WO2015050099A1 - Système de communication sans fil, dispositif de station de base, dispositif de terminal, procédé de communication sans fil et circuit intégré - Google Patents
Système de communication sans fil, dispositif de station de base, dispositif de terminal, procédé de communication sans fil et circuit intégré Download PDFInfo
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- WO2015050099A1 WO2015050099A1 PCT/JP2014/075998 JP2014075998W WO2015050099A1 WO 2015050099 A1 WO2015050099 A1 WO 2015050099A1 JP 2014075998 W JP2014075998 W JP 2014075998W WO 2015050099 A1 WO2015050099 A1 WO 2015050099A1
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- base station
- intermittent reception
- station device
- station apparatus
- reception operation
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0212—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower
- H04W52/0216—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower using a pre-established activity schedule, e.g. traffic indication frame
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/54—Allocation or scheduling criteria for wireless resources based on quality criteria
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/28—Discontinuous transmission [DTX]; Discontinuous reception [DRX]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W92/00—Interfaces specially adapted for wireless communication networks
- H04W92/16—Interfaces between hierarchically similar devices
- H04W92/20—Interfaces between hierarchically similar devices between access points
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- the present invention relates to a radio communication system, a base station apparatus, and a terminal apparatus, and more particularly to a radio communication system, a base station apparatus, a terminal apparatus, a radio communication method, and an integrated circuit related to data transmission / reception control.
- the W-CDMA system is standardized as a third generation cellular mobile communication system, and services are provided. Also, HSDPA with higher communication speed has been standardized and is being serviced.
- EUTRA Evolved Universal Terrestrial Radio Access
- OFDM Orthogonal Frequency Division Division Multiplexing
- PAPR Peak to Average Power Ratio
- Advanced-EUTRA a further evolution of EUTRA.
- communication at a maximum transmission rate of 1 Gbps or more and uplink 500 Mbps or more is performed using a band up to a maximum of 100 MHz bandwidth in uplink and downlink.
- Advanced-EUTRA it is considered to realize a maximum of 100 MHz band by bundling a plurality of bands compatible with EUTRA so as to accommodate EUTRA mobile station apparatuses.
- one band of 20 MHz or less of EUTRA is called a component carrier (Component Carrier: CC).
- the component carrier is also called a cell.
- bundling a band of 20 MHz or less is called carrier aggregation (Carrier Aggregation: CA) (Non-patent Document 1).
- Non-Patent Document 2 in communication between a base station apparatus and a mobile station apparatus, when the mobile station apparatus connects simultaneously with a macro cell and a small cell, control information (control plane information: Control-plane information) is transmitted by the macro cell. It has been proposed to transmit user information (User-plane information) in a small cell.
- control plane information control-plane information
- the technology for connecting the macro cell, the small cell, and the mobile station apparatus shown in Non-Patent Document 2 at the same time is also referred to as dual connect (or dual connectivity).
- 3GPP TS Technical Specification 36.300, V11.5.0 (2013-03), Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN), Overall description Stage2 3GPP (TR) (Technical Report) 36.842, V0.2.0 (2013-05), Study (on) Small (Cell) Enhancements (for E-UTRA (and E-UTRAN) and Higher layer (aspects) (release 12)
- Non-Patent Document 2 in communication between a base station apparatus and a mobile station apparatus, control information is transmitted and received between the base station apparatus of the macro cell and the mobile station apparatus, and the base station apparatus of the small cell and the mobile station When user information is transmitted and received between devices, control information and user information must be controlled to be transmitted in an appropriate cell.
- each of the macro cell base station apparatus and the small cell base station apparatus moves in consideration of the line delay between the base station apparatuses. It is considered to perform downlink and uplink data scheduling and downlink data transmission independently for a station apparatus.
- both base station apparatuses perform data scheduling independently, they do not know when the other base station apparatus has transmitted data to the mobile station apparatus. For this reason, the intermittent reception operation performed by the mobile station device for one base station device is inefficient as the intermittent reception operation of the mobile station device during dual connection.
- the present invention has been made in view of such circumstances, and a radio communication system, a base station apparatus, a mobile station apparatus, a radio communication method, and a radio communication system for efficiently operating an intermittent reception operation of a mobile station apparatus during dual connection, and
- An object is to provide an integrated circuit.
- a wireless communication system is a wireless communication system in which a first base station device and a second base station device communicate with a terminal device via a plurality of cells.
- the base station apparatus determines a first intermittent reception parameter set for the terminal apparatus to perform an intermittent reception operation on the first base station apparatus, and sends the terminal apparatus to the second base station apparatus.
- the information regarding the intermittent reception operation may be a plurality of types of intermittent reception parameter sets.
- the first base station device receives the second intermittent reception parameter set from the second base station device, and the terminal device receives the first intermittent reception parameter set.
- the reception parameter set and the second intermittent reception parameter set may be notified.
- a base station apparatus is a base station apparatus that communicates with a terminal apparatus via a plurality of cells together with a first base station apparatus, and the first base station apparatus includes: The terminal device transmits information on the intermittent reception operation for performing the intermittent reception operation to the first base station device, and the terminal device transmits the information from the first base station device to the first base station.
- An intermittent reception parameter set for performing an intermittent reception operation on a device is received, and the intermittent reception parameter set for the terminal device and an intermittent operation for the terminal device to perform an intermittent reception operation on its own base station device Notify the reception parameter set.
- the information regarding the intermittent reception operation may be a plurality of types of intermittent reception parameter sets, and a plurality of types of intermittent reception parameter sets may be determined, and the first base station The apparatus may be configured to notify the apparatus of the plural types of intermittent reception parameter sets.
- the base station apparatus which concerns on the other one aspect
- mode of this invention is a base station apparatus which communicates with a terminal device via a several cell with a 1st base station apparatus, Comprising: Said 1st base station
- the terminal device receives information related to the intermittent reception operation for the terminal device to perform the intermittent reception operation on the base station device from the device, and based on the information related to the intermittent reception operation, the terminal device An intermittent reception parameter set for executing the intermittent reception operation is determined, and the intermittent reception parameter set is notified to the first base station apparatus.
- the information related to the intermittent reception operation may be a plurality of types of intermittent reception parameter sets, and one intermittent reception parameter set is selected from the plurality of types of intermittent reception parameter sets. It may be configured to select.
- a terminal apparatus is a terminal apparatus that communicates with a first base station apparatus and a second base station apparatus via a plurality of cells, wherein the first base station When receiving the intermittent reception parameter set for executing the short-term intermittent reception operation and the intermittent reception parameter set for executing the long-term intermittent reception operation from the device, and performing the short-term intermittent reception operation, the first base station device When the intermittent reception operation is different from the intermittent reception operation for the second base station device and the short-term intermittent reception operation is performed, the intermittent reception operation for the first base station device is performed. The same intermittent reception operation is performed in the intermittent reception operation for the second base station apparatus.
- a wireless communication method is a wireless communication method for a wireless communication system in which a first base station device and a second base station device communicate with a terminal device via a plurality of cells.
- the first base station apparatus determines a first intermittent reception parameter set for the terminal apparatus to perform an intermittent reception operation on the first base station apparatus;
- An integrated circuit is an integrated circuit applied to a base station apparatus that communicates with a terminal apparatus through a plurality of cells together with the first base station apparatus, Means for transmitting information related to an intermittent reception operation for the terminal device to perform an intermittent reception operation to the first base station device, and the terminal device from the first base station device.
- Means for receiving an intermittent reception parameter set for performing an intermittent reception operation on the first base station device, the intermittent reception parameter set on the terminal device and the terminal device on the base station device Means for notifying an intermittent reception parameter set for performing the intermittent reception operation.
- An integrated circuit is an integrated circuit applied to a base station apparatus that communicates with a terminal apparatus via a plurality of cells together with a first base station apparatus, Based on the information regarding the intermittent reception operation, the terminal device based on the information regarding the intermittent reception operation for the terminal device to execute the intermittent reception operation for the base station device from the first base station device And a means for determining an intermittent reception parameter set for performing an intermittent reception operation on the own base station apparatus, and a means for notifying the first base station apparatus of the intermittent reception parameter set.
- An integrated circuit is an integrated circuit applied to a terminal device that communicates with a first base station device and a second base station device via a plurality of cells.
- Means for receiving an intermittent reception parameter set for executing a short-term intermittent reception operation and an intermittent reception parameter set for executing a long-term intermittent reception operation from the first base station apparatus, and the short-term intermittent reception operation When performing the intermittent reception operation different for the intermittent reception operation for the first base station device and the intermittent reception operation for the second base station device, and performing the short-term intermittent reception operation, Means for performing the same intermittent reception operation in the intermittent reception operation for the base station device and the intermittent reception operation for the second base station device.
- the base station apparatus can perform efficient data scheduling for the mobile station apparatus.
- the OFDM system is adopted as the downlink of EUTRA. Further, a DFT-spread OFDM single carrier communication system is employed as the uplink of EUTRA.
- FIG. 8 is a diagram showing a physical channel configuration of EUTRA.
- the downlink physical channel includes a physical downlink shared channel PDSCH (Physical Downlink Shared Channel), a physical downlink control channel PDCCH (Physical Downlink Control Channel), and a physical broadcast channel PBCH (Physical Broadcast Channel).
- PDSCH Physical Downlink Shared Channel
- PDCCH Physical Downlink Control Channel
- PBCH Physical Broadcast Channel
- there are physical signals such as downlink synchronization signals and downlink reference signals (Non-Patent Document 1).
- the uplink physical channel is composed of a physical random access channel PRACH (Physical Random Access Channel), a physical uplink shared channel PUSCH (Physical Uplink Shared Channel), and a physical uplink control channel PUCCH (Physical Uplink Control Channel) ( Non-patent document 1).
- PRACH Physical Random Access Channel
- PUSCH Physical Uplink Shared Channel
- PUCCH Physical Uplink Control Channel
- FIG. 9 is a diagram illustrating a downlink channel configuration of EUTRA.
- the downlink channels shown in FIG. 9 are each composed of a logical channel, a transport channel, and a physical channel.
- the logical channel defines the type of data transmission service that is transmitted and received in a medium access control (MAC) layer.
- the transport channel defines what characteristics the data transmitted over the air interface has and how it is transmitted.
- a physical channel is a physical channel that carries data conveyed to the physical layer by a transport channel.
- the downlink logical channels include broadcast control channel BCCH (Broadcast Control Channel), paging control channel PCCH (Paging Control Channel), common control channel CCCH (Common Control Channel), dedicated control channel DCCH (Dedicated Control Channel), and dedicated traffic.
- BCCH Broadcast Control Channel
- PCCH Paging Control Channel
- CCCH Common Control Channel
- DCCH dedicated Control Channel
- a channel DTCH Dedicated Traffic Channel
- the downlink transport channels include a broadcast channel BCH (Broadcast Channel), a paging channel PCH (Paging Channel), and a downlink shared channel DL-SCH (Downlink Shared Channel).
- BCH Broadcast Channel
- PCH paging channel
- DL-SCH Downlink Shared Channel
- the downlink physical channels include a physical broadcast channel PBCH (Physical Broadcast Channel), a physical downlink control channel PDCCH (Physical Downlink Control Channel), and a physical downlink shared channel PDSCH (Physical Downlink Shared Channel). These channels are transmitted and received between the base station apparatus and the mobile station apparatus.
- PBCH Physical Broadcast Channel
- PDCCH Physical Downlink Control Channel
- PDSCH Physical Downlink Shared Channel
- Broadcast control channel BCCH is a downlink channel used to broadcast system control information.
- the paging control channel PCCH is a downlink channel used for transmitting paging information, and is used when the network does not know the cell position of the mobile station apparatus.
- the common control channel CCCH is a channel used for transmitting control information between the mobile station apparatus and the network, and is used by a mobile station apparatus that does not have a radio resource control (RRC) connection with the network. Is done.
- RRC radio resource control
- the dedicated control channel DCCH is a one-to-one (point-to-point) bidirectional channel and is a channel used for transmitting individual control information between the mobile station apparatus and the network.
- the dedicated control channel DCCH is used by a mobile station apparatus having an RRC connection.
- the dedicated traffic channel DTCH is a one-to-one bidirectional channel, is a channel dedicated to one mobile station apparatus, and is used for transferring user information (unicast data).
- the broadcast channel BCH is broadcast to the entire cell in a fixed and predefined transmission format.
- the downlink shared channel DL-SCH supports HARQ (Hybrid Automatic Repeat Request), dynamic adaptive radio link control, and discontinuous reception (DRX: Discontinuous Reception), and needs to be broadcast to the entire cell. .
- HARQ Hybrid Automatic Repeat Request
- DRX Discontinuous Reception
- the paging channel PCH supports discontinuous reception (DRX) and needs to be broadcast to the entire cell.
- the paging channel PCH is mapped to a physical resource that is dynamically used for a traffic channel and other control channels, that is, a physical downlink shared channel PDSCH.
- the physical broadcast channel PBCH maps the broadcast channel BCH with a period of 40 milliseconds.
- the physical downlink control channel PDCCH includes radio resource assignment (downlink assignment) of the downlink shared channel PDSCH, hybrid automatic repeat request (HARQ) information for downlink data, and radio resources of the physical uplink shared channel PUSCH. It is a channel used to notify the mobile station apparatus of uplink transmission permission (uplink grant) that is an assignment.
- the physical downlink shared channel PDSCH is a channel used for transmitting downlink data or paging information.
- the physical downlink control channel PDCCH is arranged in the 1 to 3 symbol OFDM of the resource block from the head of one subframe, and the downlink shared channel PDSCH is arranged in the remaining OFDM symbols.
- One resource block is composed of 12 subcarriers and 7 OFDM symbols.
- One subframe is composed of two resource blocks, and one frame is composed of 10 subframes.
- the base station apparatus when the base station apparatus notifies the mobile station apparatus of radio resource allocation of the physical downlink shared channel PDSCH to the mobile station apparatus using the physical downlink control channel PDCCH, the physical downlink shared channel PDSCH allocated to the mobile station apparatus The region is the physical downlink shared channel PDSCH in the same subframe as the physical downlink control channel PDCCH in which the downlink assignment is notified.
- mapping between the transport channel and the physical channel is performed as follows. Broadcast channel BCH is mapped to physical broadcast channel PBCH. The paging channel PCH and the downlink shared channel DL-SCH are mapped to the physical downlink shared channel PDSCH. The physical downlink control channel PDCCH is used as a physical channel alone.
- mapping between logical channels and transport channels is performed as follows.
- the paging control channel PCCH is mapped to the paging channel PCH.
- Broadcast control channel BCCH is mapped to broadcast channel BCH and downlink shared channel DL-SCH.
- the common control channel CCCH, the dedicated control channel DCCH, and the dedicated traffic channel DTCH are mapped to the downlink shared channel DL-SCH.
- FIG. 10 is a diagram showing an uplink channel configuration of EUTRA.
- the uplink channels shown in FIG. 10 are each composed of a logical channel, a transport channel, and a physical channel. The definition of each channel is the same as the downlink channel.
- the uplink logical channels include a common control channel CCCH (Common Control Channel), a dedicated control channel DCCH (Dedicated Control Channel), and a dedicated traffic channel DTCH (Dedicated Traffic Channel).
- CCCH Common Control Channel
- DCCH dedicated Control Channel
- DTCH dedicated Traffic Channel
- the uplink transport channel includes an uplink shared channel UL-SCH (Uplink Shared Channel) and a random access channel RACH (Random Access Channel).
- UL-SCH Uplink Shared Channel
- RACH Random Access Channel
- the uplink physical channels include a physical uplink control channel PUCCH (Physical Uplink Control Channel), a physical uplink shared channel PUSCH (Physical Uplink Shared Channel) and a physical random access channel PRACH (Physical Random Access Channel). These channels are transmitted and received between the base station apparatus and the mobile station apparatus.
- the physical random access channel PRACH is mainly used for random access preamble transmission for acquiring transmission timing information from the mobile station apparatus to the base station apparatus. Random access preamble transmission is performed in a random access procedure.
- the common control channel CCCH is a channel used for transmitting control information between the mobile station apparatus and the network, and is used by a mobile station apparatus that does not have a radio resource control (RRC) connection with the network. Is done.
- RRC radio resource control
- the dedicated control channel DCCH is a one-to-one (point-to-point) bidirectional channel and is a channel used for transmitting individual control information between the mobile station apparatus and the network.
- the dedicated control channel DCCH is used by a mobile station apparatus having an RRC connection.
- the dedicated traffic channel DTCH is a one-to-one bidirectional channel, is a channel dedicated to one mobile station apparatus, and is used for transferring user information (unicast data).
- the uplink shared channel UL-SCH supports HARQ (Hybrid Automatic Repeat Request), dynamic adaptive radio link control, and discontinuous transmission (DTX). Limited control information is transmitted on the random access channel RACH.
- HARQ Hybrid Automatic Repeat Request
- DTX discontinuous transmission
- the physical uplink control channel PUCCH notifies the base station apparatus of response information (ACK / NACK) for downlink data, downlink radio quality information, and an uplink data transmission request (scheduling request: Scheduling Request: SR). Is the channel used for.
- the physical uplink shared channel PUSCH is a channel used for transmitting uplink data.
- the physical random access channel is a channel used for transmitting a random access preamble.
- mapping between the transport channel and the physical channel is performed as follows.
- the uplink shared channel UL-SCH is mapped to the physical uplink shared channel PUSCH.
- the random access channel RACH is mapped to the physical random access channel PRACH.
- the physical uplink control channel PUCCH is used as a physical channel alone.
- the logical channel and the transport channel are mapped as follows.
- the common control channel CCCH, the dedicated control channel DCCH, and the dedicated traffic channel DTCH are mapped to the uplink shared channel UL-SCH.
- Advanced-EUTRA a further evolution of EUTRA.
- communication at a maximum transmission rate of 1 Gbps or higher and 500 Mbps or higher of the uplink is performed using a band up to a maximum of 100 MHz bandwidth in the uplink and the downlink, respectively.
- Advanced-EUTRA is considering to realize a maximum of 100 MHz band by bundling a plurality of bands below 20 MHz of EUTRA so that EUTRA mobile station devices can be accommodated.
- one band of 20 MHz or less of EUTRA is called a component carrier (Component Carrier: CC) (Non-patent Document 1).
- one cell is configured by combining one downlink component carrier and one uplink component carrier.
- a single cell can be configured with only one downlink component carrier.
- Bundling a plurality of cells and performing communication between the base station apparatus and the mobile station apparatus via the plurality of cells is called carrier aggregation.
- One base station apparatus allocates a plurality of cells that match the communication capability and communication conditions of the mobile station apparatus, and communicates with the mobile station apparatus via the allocated plurality of cells.
- the some cell allocated to the mobile station apparatus is classified into a 1st cell (Primary Cell: PCell) and a cell other than that as a 2nd cell (Secondary Cell: SCell).
- a special function such as allocation of the physical uplink control channel PUCCH is set in the first cell.
- the mobile station apparatus does not perform downlink reception processing on the second cell immediately after allocation (or the radio resource indicated by the physical downlink control channel PDCCH). Does not follow the allocation information). Then, after the mobile station apparatus is instructed to activate the second cell from the base station apparatus, the mobile station apparatus starts downlink reception processing for the second cell instructed to activate (or physically According to the radio resource allocation information indicated by the downlink control channel PDCCH).
- the mobile station apparatus performs downlink reception processing for the second cell instructed to deactivate. It stops (or does not follow the radio resource allocation information indicated by the physical downlink control channel PDCCH).
- the second cell that is instructed to activate by the base station device and is performing downlink reception processing is called an activation cell, and the second cell and deactivation immediately after allocation from the base station device to the mobile station device.
- the second cell that has been instructed and has stopped the downlink reception process is called a deactivated cell.
- the first cell is always an activated cell.
- an enhanced physical downlink control channel EPDCCH (Enhanced-Physical-Downlink-Control-Channel) obtained by extending the physical downlink control channel PDCCH is added.
- FIG. 11 shows a protocol stack that handles control data of the mobile station apparatus and base station apparatus of EUTRA.
- FIG. 12 is a protocol stack for handling user data of EUTRA mobile station apparatuses and base station apparatuses. 11 and 12 will be described below.
- the physical layer (Physical layer: PHY layer) provides a transmission service to an upper layer using a physical channel (Physical layer).
- the PHY layer is connected to an upper medium access control layer (Medium Access Control Layer) via a transport channel. Data moves between the MAC layer, the PHY layer, and the layer (layer) via the transport channel. Data transmission / reception is performed between the mobile station apparatus and the base station apparatus via a physical channel.
- Medium Access Control Layer Medium Access Control Layer
- the MAC layer maps various logical channels to various transport channels.
- the MAC layer is connected to an upper radio link control layer (Radio Link Control Layer: RLC layer) through a logical channel.
- RLC layer Radio Link Control Layer
- the logical channel is roughly classified according to the type of information to be transmitted, and is divided into a control channel for transmitting control information and a traffic channel for transmitting user information.
- the MAC layer has a function of controlling the PHY layer to perform intermittent transmission / reception (DRX / DTX), a function of notifying transmission power information, a function of performing HARQ control, and the like.
- the MAC layer has a function of notifying the data amount of the transmission buffer corresponding to each logical channel. This function is called buffer status report (Buffer Status Report: BSR).
- BSR buffer Status Report
- each logical channel is assigned to a logical channel group (Logical Channel Group: LCG), and the transmission buffer amount for each LCG is notified to the base station apparatus as a MAC layer message.
- LCG Logical Channel Group
- the BSR is triggered to notify the BSR when one periodic timer expires.
- the MAC layer when performing carrier aggregation, also has a function of controlling the PHY layer in order to activate / deactivate cells and a function of controlling the PHY layer in order to manage uplink transmission timing. ing.
- the RLC layer divides and concatenates the data received from the upper layer, and adjusts the data size so that the lower layer can transmit data appropriately.
- the RLC layer also has a function for guaranteeing QoS (Quality of Service) required by each data. That is, the RLC layer has functions such as data retransmission control.
- the packet data convergence protocol layer (Packet Data Convergence Protocol layer: PDCP layer) has a header compression function that compresses unnecessary control information in order to efficiently transmit IP packets as user data in a wireless section.
- the PDCP layer also has a data encryption function.
- the radio resource control layer defines only control information.
- the RRC layer sets and resets a radio bearer (RB) and controls a logical channel, a transport channel, and a physical channel.
- the RB is divided into a signal radio bearer (Signaling Radio Bearer: SRB) and a data radio bearer (Data Radio Bearer: DRB), and the SRB is used as a path for transmitting an RRC message as control information.
- DRB is used as a route for transmitting user information.
- Each RB is set between the RRC layers of the base station apparatus and the mobile station apparatus.
- the PHY layer corresponds to the first physical layer in the hierarchical structure of the generally known Open Systems Interconnection (OSI) model, and the MAC layer, RLC layer, and PDCP layer are OSI.
- the RRC layer corresponds to the data link layer, which is the second layer of the model, and the network layer, which is the third layer of the OSI model.
- DRX Discontinuous reception
- DTX discontinuous transmission
- the intermittent reception control is managed using a plurality of types of timers.
- the mobile station apparatus receives a discontinuous reception (DRX) parameter set (intermittent reception start offset, intermittent reception period (DRX cycle), intermittent reception period timer (on Duration timer), reception extension period timer (Inactivity timer), re-transmission from the base station apparatus.
- DRX discontinuous reception
- DRX discontinuous reception
- Fig. 13 shows an example of the operation of the mobile station device during intermittent reception.
- the intermittent reception cycle is a cycle in which intermittent reception is performed, and indicates the length of a period from the start position of the intermittent reception period to the start position of the next intermittent reception period.
- the intermittent reception period is a period for monitoring the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH in one intermittent reception cycle (physical downlink in one intermittent reception cycle). A period during which reception processing of the link control channel PDCCH or the extended physical downlink control channel EPDCCH is performed).
- the intermittent reception period timer is started at the start position of the intermittent reception period.
- the retransmission period is a period in which downlink data reception on the physical downlink shared channel PDSCH fails and retransmission data may be transmitted from the base station apparatus.
- the mobile station apparatus monitors the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH during the retransmission period.
- the reception extension period is the physical downlink control channel PDCCH when the downlink assignment / uplink grant addressed to the mobile station apparatus is detected on the physical downlink control channel PDCCH, or the extended physical downlink control channel EPDCCH, or This is a period for extending the monitoring of the extended physical downlink control channel EPDCCH.
- the reception extension period timer starts in the subframe next to the subframe in which the downlink allocation / uplink grant addressed to the mobile station apparatus is detected on the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH. Is done.
- the intermittent reception start offset is information regarding the start position of the intermittent reception period, and the start position of the intermittent reception period is determined based on the intermittent reception start offset.
- the timer value of each timer may be represented by the number of subframes.
- the intermittent reception cycle includes a long-term intermittent reception cycle (Long DRX cycle) and a short-term intermittent reception cycle (Short DRX cycle).
- Long DRX cycle long-term intermittent reception cycle
- Short DRX cycle short-term intermittent reception cycle
- the mobile station device first performs intermittent reception control with a short-term intermittent reception cycle, and after a certain period (short-term intermittent reception cycle period), it is intermittent for a long time. Performs intermittent reception control of the reception cycle.
- the short period intermittent reception cycle period is again within the period indicated by the short period intermittent reception cycle period after the mobile station apparatus receives the physical downlink control channel PDCCH during the intermittent reception operation in the short period intermittent reception cycle. This is a period for shifting to the intermittent reception operation in the long-term intermittent reception cycle when the physical downlink control channel PDCCH is not received.
- the length of the short-term intermittent reception cycle period may be represented by the number of short-term intermittent reception cycles.
- the mobile station apparatus monitors the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH during the active time (Active time).
- the active time indicates a period such as an intermittent reception period, a retransmission period, or a reception extension period given by the DRX parameter.
- the active time indicates a period determined by the state of the mobile station apparatus other than the period set by the DRX parameter.
- the mobile station apparatus that is performing carrier aggregation performs the same intermittent reception operation for all cells. That is, as shown in FIG. 14, the mobile station apparatus that is performing carrier aggregation monitors the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH in the same intermittent reception cycle and intermittent reception period.
- the mobile station apparatus When the mobile station apparatus receives a downlink assignment / uplink grant addressed to the mobile station apparatus on the physical downlink control channel PDCCH of one cell or the extended physical downlink control channel EPDCCH, all of the carrier aggregations are performed. In this cell, the monitoring period of the physical downlink control channel PDCCH or the extended physical downlink control channel EPDCCH is extended by the set reception extension period.
- a mobile station apparatus performs dual connection with two base station apparatuses and simultaneously communicates with both base station apparatuses.
- Dual connect is not a high-speed backbone line (also referred to as a backhaul) that can be regarded as non-delayed like an optical fiber between a macro cell base station apparatus and a small cell base station apparatus, but uses a low-speed backbone line with a delay.
- the mobile station device is connected to the macro cell base station device and the small cell base station device, and the mobile station device and both base station devices transmit and receive data via multiple cells.
- dual connect communication may be performed between a mobile station apparatus and a base station apparatus with a macro cell as a first cell (PCell) and a small cell as a second cell (SCell).
- control data may be transmitted and received between the macro cell base station apparatus and the mobile station apparatus
- user data may be transmitted and received between the small cell base station apparatus and the mobile station apparatus.
- the base station apparatus that transmits / receives data may be changed based on the type of data (for example, QoS or logical channel) instead of the distinction between control data and user data.
- the MAC layer of the mobile station device also has a function of controlling the PHY layer in order to manage transmission timing groups.
- the base station devices are connected by a low-speed line with a delay, so that the macro cell base station device and the small cell base station device are each considered in consideration of the line delay between the base station devices.
- downlink and uplink data scheduling and downlink data transmission are performed independently for the mobile station apparatus.
- both base station apparatuses perform data scheduling independently, they do not know when the other base station apparatus has transmitted data to the mobile station apparatus. For this reason, when the base station apparatus transmits data to the mobile station apparatus that is performing the intermittent reception operation, it can recognize that the mobile station apparatus extends the reception period, but the other base station apparatus Cannot recognize the extension of the reception period due to data transmission from. Therefore, if the conventional intermittent reception operation performed by the mobile station device for one base station device is applied as it is as the intermittent reception operation at the time of dual connection, the efficiency is deteriorated.
- FIG. 1 is a diagram illustrating a configuration of a mobile station apparatus according to an embodiment of the present invention.
- the mobile station apparatuses 1-1 to 1-3 include a data generation unit 101, a transmission data storage unit 103, a transmission HARQ processing unit 105, a transmission processing unit 107, a radio unit 109, a reception processing unit 111, a reception HARQ processing unit 113, and a MAC.
- the information extraction unit 115, the PHY control unit 117, the MAC control unit 119, the data processing unit 121, and the RRC control unit 123 are configured.
- the data generation unit 101 has functions of a PDCP layer and an RLC layer.
- the data generation unit 101 performs processing such as header compression of the IP packet of user data, data encryption, data division and combination, and adjusts the data size.
- the data generation unit 101 outputs the processed data to the transmission data storage unit 103.
- the transmission data storage unit 103 accumulates the data input from the data generation unit 101, and outputs the instructed data to the transmission HARQ processing unit 105 by the instructed data amount based on the instruction from the MAC control unit 119. . In addition, the transmission data storage unit 103 outputs information on the amount of accumulated data to the MAC control unit 119.
- the transmission HARQ processing unit 105 encodes input data and performs puncture processing on the encoded data. Then, transmission HARQ processing section 105 outputs the punctured data to transmission processing section 107, and stores the encoded data.
- the transmission HARQ processing unit 105 when instructed to retransmit data from the MAC control unit 119, performs a puncture process different from the previously performed puncture from the stored encoded data, and transmits the punctured data to the transmission processing unit 107. Output to.
- the transmission processing unit 107 modulates and encodes the data input from the transmission HARQ processing unit 105.
- the transmission processing unit 107 performs DFT (Discrete Fourier Transform (Discrete Fourier Transform))-IFFT (Inverse Fast Fourier Transform (Inverse Fast Fourier Transform)) processing of the modulated and encoded data, and after processing, CP (Cyclic prefix) Is inserted into the physical uplink shared channel (PUSCH) of each uplink component carrier (cell) and output to the radio section 109.
- DFT Discrete Fourier Transform
- IFFT Inverse Fast Fourier Transform
- CP Cyclic prefix
- the transmission processing unit 107 when there is a response instruction for received data from the PHY control unit 117, the transmission processing unit 107 generates an ACK or NACK signal, places the generated signal in the physical uplink control channel (PUCCH), and transmits the radio unit 109. Output to.
- the transmission processing unit 107 When there is a random access preamble transmission instruction from the PHY control unit 117, the transmission processing unit 107 generates a random access preamble, places the generated signal in a physical random access channel (PRACH), and outputs the generated signal to the radio unit 109.
- PRACH physical random access channel
- the radio unit 109 up-converts the data input from the transmission processing unit 107 to the radio frequency of the transmission position information (transmission cell information) instructed from the PHY control unit 117, adjusts the transmission power, and transmits the data from the transmission antenna. Send.
- Radio section 109 down-converts the radio signal received from the reception antenna and outputs the result to reception processing section 111.
- the reception processing unit 111 performs FFT (Fast Fourier Transform) processing, decoding, demodulation processing, and the like on the signal input from the wireless unit 109.
- FFT Fast Fourier Transform
- the reception processing unit 111 demodulates the physical downlink control channel PDCCH or the physical extended downlink control channel EPDCCH and detects the downlink allocation information of the mobile station apparatus, the reception processing unit 111 determines the physical downlink based on the downlink allocation information.
- the shared channel PDSCH is demodulated and the fact that downlink allocation information has been acquired is output to the MAC control unit 119.
- the reception processing unit 111 outputs the demodulated physical downlink shared channel PDSCH data to the reception HARQ processing unit 113.
- the reception processing unit 111 demodulates the physical downlink control channel PDCCH or the physical extended downlink control channel EPDCCH, uplink transmission permission information (Uplink grant: uplink grant), and uplink transmission data response information (ACK / NACK). ) Is detected, the acquired response information is output to the MAC control unit 119.
- the uplink transmission permission information includes data modulation / coding scheme, data size information, HARQ information, transmission position information, and the like.
- the reception HARQ processing unit 113 performs a decoding process on the input data from the reception processing unit 111, and outputs the data to the MAC information extraction unit 115 when the decoding process is successful.
- the reception HARQ processing unit 113 stores the data that has failed in the decoding process when the decoding process of the input data has failed.
- the reception HARQ processing unit 113 When receiving the retransmission data, the reception HARQ processing unit 113 combines the stored data and the retransmission data and performs a decoding process. Further, the reception HARQ processing unit 113 notifies the MAC control unit 119 of success or failure of the input data decoding process.
- the MAC information extraction unit 115 extracts the control data of the MAC layer (Medium Access Access Control layer) from the data input from the reception HARQ processing unit 113, and outputs the extracted MAC control information to the MAC control unit 119.
- the MAC information extraction unit 115 outputs the remaining data to the data processing unit 121.
- the data processing unit 121 has functions of a PDCP layer and an RLC layer, performs a decompression function of a compressed IP header, a decryption function of encrypted data, a data division and combination, and the like, and converts the data into an original form Return to.
- the data processing unit 121 divides the RRC message and user data, outputs the RRC message to the RRC control unit 123, and outputs the user data to the upper layer.
- the PHY control unit 117 controls the transmission processing unit 107, the radio unit 109, and the reception processing unit 111 according to an instruction from the MAC control unit 119.
- the PHY control unit 117 notifies the transmission processing unit 107 of the modulation / coding scheme and transmission position from the modulation / coding scheme, transmission power information and transmission position information (transmission cell information) notified from the MAC control unit 119,
- the radio unit 109 is notified of the frequency information and transmission power information of the transmission cell.
- the PHY control unit 117 performs power ON / OFF control of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111 according to an instruction from the MAC control unit 119.
- the MAC control unit 119 has a MAC layer function, and controls the MAC layer based on information acquired from the RRC control unit 123 or a lower layer.
- the MAC control unit 119 determines the data transmission destination based on the data transmission control setting specified from the RRC control unit 123, the data amount information acquired from the transmission data storage unit 103, and the uplink transmission permission information acquired from the reception processing unit 111.
- the data transmission priority order is determined, and information about data to be transmitted is notified to the transmission data storage unit 103.
- the MAC control unit 119 notifies the transmission HARQ processing unit 105 of HARQ information, and outputs the modulation / coding scheme and transmission position information (transmission cell information) to the PHY control unit 117.
- the MAC control unit 119 obtains response information for the uplink transmission data from the reception processing unit 111, and when the response information indicates NACK (non-response), retransmits to the transmission HARQ processing unit 105 and the PHY control unit 117. Instruct.
- the MAC control unit 119 instructs the PHY control unit 117 to transmit an ACK or NACK signal.
- the MAC control unit 119 When the MAC control unit 119 acquires activation / deactivation instruction information and discontinuous reception (DRX) control information of a cell (or component carrier) from the MAC control information input from the MAC information extraction unit 115, the MAC control unit 119 is activated. To perform activation / deactivation control and intermittent reception control, the PHY control unit 117 is controlled to perform operation start / operation stop control of the radio unit 109, the transmission processing unit 107, and the reception processing unit 111.
- DRX discontinuous reception
- the MAC control unit 119 applies each timer of the intermittent reception parameter acquired from the RRC control 123 to each cell (or each base station device).
- the MAC control unit 119 determines an intermittent reception start frame based on the intermittent reception start offset and the intermittent reception cycle.
- the MAC control unit 119 starts an intermittent reception period timer and instructs the PHY control unit 117 to start operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- the MAC control unit 119 instructs the PHY control unit 117 to stop the operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- the MAC control unit 119 In the dual connection state, when the MAC control unit 119 acquires the downlink assignment / uplink grant information from the reception processing unit 111 while the intermittent reception period timer is operating, the MAC control unit 119 performs the downlink assignment / uplink grant. An appropriate cell reception extension period timer is started in consideration of which base station apparatus the downlink allocation / uplink grant information is from.
- the MAC control unit 119 When not in the dual connect state, when the MAC control unit 119 acquires downlink assignment / uplink grant information from the reception processing unit 111 while the intermittent reception period timer is operating, the reception extension period timer for all cells is started and PHY control is performed. The unit 117 is instructed to start operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111. When the intermittent reception period timer expires, the MAC control unit 119 instructs the PHY control unit 117 to stop the operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- the MAC control unit 119 stops the operation of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111 in the PHY control unit 117 when either the reception extension period timer or the intermittent reception period timer is operating. Do not instruct. When both the reception extension period timer and the intermittent reception timer expire, the MAC control unit 119 instructs the PHY control unit 117 to stop the operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- a retransmission period timer is set.
- the PHY control unit 117 is instructed to start operation of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- the MAC control unit 119 instructs the PHY control unit 117 to stop the operations of the transmission processing unit 107, the radio unit 109, and the reception processing unit 111.
- the MAC control unit 119 outputs transmission timing information among the MAC control information input from the MAC information extraction unit 115 to the PHY control unit 117.
- the MAC control unit 119 manages uplink transmission timing and controls the PHY control unit 117.
- the MAC control unit 119 manages validity / invalidity of uplink transmission timing using a transmission timing timer.
- the MAC control unit 119 has a transmission timing timer for each cell or transmission timing group, and starts or restarts a transmission timing timer corresponding to the case where transmission timing information is applied for each cell or transmission timing group.
- the MAC control unit 119 creates a buffer status report (BSR) that is data amount information stored in the transmission data storage unit 103 and outputs the buffer status report (BSR) to the transmission data storage unit 103. Further, the MAC control unit 119 creates a power headroom report (PHR) that is transmission power information for each cell, and outputs it to the transmission data storage unit 103.
- BSR buffer status report
- PHR power headroom report
- the RRC control unit 123 includes a base station device 3-1 and a base station device, such as connection / disconnection processing with the base station device 3-1, carrier aggregation setting, dual connect setting, control data and user data data transmission control setting, etc. Make various settings for communication with 3-2.
- the RRC control unit 123 exchanges information with an upper layer associated with various settings, and controls a lower layer associated with the various settings.
- the RRC control unit 123 creates an RRC message and outputs the created RRC message to the data generation unit 101.
- the RRC control unit 123 analyzes the RRC message input from the data processing unit 121.
- the RRC control unit 123 creates a message indicating the transmission capability of the mobile station apparatus and outputs the message to the data generation unit 101. Further, the RRC control unit 123 outputs information necessary for the MAC layer to the MAC control unit 119 and outputs information necessary for the physical layer to the PHY control unit 117.
- the RRC control unit 123 includes an intermittent reception parameter set (intermittent reception start offset, intermittent reception period (DRX cycle), intermittent reception period timer (on Duration timer), reception extension period timer (Inactivity timer), and retransmission period timer (Retransmission timer). ) Etc.), the intermittent reception parameters are output to the MAC control unit 119. Further, when the RRC control unit 123 recognizes that the base station apparatus 3-1 and the base station apparatus 3-2 perform communication in the dual connect, the RRC control unit 123 notifies the MAC control unit 119 of the dual connect state.
- an intermittent reception parameter set intermittent reception start offset, intermittent reception period (DRX cycle), intermittent reception period timer (on Duration timer), reception extension period timer (Inactivity timer), and retransmission period timer (Retransmission timer).
- the transmission processing unit 107, the radio unit 109, the reception processing unit 111, and the PHY control unit 117 perform operations of the physical layer, and transmit data storage unit 103, transmission HARQ processing unit 105, reception HARQ processing unit 113, MAC information extraction.
- 115 and MAC control unit 119 operate in the MAC layer
- data generation unit 101 and data processing unit 121 operate in the RLC layer and PDCP layer
- RRC control unit 123 operates in the RRC layer.
- FIG. 2 is a diagram showing a configuration of the base station apparatus according to the embodiment of the present invention.
- the base station device 3-1 or the base station device 3-2 includes a data generation unit 201, a transmission data storage unit 203, a transmission HARQ processing unit 205, a transmission processing unit 207, a radio unit 209, a reception processing unit 211, and a reception HARQ.
- the data generation unit 201 has functions of a PDCP layer and an RLC layer, and performs processing such as header compression of the IP packet of user data, data encryption, data division and combination, and adjusts the data size.
- the data generation unit 201 outputs the processed data and the logical channel information of the data to the transmission data storage unit 203.
- the transmission data storage unit 203 accumulates the data input from the data generation unit 201 for each user, and transmits the user data instructed based on the instruction from the MAC control unit 219 for the specified data amount. The data is output to the unit 205. Also, the transmission data storage unit 203 outputs information on the amount of accumulated data to the MAC control unit 219.
- the transmission HARQ processing unit 205 encodes input data and performs puncture processing on the encoded data. Then, the transmission HARQ processing unit 205 outputs the punctured data to the transmission processing unit 207, and stores the encoded data. The transmission HARQ processing unit 205, when instructed to retransmit data from the MAC control unit 219, performs a puncture process different from the previously performed puncture from the stored encoded data, and transmits the punctured data to the transmission processing unit 207. Output to.
- the transmission processing unit 207 modulates and encodes the data input from the transmission HARQ processing unit 205.
- the transmission processing unit 207 maps the modulated and encoded data to signals such as physical downlink control channel PDCCH, downlink synchronization signal, physical broadcast channel PBCH, physical downlink shared channel PDSCH and the like of each cell,
- the mapped data is subjected to OFDM signal processing such as serial / parallel conversion, IFFT (Inverse Fourier Transform (Inverse Fast Fourier Transform)) conversion, and CP insertion to generate an OFDM signal.
- OFDM signal processing such as serial / parallel conversion, IFFT (Inverse Fourier Transform (Inverse Fast Fourier Transform)) conversion, and CP insertion to generate an OFDM signal.
- the transmission processing unit 207 outputs the generated OFDM signal to the wireless unit 209.
- the transmission processing unit 207 when there is a response instruction for received data from the MAC control unit 219, the transmission processing unit 207 generates an ACK or NACK signal, places the generated signal in the physical downlink control channel PDCCH, and outputs it to the radio unit 209. To do.
- the radio unit 209 up-converts data input from the transmission processing unit 207 to a radio frequency, adjusts transmission power, and transmits data from the transmission antenna.
- the radio unit 209 down-converts the radio signal received from the reception antenna and outputs it to the reception processing unit 211.
- the reception processing unit 211 performs FFT (Fast Fourier Transform (fast Fourier transform)) processing, decoding, demodulation processing, and the like on the signal input from the wireless unit 209.
- FFT Fast Fourier Transform
- the reception processing unit 211 outputs the data of the physical uplink shared channel PUSCH among the demodulated data to the reception HARQ processing unit 213. Further, the reception processing unit 211 receives response information (ACK / NACK), downlink radio quality information (CQI), and uplink radio quality information (CQI) of control data acquired from the physical uplink control channel PUCCH among the demodulated data. Transmission request information (scheduling request) is output to the MAC control unit 219.
- the reception HARQ processing unit 213 performs a decoding process on the input data from the reception processing unit 211 and outputs the data to the MAC information extraction unit 215 when the decoding process is successful.
- the reception HARQ processing unit 213 stores the data that has failed in the decoding process when the decoding process of the input data has failed.
- the reception HARQ processing unit 213 When receiving the retransmission data, the reception HARQ processing unit 213 combines the stored data and the retransmission data and performs a decoding process. Also, the reception HARQ processing unit 213 notifies the MAC control unit 219 of the success or failure of the input data decoding process.
- the MAC information extraction unit 215 extracts the MAC layer control data from the data input from the reception HARQ processing unit 213, and outputs the extracted control information to the MAC control unit 219.
- the MAC information extraction unit 215 outputs the remaining data to the data processing unit 221.
- the data processing unit 221 has functions of a PDCP layer and an RLC layer, and performs processing such as a decompression function of a compressed IP header, a decryption function of encrypted data, and a division and combination of data. Return to.
- the data processing unit 221 divides the RRC message and user data, outputs the RRC message to the RRC control unit 223, and outputs the user data to the upper layer.
- the MAC control unit 219 has a MAC layer function, and controls the MAC layer based on information acquired from the RRC control unit 223 and lower layers.
- the MAC control unit 219 performs downlink and uplink scheduling processing.
- the MAC control unit 219 includes downlink transmission data response information (ACK / NACK), downlink radio quality information (CQI) and uplink transmission request information (scheduling request) input from the reception processing unit 211, and a MAC information extraction unit. Downlink and uplink scheduling processing is performed based on the control information input from 215, the data amount information for each user acquired from the transmission data storage unit 203, and the reception operation state of the mobile station apparatus 1-1.
- the MAC control unit 219 outputs the schedule result to the transmission processing unit 207.
- the MAC control unit 219 acquires response information for the uplink transmission data from the reception processing unit 211, and resends to the transmission HARQ processing unit 205 and the transmission processing unit 207 when the response information indicates NACK (non-response). Instruct.
- the MAC control unit 219 instructs the transmission processing unit 207 to transmit an ACK or NACK signal.
- the MAC control unit 219 performs activation / deactivation processing of the cell (or component carrier) assigned to the mobile station apparatus 1-1, management of uplink transmission timing, and the like.
- the reception operation state of the mobile station apparatus 1-1 is determined from the intermittent reception parameters acquired from the RRC control unit 223.
- the RRC control unit 223 performs connection / disconnection processing with the mobile station apparatus 1-1, carrier aggregation setting, dual connect setting, control data of the mobile station apparatus 1-1, and data on which cell the user data is transmitted / received.
- Various settings for communication with the mobile station apparatus 1-1 such as transmission control settings, are performed, information is exchanged with an upper layer according to the various settings, and lower layer control is performed according to the various settings.
- the RRC control unit 223 creates various RRC messages and outputs the created RRC messages to the data generation unit 201.
- the RRC control unit 223 analyzes the RRC message input from the data processing unit 221.
- the RRC control unit 223 acquires a message indicating the transmission / reception capability of the mobile station device from the mobile station device 1-1
- the RRC control unit 223 performs carrier aggregation suitable for the mobile station device 1-1 based on the transmission / reception capability information of the mobile station device. Configure settings or dual connect settings.
- the RRC control unit 223 outputs information necessary for the MAC layer to the MAC control unit 219, and outputs information necessary for the physical layer to the PHY control unit 217. Further, the RRC control unit 223 notifies the necessary information to the inter-base station communication unit 225 and the MME communication unit 227 when performing handover or dual connection. When dual connection is performed, information regarding the intermittent reception operation performed by the mobile station device 1-1 is also notified to the inter-base station communication unit 225.
- the inter-base station apparatus communication unit 225 communicates with another base station apparatus, and transmits a control message between base station apparatuses input from the RRC control unit 223 to the other base station apparatus. Further, the inter-base station apparatus communication unit 225 receives a control message between base station apparatuses from other base station apparatuses, and outputs the received control message to the RRC control unit 223. Control messages between base station apparatuses include a control message related to handover and a control message related to dual connection.
- the MME communication unit 227 communicates with an MME (Mobility Management Entity) and transmits a control message between the base station apparatus and the MME input from the RRC control unit 223 to the MME. Further, the MME communication unit 227 receives a control message between the base station apparatus and the MME from the MME, and outputs the received control message to the RRC control unit 223. Control messages between the base station apparatus and the MME include a path switch request message and a path switch request response message.
- MME Mobility Management Entity
- the GW communication unit 229 communicates with the GW, receives the user data of the mobile station apparatus sent from the GW, and outputs the received data to the data generation unit 201. In addition, the GW communication unit 229 transmits user data of the mobile station apparatus input from the data processing unit 221 to the GW.
- the transmission processing unit 207, the radio unit 209, and the reception processing unit 211 perform operations of the PHY layer, and transmit data storage unit 203, transmission HARQ processing unit 205, reception HARQ processing unit 213, MAC information extraction unit 215, MAC control.
- the unit 219 performs operations of the MAC layer
- the data generation unit 201 and the data processing unit 221 perform operations of the RLC layer and the PDCP layer
- the RRC control unit 223 performs operations of the RRC layer.
- a wireless communication system as described with reference to FIGS. 8 to 14 is assumed. Then, as shown in FIG. 8, the base station device 3-1 and the plurality of mobile station devices 1-1, 1-2, 1-3 communicate. Further, a wireless communication system is assumed in which the macro cell base station device 3-1, the small cell base station device 3-2, and the mobile station device 1-1 described in FIG. 15 communicate via a plurality of cells. ing.
- the mobile station apparatus 1-1 is connected to the base station apparatus 3-1 and the base station apparatus 3-2 by using a dual connect (dual connect connection).
- At least control information (Control-plane information) of the mobile station apparatus 1-1 is transmitted and received between the base station apparatus 3-1 of the macro cell and the MME (Mobility Management Entity).
- At least user information (User-plane information) of the mobile station device 1-1 is transmitted and received between the small cell base station device 3-2 and the GW (Gateway).
- Control information for controlling the mobile station apparatus 1-1 is transmitted and received between the macro cell base station apparatus 3-1 and the small cell base station apparatus 3-2.
- At least control information (Control-plane information) of the mobile station apparatus 1-1 is transmitted and received between the base station apparatus 3-1 and MME (Mobility Management Entity) of the macro cell. Done. At least user information (User-plane information) of the mobile station apparatus 1-1 is transmitted and received between the base station apparatus 3-1 and GW (Gateway) in the macro cell.
- MME Mobility Management Entity
- User-plane information is transmitted and received between the base station apparatus 3-1 and GW (Gateway) in the macro cell.
- the macro cell base station apparatus 3-1 transfers the user information received from the GW to the small cell base station apparatus 3-2.
- the small cell base station apparatus 3-2 transfers the user information received from the mobile station apparatus 1-1 to the base station apparatus 3-1.
- transmission / reception of control information for controlling the mobile station apparatus 1-1 is performed between the base station apparatus 3-1 of the macro cell and the base station apparatus 3-2 of the small cell.
- the procedure for the base station device 3-1 and the base station device 3-2 to determine the intermittent reception parameter for the mobile station device 1-1 to perform the intermittent reception operation is described below.
- the macro cell base station apparatus 3-1 communicates with the mobile station apparatus 1-1 using the cell 1
- the small cell base station apparatus 3-2 communicates with the mobile station apparatus 1-1 using the cell 2. . That is, an example is shown in which mobile station apparatus 1-1 communicates with base station apparatus 3-1 and base station apparatus 3-2 using cell 1 and cell 2 simultaneously.
- the base station device 3-1 determines the communication with the mobile station device 1-1 in the dual connection with the base station device 3-2, and then requests the base station device 3-2 to connect with the dual connection. Send a request message.
- the dual connect request message includes information on the mobile station device 1-1.
- the base station device 3-2 transmits to the base station device 3-1 a dual connect request response message indicating a response to the connection request with dual connect.
- the dual connect request response message includes the setting information of the cell 2 of the base station device 3-2 (FIG. 5).
- the base station device 3-1 transmits an intermittent reception parameter (for intermittent reception operation for the mobile station device 1-1 to the base station device before the dual connect request message is transmitted or after the dual connect request response message is received).
- An intermittent reception start offset, an intermittent reception cycle (DRX cycle), an intermittent reception period timer (on Duration timer), a reception extension period timer (Inactivity timer), a retransmission period timer (Retransmission timer), and the like are determined.
- the base station apparatus 3-1 determines several types of intermittent reception parameter candidates for the mobile station apparatus 1-1 to perform an intermittent reception operation on the base station apparatus 3-2.
- the base station apparatus 3-1 notifies the base station apparatus 3-2 of several types of determined intermittent reception parameter candidates.
- the base station apparatus 3-1 determines several types of candidates for all the intermittent reception parameters of the intermittent reception start offset, the intermittent reception period, the intermittent reception period timer, the reception extension period timer, and the retransmission period timer.
- the base station apparatus 3-2 may be notified.
- the base station apparatus 3-1 may determine several types of candidates for some parameters such as the intermittent reception start offset and the intermittent reception cycle, and notify the base station apparatus 3-2 of them.
- the base station apparatus 3-1 considers the intermittent reception parameters for the mobile station apparatus 1-1 determined earlier to perform the intermittent reception operation on the base station apparatus, and the mobile station apparatus 1-1 You may determine the candidate of the intermittent reception parameter for performing intermittent reception operation
- the base station device 3-2 selects an optimum intermittent reception parameter that the base station device provides to the mobile station device 1-1 from the candidates for the intermittent reception parameter acquired from the base station device 3-1.
- the base station device 3-2 notifies the information regarding the selected intermittent reception parameter to the base station device 3-1.
- the base station apparatus 3-2 When the base station apparatus 3-2 acquires several types of candidates for the intermittent reception parameter from the base station apparatus 3-1, the base station apparatus 3-2 determines an optimum parameter from the several types of candidates. If some of the intermittent reception parameters are not notified from the base station device 3-1, the parameters not notified are determined by the own base station device.
- the base station device 3-2 when the base station device 3-2 receives the intermittent reception start offset A, the set of the intermittent reception cycle A and the intermittent reception start offset B, and the set of the intermittent reception cycle B from the base station device 3-1, the base station device 3-2 starts the intermittent reception.
- One of the set of offset A, intermittent reception cycle A or intermittent reception start offset B, and intermittent reception cycle B is selected.
- the base station apparatus 3-2 determines the parameters of the intermittent reception period timer C, the reception extension period timer C, and the retransmission period timer C at its own base station apparatus.
- the base station apparatus 3-2 includes either the selected intermittent reception start offset A, the intermittent reception period A set or the intermittent reception start offset B, the intermittent reception period B set, the intermittent reception period timer C, or the reception extension period timer.
- C, the retransmission period timer C is determined as an intermittent reception parameter, and the determined intermittent reception parameter is notified to the base station apparatus 3-1.
- the base station apparatus 3-1 includes the intermittent reception parameter candidate notified to the base station apparatus 3-2 by the base station apparatus 3-1 in the dual connect request message for setting the dual connect. 2 may be notified. Further, the base station device 3-2 may notify the discontinuous reception parameter selected by the base station device 3-2 in a dual connect request response message.
- the base station device 3-2 provides the base station device 3-1 with several types of intermittent reception parameter candidates for the mobile station device 1-1 to perform an intermittent reception operation on the base station device 3-2.
- the base station apparatus 3-1 may determine intermittent reception parameters for the mobile station apparatus 1-1 to perform an intermittent reception operation on the base station apparatus 3-2 from several types of intermittent reception parameter candidates. .
- the mobile station apparatus 1-1 selects several types of intermittent reception parameter candidates for the mobile station apparatus 1-1 to perform an intermittent reception operation on the base station apparatus 3-2. decide.
- the base station apparatus 3-2 includes several types of intermittent reception parameter candidates in the dual connect request response message, and notifies the base station apparatus 3-1 of them.
- the base station apparatus 3-1 selects an intermittent reception parameter for the mobile station apparatus 1-1 to perform an intermittent reception operation on the base station apparatus 3-2 from among several types of intermittent reception parameter candidates.
- the base station device 3-1 notifies the selected intermittent reception parameter to the base station device 3-2.
- the mobile station device 1-1 1 When the base station device 3-1 acquires from the base station device 3-2 intermittent reception parameters for the mobile station device 1-1 to perform an intermittent reception operation on the base station device 3-2, the mobile station device 1-1 1 notifies the mobile station apparatus 1-1 of intermittent reception parameters and target cell identification information for performing an intermittent reception operation on each base station apparatus.
- the base station device 3-1 identifies the cell 1 identification information and the intermittent reception parameters (intermittent reception start offset, intermittent reception) for the mobile station device 1-1 to perform an intermittent reception operation on the base station device 3-1.
- the mobile station apparatus 1-1 is notified of the reception parameter set.
- the cell identification information includes information on a plurality of cells. Further, the cell identification information may be transmission timing group information. Further, the cell identification information may be indicated by information on a group in which the base station apparatus newly sets the same intermittent reception operation.
- the mobile station apparatus 1-1 When the mobile station apparatus 1-1 acquires the cell identification information and the intermittent reception parameter received from the base station apparatus 3-1, the mobile station apparatus 1-1 sets the intermittent reception parameter for the corresponding cell and performs intermittent reception for each cell. Perform the action.
- the base station device 3-1 notifies the base station device 3-2 of the data information of the mobile station device 1-1 (such as data quality of service (QoS)), and the base station device 3-2 is notified.
- the mobile station apparatus 1-1 may determine the intermittent reception parameters for the intermittent reception operation to the base station apparatus 3-2.
- the base station apparatus 3-1 determines intermittent reception parameters for the mobile station apparatus 1-1 to perform an intermittent reception operation on the base station apparatus 3-2 in consideration of data information, and the base station apparatus You may make it notify to 3-2.
- the base station apparatus 3-2 performs data scheduling for the mobile station apparatus 1-1 in consideration of the intermittent reception parameter notified from the base station apparatus 3-1.
- the base station device 3-1 sends to the mobile station device 1-1 the short-term intermittent reception parameter set A (cell identification information (cell 1 identification information), short-term intermittent reception cycle A, Intermittent reception start offset A, intermittent reception period timer A, extended reception period timer A, retransmission period timer A, short period intermittent reception period period timer A) and long-term intermittent reception parameter set B (long-term intermittent reception period B, intermittent Notification of reception start offset B, intermittent reception period timer B, reception extension period timer B, and retransmission period timer B).
- the short-term intermittent reception parameter set A cell identification information (cell 1 identification information), short-term intermittent reception cycle A, Intermittent reception start offset A, intermittent reception period timer A, extended reception period timer A, retransmission period timer A, short period intermittent reception period period timer A
- long-term intermittent reception parameter set B long-term intermittent reception period B, intermittent Notification of reception start offset B, intermittent reception period timer B, reception extension period timer B, and retransmission period timer B.
- the base station apparatus 3-1 sends to the mobile station apparatus 1-1 a short-term intermittent reception parameter set C (cell identification information (cell 2 identification information), short-period intermittent reception cycle C, Intermittent reception start offset C, intermittent reception period timer C, extended reception period timer C, retransmission period timer C, short period intermittent reception period period timer C) and long-term intermittent reception parameter set D (long-term intermittent reception period D, intermittent A reception start offset D, an intermittent reception period timer D, a reception extension period timer D, and a retransmission period timer D) are notified.
- a short-term intermittent reception parameter set C cell identification information (cell 2 identification information), short-period intermittent reception cycle C, Intermittent reception start offset C, intermittent reception period timer C, extended reception period timer C, retransmission period timer C, short period intermittent reception period period timer C
- long-term intermittent reception parameter set D long-term intermittent reception period D, intermittent A reception start offset D, an intermittent reception period timer D, a reception extension period time
- the mobile station apparatus 1-1 performs a short-term intermittent reception operation and a long-term intermittent reception operation for each cell (or each base station apparatus) using intermittent reception parameters set separately.
- each base station apparatus determines the short-term intermittent reception cycle (Short DRX cycle) of the intermittent reception cycle, and the base station device 3-1 for the long-term intermittent reception cycle (Long DRX cycle). May be determined.
- the base station device 3-1 includes an intermittent reception parameter for the mobile station device 1-1 to perform intermittent reception operation for a short period of time on the base station device 3-1, and the mobile station device 1-1 And the intermittent reception parameter for performing the long-term intermittent reception operation for the base station apparatus 3-2 is determined.
- the base station apparatus 3-1 determines the intermittent reception parameter candidates for the mobile station apparatus 1-1 to perform the short-term intermittent reception operation with respect to the base station apparatus 3-2, and the base station apparatus 3-2 Short-term intermittent reception parameter candidates and long-term intermittent reception parameters are notified.
- the mobile station device 1-1 performs short-term intermittent reception operation on the base station device 3-2 from the short-term intermittent reception parameter candidates notified from the base station device 3-1. Select the intermittent reception parameter to perform.
- the mobile station device 1-1 performs an intermittent reception operation with the intermittent reception cycle set separately for each cell (or each base station device).
- the mobile station apparatus 1-1 performs the intermittent reception operation at the same intermittent reception cycle for all the cells.
- the base station device 3-1 has the short-term intermittent reception parameter set A (cell identification information (cell 1 identification information), short-period intermittent reception cycle A, intermittent reception start offset A, intermittent reception period timer in cell 1.
- A reception extended period timer A, retransmission period timer A, short period intermittent reception cycle period timer A
- short period intermittent reception parameter set B in cell 2 cell identification information (cell 2 identification information)
- Short period intermittent reception cycle B intermittent reception start offset B
- intermittent reception period timer B extended reception period timer B
- retransmission period timer B short period intermittent reception period period timer B
- long-term intermittent reception parameter set Long-term intermittent reception cycle C, intermittent reception start offset C, intermittent reception period timer C, reception extended period timer C, retransmission period timer C
- the mobile station apparatus 1-1 performs an intermittent reception operation on the cell 1 using the intermittent reception parameters of the short-term intermittent reception parameter set A from the time T1 and The intermittent reception operation is performed using the intermittent reception parameters of the short-term intermittent reception parameter set B from T1.
- the mobile station apparatus 1-1 performs the intermittent reception operation using the long-term intermittent reception parameter set after the short-period intermittent reception cycle period specified by each short-period intermittent reception parameter set.
- the mobile station device 1-1 When the short-term intermittent reception cycle period timer A expires for the cell 1 at time T2, the mobile station device 1-1 performs an intermittent reception operation using the long-term intermittent reception parameter set. Further, when the short-term intermittent reception cycle period timer B expires for the cell 2 at time T3, the mobile station apparatus 1-1 performs an intermittent reception operation using the long-term intermittent reception parameter set.
- the mobile station apparatus 1-1 starts the long-term intermittent reception operation for one of the cells, and the long-term intermittent reception for the other cell.
- the operation may be started.
- the base station apparatus 3-1 includes a long-term intermittent reception parameter set, a long-term intermittent reception cycle A, an intermittent reception start offset A, an intermittent reception period timer A, a reception extension period timer A, and a retransmission period timer A.
- the cell identification information (cell 1 identification information), the short period intermittent reception cycle B and the short period intermittent reception cycle period B as the short period intermittent reception parameter set in cell 1, and the short period in cell 2 Cell identification information (cell 2 identification information) and short-term intermittent reception cycle C are notified as an intermittent reception parameter set.
- the base station apparatus 3-1 notifies the long-term intermittent reception cycle A, the intermittent reception start offset A, the intermittent reception period timer A, the reception extension period timer A, and the retransmission period timer A, and the short-term in the cell 1 Cell identification information (cell 1 identification information), short-term intermittent reception cycle B, and short-term intermittent reception cycle period timer B are determined as the intermittent reception parameter set, and the base station apparatus 3-2 determines that the short-term intermittent reception cycle C To decide.
- the mobile station apparatus 1-1 receives, for cell 1, a short-term intermittent reception cycle B, a short-period intermittent reception cycle period timer B, an intermittent reception start offset A, an intermittent reception period timer A, a reception Using the extension period timer A and the retransmission period timer A, the intermittent reception operation is performed from time T4, and the short period intermittent reception period C, the short period intermittent reception period period timer B, and the intermittent reception start offset A are performed for the cell 2. Using the intermittent reception period timer A, the reception extension period timer A, and the retransmission period timer A, the intermittent reception operation is performed from time T4.
- the mobile station device 1-1 makes a long-term intermittent reception cycle A, an intermittent reception start offset A, an intermittent reception period timer A, Using the reception extension period timer A and the retransmission period timer A, the intermittent reception operation is performed from time T5.
- the mobile station apparatus 1-1 uses the intermittent reception start offset A, the intermittent reception period timer A, the reception extension period timer A, the retransmission period timer A, and the short period intermittent reception cycle period B as parameters of the common intermittent reception operation. use.
- the operation of the reception extension period timer and the retransmission period timer may be performed for each target cell.
- the mobile station apparatus 1-1 may operate so that the start position of the intermittent reception period is the same frame regardless of the system frame number (System frame number, SFN) of the cell 1 and the cell 2. good. That is, the mobile station apparatus 1-1 may apply the start position of the intermittent reception period of the cell 1 determined by the intermittent reception start offset A to the cell 2 as well.
- system frame number System frame number, SFN
- the mobile station apparatus 1-1 performs different operations for each base station apparatus during dual connection, the amount of information is reduced by sharing each parameter such as a timer among the base station apparatuses. be able to.
- the base station apparatus 3-1 notifies the mobile station apparatus 1-1 of only one set of timers (retransmission timer, period timer) for notifying the buffer status report (BSR), and the mobile station apparatus 1-1
- the timer notified to each base station apparatus is set, and transmission control of the buffer status report is performed for each base station apparatus unit.
- PHR power headroom report
- each base station device provides one cell, but the same applies to the case where each base station device provides a plurality of cells.
- the base station device 3-1 notifies the mobile station device 1-1 of the identification information of the plurality of cells and the intermittent reception parameter set.
- the mobile station apparatus 1-1 sets the intermittent reception parameter indicated by the cell identification information, and performs an intermittent reception operation for each base station apparatus.
- the base station device 3-1 may be a cell other than the macro cell, for example, a small cell.
- the base station apparatus 3-2 may be a cell other than the small cell, for example, a macro cell.
- a mobile station device is described as an example of a terminal device or a communication device, but the present invention is not limited to this, and is a stationary or non-movable electronic device installed indoors and outdoors.
- terminal devices or communication devices such as AV equipment, kitchen equipment, cleaning / washing equipment, air conditioning equipment, office equipment, vending machines, and other daily life equipment.
- the mobile station apparatus 1-1, the base station apparatus 3-1 and the base station apparatus 3-2 of the embodiment have been described using functional block diagrams.
- the function of each part of the station apparatus 3-1 and the base station apparatus 3-2 or a program for realizing a part of these functions is recorded on a computer-readable recording medium, and the program recorded on the recording medium is recorded.
- the mobile station apparatus and the base station apparatus may be controlled by being read and executed by a computer system.
- the “computer system” here includes an OS and hardware such as peripheral devices.
- the “computer-readable recording medium” means a storage device such as a flexible disk, a magneto-optical disk, a portable medium such as a ROM and a CD-ROM, and a hard disk incorporated in a computer system.
- the “computer-readable recording medium” means that a program is dynamically held for a short time, like a communication line when a program is transmitted via a network such as the Internet or a communication line such as a telephone line. In this case, it is intended to include those that hold a program for a certain period of time, such as a volatile memory inside a computer system serving as a server or a client in that case.
- the program may be a program for realizing a part of the functions described above, and may be a program capable of realizing the functions described above in combination with a program already recorded in a computer system. .
- each functional block used in each of the above embodiments may be realized as an LSI that is typically an integrated circuit.
- Each functional block may be individually formed into chips, or a part or all of them may be integrated into a chip.
- the method of circuit integration is not limited to LSI, and may be realized by a dedicated circuit or a general-purpose processor.
- an integrated circuit based on the technology can also be used.
- the present invention can be applied to mobile phones, personal computers, tablet computers, and the like.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Quality & Reliability (AREA)
- Mobile Radio Communication Systems (AREA)
Abstract
L'invention concerne un système de communication sans fil dans lequel un premier dispositif de station de base et un second dispositif de station de base communiquent avec un dispositif de terminal par l'intermédiaire d'une pluralité de cellules, dans lequel : le premier dispositif de station de base détermine un premier ensemble de paramètres de réception par intermittence utilisé par un dispositif de terminal pour exécuter une opération de réception par intermittence par rapport au premier dispositif de station de base, et le premier dispositif de station de base notifie au second dispositif de station de base des informations concernant l'opération de réception par intermittence utilisée par le dispositif de terminal pour exécuter une opération de réception par intermittence par rapport au second dispositif de station de base; et le second dispositif de station de base, sur la base des informations concernant l'opération de réception par intermittence, détermine un second ensemble de paramètres de réception par intermittence utilisé par le dispositif de terminal pour exécuter une opération de réception par intermittence par rapport au second dispositif de station de base, et le second dispositif de station de base notifie au premier dispositif de station de base le second ensemble de paramètres de réception par intermittence.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2013-208721 | 2013-10-04 | ||
| JP2013208721A JP2016213518A (ja) | 2013-10-04 | 2013-10-04 | 無線通信システム、基地局装置、端末装置、無線通信方法および集積回路 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2015050099A1 true WO2015050099A1 (fr) | 2015-04-09 |
Family
ID=52778688
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2014/075998 Ceased WO2015050099A1 (fr) | 2013-10-04 | 2014-09-30 | Système de communication sans fil, dispositif de station de base, dispositif de terminal, procédé de communication sans fil et circuit intégré |
Country Status (2)
| Country | Link |
|---|---|
| JP (1) | JP2016213518A (fr) |
| WO (1) | WO2015050099A1 (fr) |
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| WO2020003475A1 (fr) * | 2018-06-28 | 2020-01-02 | 株式会社Nttドコモ | Terminal d'utilisateur et procédé de communication sans fil |
| CN112136336A (zh) * | 2018-05-09 | 2020-12-25 | 株式会社Ntt都科摩 | 用户装置以及无线基站 |
| CN112470535A (zh) * | 2018-07-27 | 2021-03-09 | 三菱电机株式会社 | 通信系统、基站和通信终端 |
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| JPWO2024034075A1 (fr) * | 2022-08-10 | 2024-02-15 | ||
| WO2025203617A1 (fr) * | 2024-03-29 | 2025-10-02 | 株式会社Nttドコモ | Terminal |
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| US10721727B2 (en) | 2015-10-26 | 2020-07-21 | Qualcomm Incorporated | DRX for narrowband transmissions |
| JP2018535599A (ja) * | 2015-10-26 | 2018-11-29 | クゥアルコム・インコーポレイテッドQualcomm Incorporated | バンドルされた送信を用いたmtcのためのdrxおよびsps |
| US20190239195A1 (en) | 2015-10-26 | 2019-08-01 | Qualcomm Incorporated | Semi-persistent scheduling for transmissions |
| KR20180074686A (ko) * | 2015-10-26 | 2018-07-03 | 퀄컴 인코포레이티드 | 번들링된 송신들을 이용한 mtc에 대한 drx 및 sps |
| KR102085642B1 (ko) | 2015-10-26 | 2020-03-06 | 퀄컴 인코포레이티드 | 번들링된 송신들을 이용한 mtc에 대한 drx 및 sps |
| US10652879B2 (en) | 2015-10-26 | 2020-05-12 | Qualcomm Incorporated | Semi-persistent scheduling for transmissions |
| US10708903B2 (en) | 2015-10-26 | 2020-07-07 | Qualcomm Incorporated | DRX for narrowband transmissions |
| JP2020109993A (ja) * | 2015-10-26 | 2020-07-16 | クゥアルコム・インコーポレイテッドQualcomm Incorporated | バンドルされた送信を用いたmtcのためのdrxおよびsps |
| CN108476505A (zh) * | 2016-01-15 | 2018-08-31 | 株式会社Ntt都科摩 | 用户终端、无线基站以及无线通信方法 |
| CN108476505B (zh) * | 2016-01-15 | 2023-06-13 | 株式会社Ntt都科摩 | 终端、无线通信方法以及系统 |
| CN110383915B (zh) * | 2017-01-05 | 2023-05-09 | 日本电气株式会社 | 无线接入网节点、无线终端及其方法和非瞬时性计算机可读介质 |
| CN110383915A (zh) * | 2017-01-05 | 2019-10-25 | 日本电气株式会社 | 无线接入网节点、无线终端及其方法和非瞬时性计算机可读介质 |
| US12075428B2 (en) | 2017-01-05 | 2024-08-27 | Nec Corporation | Methods and apparatuses for configuring radio terminal with numerology of second RAT via first RAT |
| US12349161B2 (en) | 2017-01-05 | 2025-07-01 | Nec Corporation | Radio access network node, radio terminal, and methods and non-transitory computer-readable media therefor |
| CN112136336A (zh) * | 2018-05-09 | 2020-12-25 | 株式会社Ntt都科摩 | 用户装置以及无线基站 |
| CN112136336B (zh) * | 2018-05-09 | 2024-04-02 | 株式会社Ntt都科摩 | 用户装置以及无线基站 |
| JPWO2020003475A1 (ja) * | 2018-06-28 | 2021-07-08 | 株式会社Nttドコモ | 端末及び無線通信方法 |
| JP7230023B2 (ja) | 2018-06-28 | 2023-02-28 | 株式会社Nttドコモ | 端末及び無線通信方法 |
| WO2020003475A1 (fr) * | 2018-06-28 | 2020-01-02 | 株式会社Nttドコモ | Terminal d'utilisateur et procédé de communication sans fil |
| US12395995B2 (en) | 2018-06-28 | 2025-08-19 | Ntt Docomo, Inc. | User terminal and radio communication method |
| CN112470535A (zh) * | 2018-07-27 | 2021-03-09 | 三菱电机株式会社 | 通信系统、基站和通信终端 |
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