,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:
    所述终端设备对所述目标上行信息的预处理方式;
    所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;
    所述终端设备传输所述目标上行信息所使用的频域资源数量;
    所述终端设备传输所述目标上行信息所采用的发送功率;以及
    所述终端设备传输所述目标上行信息所使用的资源的资源编号。
  4. 根据权利要求3所述的方法,其特征在于,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
    所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式,其中,所述第一传输模式为预先约定的传输模式。
  5. 根据权利要求3所述的方法,其特征在于,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
    所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
  6. 根据权利要求3至5中任一项所述的方法,其特征在于,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包 括:
    所述终端设备根据下列信息中的至少一种,确定在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量:在所述第二时间单元中传输所述目标上行信息所采用的第二频域资源数量、所述第一时间单元中上行时间资源的数量以及所述第二时间单元中上行时间资源的数量;或
    所述终端设备根据预先约定的参数或预先约定的规则,确定所述第一频域资源数量。
  7. 根据权利要求3至5中任一项所述的方法,其特征在于,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
    所述终端设备接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
  8. 根据权利要求6或7所述的方法,其特征在于,所述第一频域资源数量为
    Figure PCTCN2016102286-appb-100001
    其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述网络设备发送的参数。
  9. 根据权利要求8所述的方法,其特征在于,所述
    Figure PCTCN2016102286-appb-100002
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
    所述
    Figure PCTCN2016102286-appb-100003
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
    所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述网络设备发送的参数。
  10. 根据权利要求3至9中任一项所述的方法,其特征在于,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
    所述终端设备接收所述网络设备发送的第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的 发送功率;
    所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
    所述终端设备根据所述第一功率调整消息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一发送功率。
  11. 根据权利要求3至10中任一项所述的方法,其特征在于,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
    所述终端设备根据第一信息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一信息与第二信息不同,且所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  12. 根据权利要求3至10中任一项所述的方法,其特征在于,所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式,包括:
    所述终端设备根据第三信息以及第一算法,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  13. 根据权利要求3至12中任一项所述的方法,其特征在于,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或
    若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
  14. 根据权利要求1至13中任一项所述的方法,其特征在于,在所述终端设备确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,所述方法还包括:
    所述终端设备接收所述网络设备发送的第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
  15. 一种信息传输方法,其特征在于,所述方法包括:
    网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
  16. 根据权利要求15所述的方法,其特征在于,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
  17. 根据权利要求15或16所述的方法,其特征在于,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:
    所述终端设备对所述目标上行信息的预处理方式;
    所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;
    所述终端设备传输所述目标上行信息所使用的频域资源数量;
    所述终端设备传输所述目标上行信息所采用的发送功率;以及
    所述终端设备传输所述目标上行信息所使用的资源的资源编号。
  18. 根据权利要求17所述的方法,其特征在于,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
  19. 根据权利要求17或18所述的方法,其特征在于,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
  20. 根据权利要求19所述的方法,其特征在于,所述第一频域资源数量为
    Figure PCTCN2016102286-appb-100004
    其中,所述A和所述B均为正数,所述A为在所述第一时间单元中传输所述目标上行信息所采用的第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述网络设备发送的参数。
  21. 根据权利要求20所述的方法,其特征在于,所述
    Figure PCTCN2016102286-appb-100005
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
    所述
    Figure PCTCN2016102286-appb-100006
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述网络设备发送的参数;或
    所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述网络设备发送的参数。
  22. 根据权利要求17至21中任一项所述的方法,其特征在于,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率。
  23. 根据权利要求17至22中任一项所述的方法,其特征在于,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送第一信息,其中,所述第一信息用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一信息与第二信息不同,所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  24. 根据权利要求17至22中任一项所述的方法,其特征在于,在所述网络设备接收所述终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送第三信息和第一算法,其中,所述第三信息和所述第一算法用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一算法与第二算法不 同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  25. 根据权利要求17至24中任一项所述的方法,其特征在于,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或
    若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
  26. 根据权利要求15至25中任一项所述的方法,其特征在于,在网络设备接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,所述方法还包括:
    所述网络设备向所述终端设备发送第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
  27. 一种信息传输装置,其特征在于,所述装置包括:
    确定单元,用于确定在第一时间单元中传输目标上行信息所使用的第一传输方式,所述第一传输方式与所述装置在第二时间单元中传输所述目标上行信息所使用的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同;
    发送单元,用于使用所述第一传输方式向网络设备发送所述目标上行信息。
  28. 根据权利要求27所述的装置,其特征在于,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
  29. 根据权利要求27或28所述的装置,其特征在于,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:
    所述终端设备对所述目标上行信息的预处理方式;
    所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;
    所述终端设备传输所述目标上行信息所使用的频域资源数量;
    所述终端设备传输所述目标上行信息所采用的发送功率;以及
    所述终端设备传输所述目标上行信息所使用的资源的资源编号。
  30. 根据权利要求29所述的装置,其特征在于,所述确定单元具体用于:
    确定在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式,其中,所述第一传输模式为预先约定的传输模式。
  31. 根据权利要求29所述的装置,其特征在于,所述装置还包括:
    第一接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
  32. 根据权利要求29至31中任一项所述的装置,其特征在于,所述确定单元具体用于:
    根据下列信息中的至少一种,确定在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量:在所述第一时间单元中传输所述目标上行信息所采用的第二频域资源数量、所述第一时间单元中上行时间资源的数量以及所述第二时间单元中上行时间资源的数量;或
    根据预先约定的参数或预先约定的规则,确定所述第一频域资源数量。
  33. 根据权利要求29至31中任一项所述的装置,其特征在于,所述装置还包括:
    第二接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
  34. 根据权利要求32或33所述的装置,其特征在于,所述第一频域资源数量为
    Figure PCTCN2016102286-appb-100007
    其中,所述A和所述B均为正数,所述A为所述第二频域资源数量或预先约定的参数,且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述装置接收所述网络设备发送的参数。
  35. 根据权利要求34所述的装置,其特征在于,所述
    Figure PCTCN2016102286-appb-100008
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述装置接收所述网络设备发送的参数;或
    所述
    Figure PCTCN2016102286-appb-100009
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述装置接收所述网络设备发送的参数;或
    所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述装置接收所述网络设备发送的参数。
  36. 根据权利要求29至35中任一项所述的装置,其特征在于,所述装置还包括:
    第三接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率;
    所述确定单元具体用于:
    根据所述第一功率调整消息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一发送功率。
  37. 根据权利要求29至36中任一项所述的装置,其特征在于,所述确定单元具体用于:
    根据第一信息,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一信息与第二信息不同,且所述第二信息用于所述装置确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  38. 根据权利要求29至36中任一项所述的装置,其特征在于,所述确定单元具体用于:
    根据第三信息以及第一算法,确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,其中,所述第一算法与第二算法不同,所述第二算法用于所述装置根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  39. 根据权利要求29至38中任一项所述的装置,其特征在于,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或
    若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
  40. 根据权利要求27至39中任一项所述的装置,其特征在于,所述装 置还包括:
    第四接收单元,用于在所述确定在第一时间单元中传输目标上行信息所使用的第一传输方式之前,接收所述网络设备发送的第一通知消息,所述第一通知消息用于通知所述装置能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
  41. 一种信息传输装置,其特征在于,所述装置包括:
    接收单元,用于接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息,所述第一传输方式与所述终端设备在第二时间单元中传输所述目标上行信息的第二传输方式不同,且所述第二时间单元用于传输所述目标上行信息的时间长度与所述第一时间单元中用于传输所述目标上行信息的时间长度不同。
  42. 根据权利要求41所述的装置,其特征在于,所述目标上行信息包括确认/非确认ACK/NACK信息和/或周期性的信道状态信息CSI。
  43. 根据权利要求41或42所述的装置,其特征在于,所述第一传输方式包括的下列方式中的至少一种与所述第二传输方式包括的下列方式中的至少一种不同:
    所述终端设备对所述目标上行信息的预处理方式;
    所述终端设备传输所述目标上行信息所采用的传输模式,所述传输模式为多输入多输出MIMO传输模式;
    所述终端设备传输所述目标上行信息所使用的频域资源数量;
    所述终端设备传输所述目标上行信息所采用的发送功率;以及
    所述终端设备传输所述目标上行信息所使用的资源的资源编号。
  44. 根据权利要求43所述的装置,其特征在于,所述装置还包括:
    第一发送单元,用于向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一传输模式。
  45. 根据权利要求43或44所述的装置,其特征在于,所述装置还包括:
    第二发送单元,用于向所述终端设备发送在所述第一时间单元中传输所述目标上行信息所采用的第一频域资源数量。
  46. 根据权利要求45所述的装置,其特征在于,所述第一频域资源数量为
    Figure PCTCN2016102286-appb-100010
    其中,所述A和所述B均为正数,所述A为在所述第一时间单元中传输所述目标上行信息所采用的第二频域资源数量或预先约定的参数, 且所述B为预先约定的参数、根据预先约定的规则确定的参数或所述终端设备接收所述装置发送的参数。
  47. 根据权利要求46所述的装置,其特征在于,所述
    Figure PCTCN2016102286-appb-100011
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述k为正整数,且所述k为预先约定的参数或所述终端设备接收所述装置发送的参数;或
    所述
    Figure PCTCN2016102286-appb-100012
    其中,所述M为所述第二时间单元中上行时间资源的数量,所述t为正数,且所述t为预先约定的参数或所述终端设备接收所述装置发送的参数;或
    所述B=q·x,其中,所述q为正数,且所述q为预先约定的参数或所述终端设备接收所述装置发送的参数。
  48. 根据权利要求43至47中任一项所述的装置,其特征在于,所述装置还包括:
    第三发送单元,用于向所述终端设备发送第一功率调整消息,所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率,或所述第一功率调整消息用于调整在所述第一时间单元中传输所述目标上行信息的发送功率以及所述第二时间单元中传输所述目标上行信息的发送功率。
  49. 根据权利要求43至48中任一项所述的装置,其特征在于,所述装置还包括:
    第四发送单元,用于向所述终端设备发送第一信息,其中,所述第一信息用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一信息与第二信息不同,所述第二信息用于所述终端设备确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  50. 根据权利要求43至48中任一项所述的装置,其特征在于,所述装置还包括:
    第五发送单元,用于向所述终端设备发送第三信息和第一算法,其中,所述第三信息和所述第一算法用于所述终端设备确定在所述第一时间单元中传输所述目标上行信息所采用的第一资源编号,且所述第一算法与第二算法不同,所述第二算法用于所述终端设备根据所述第三信息确定在所述第二时间单元中传输所述目标上行信息所使用的第二资源编号。
  51. 根据权利要求43至50中任一项所述的装置,其特征在于,若所述目标上行信息为周期CSI,所述第一预处理方式为选取所述周期CSI中优先级最高的信息进行传输;或
    若所述目标上行信息为ACK/NACK信息,所述第一预处理方式为对所述ACK/NACK信息进行合并处理。
  52. 根据权利要求41至51中任一项所述的装置,其特征在于,所述装置还包括:
    第六发送单元,用于在所述接收终端设备在第一传输单元中使用第一传输方式发送的目标上行信息之前,向所述终端设备发送第一通知消息,所述第一通知消息用于通知所述终端设备能够在所述第一时间单元以及所述第二时间单元中传输所述目标上行信息。
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