WO2019085740A1 - Procédé de compte-rendu d'état de tampon, terminal, et support de stockage lisible par ordinateur - Google Patents
Procédé de compte-rendu d'état de tampon, terminal, et support de stockage lisible par ordinateur Download PDFInfo
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- WO2019085740A1 WO2019085740A1 PCT/CN2018/110456 CN2018110456W WO2019085740A1 WO 2019085740 A1 WO2019085740 A1 WO 2019085740A1 CN 2018110456 W CN2018110456 W CN 2018110456W WO 2019085740 A1 WO2019085740 A1 WO 2019085740A1
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- uplink scheduling
- logical channel
- bsr
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- resource
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/10—Flow control between communication endpoints
- H04W28/14—Flow control between communication endpoints using intermediate storage
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/12—Wireless traffic scheduling
Definitions
- the present disclosure relates to the field of communications technologies, and in particular, to a buffer status reporting method, a terminal, and a computer readable storage medium.
- the 3GPP (3rd Generation Partnership Project) Long Term Evolution (LTE) system is a scheduling-based system.
- the base station allocates time-frequency resources required for data transmission to the terminal device, and the terminal performs downlink data reception according to the scheduling command of the base station.
- Uplink data is sent.
- the uplink data transmission is scheduled by the base station, and the base station scheduler notifies the terminal by using an uplink grant permission (UL grant) after determining the uplink resource allocation situation.
- the basis for the uplink resource allocation by the base station scheduler is the amount of uplink data to be sent by the terminal, that is, the buffer status of the terminal. Because the cache is on the terminal side, the base station needs to obtain the Buffer Status Reporting (BSR) to the base station in order to obtain the buffer status information.
- BSR Buffer Status Reporting
- the BSR mechanism in the LTE Rel-11 and the previous version includes: the granularity of the BSR reporting and the BSR-related radio resource control (RRC) layer parameter configuration.
- the BSR reporting of the LTE system is based on the logical channel group. (Logical Channel Group, LCG), a total of four LCGs are defined.
- LCG ID corresponding to the bearer/logical channel is configured when the bearer is established.
- BSRs are usually divided into: regular BSR (Regular BSR), periodic BSR (Periodic BSR), and piggyback BSR (Padding BSR).
- the scheduling of the LTE system is based on a fixed length transmission time interval (TTI).
- TTI transmission time interval
- the BSR reports the following rules: A maximum of one Regular BSR is transmitted to each Medium Access Control (MAC) entity terminal in one TTI. Or Periodic BSR.
- the BSR reported at the same time can be selected by any UL grant. Regardless of whether it is a Regular BSR or a Periodic BSR or a Padding BSR, the buffer status corresponding to the same logical channel group should be the same.
- the length of the TTI corresponding to each scheduling is flexible, and it is possible for the same terminal to receive multiple UL grants for different time periods of the same time period.
- the terminal receives three UL grants for the same time period, and each rectangular box in the figure represents the time domain location of the resources scheduled by the UL grant of different TTI lengths.
- the terminal has a regular BSR or a periodic BSR
- the end time of the scheduling resource corresponding to the different UL grants is different. Therefore, the value of the corresponding buffer state is different when different UL grants are used to carry the Regular BSR or the Periodic BSR.
- the value of the different buffer status information will affect the subsequent scheduling decision of the base station; however, the related art does not implement how to perform BSR reporting in this case.
- the embodiment of the present disclosure provides a buffer status reporting method, a terminal, and a computer readable storage medium, so as to solve the problem in the NR system, when the terminal receives multiple UL grants for the same time period with different TTI lengths, the terminal cannot determine how to determine how to BSR does not guarantee the reliability of network communication.
- an embodiment of the present disclosure provides a buffer status reporting method, including:
- the terminal receives the uplink scheduling permission for the same preset time period that is sent by the base station, the first uplink scheduling permission for performing buffer status reporting is determined in the multiple uplink scheduling grants;
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the determining, by the plurality of uplink scheduling grants, the first uplink scheduling permission for performing buffer status reporting includes:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the sending the buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling including:
- the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group is sent to the base station by using the resource scheduled by the first uplink scheduling grant.
- the determining, by the buffer state, the buffer state corresponding to the logical channel or the logical channel group carried in the buffer status report information including:
- the buffer status reporting method further includes:
- the piggybacked BSR is sent to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the step of transmitting the piggybacking BSR to the base station by using the resource of the second uplink scheduling grant scheduling includes:
- the piggybacking BSR including the buffer state corresponding to the logical channel or the logical channel group is sent to the base station by using the resource scheduled by the second uplink scheduling grant.
- the determining, by the value of the buffer state corresponding to the logical channel or the logical channel group carried in the piggybacking BSR includes:
- the buffer state value corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource end time corresponding to the second uplink scheduling grant.
- Embodiments of the present disclosure also provide a terminal, including a transceiver, a memory, a processor, and a program stored on the memory and executable on the processor; wherein the processor is configured to read a program in the memory , perform the following process:
- the terminal receives the uplink scheduling permission for the same preset time period that is sent by the base station, the first uplink scheduling permission for performing buffer status reporting is determined in the multiple uplink scheduling grants;
- the transceiver is configured to send buffer status report information to the base station on the first uplink scheduling grant scheduling resource;
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the processor is configured to read a program in the memory and perform the following process:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the processor is configured to read a program in the memory and perform the following process:
- the transceiver is configured to send, by using the first uplink scheduling grant scheduling resource, a buffer status report information that includes a value of a buffer state corresponding to the logical channel or a logical channel group to a base station.
- the processor is configured to read a program in the memory and perform the following process:
- the transceiver is used to:
- the piggybacked BSR is sent to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the processor is configured to read a program in the memory and perform the following process:
- the transceiver is configured to send, by the piggyback BSR that takes the buffer state corresponding to the logical channel or the logical channel group, the resource scheduled by the second uplink scheduling grant to the base station.
- the processor is configured to read a program in the memory and perform the following process:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
- the embodiment of the present disclosure further provides a computer readable storage medium having stored thereon a computer program, wherein the computer program is executed by a processor to implement the step of the buffer status reporting method.
- the embodiment of the present disclosure further provides a terminal, including:
- a determining module configured to determine, according to the multiple uplink scheduling grants for the same preset time period that are sent by the base station, the first uplink scheduling permission for performing buffer status reporting in the multiple uplink scheduling grants ;
- a first sending module configured to send buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the determining module is configured to:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the first sending module includes:
- a first determining unit configured to determine a value of a buffer state corresponding to a logical channel or a logical channel group that needs to be carried in the buffer status report information
- the first sending unit is configured to send the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group to the base station by using the resource scheduled by the first uplink scheduling permission.
- the first determining unit is configured to:
- the terminal further includes:
- a second sending module configured to: if the piggybacking BSR exists, send the piggybacking BSR to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the second sending module includes:
- a second determining unit configured to determine a buffer state value corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR;
- a second sending unit configured to send, by the piggyback BSR that takes the buffer state corresponding to the logical channel or the logical channel group, the resource scheduled by the second uplink scheduling grant to the base station.
- the second determining unit is configured to:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
- the first uplink scheduling grant for performing buffer status reporting is first determined in the multiple uplink scheduling grants. And then sending the buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling; thereby solving the problem of how to use multiple uplink scheduling grant transmission buffer status reporting information with different lengths to improve the network communication process. It avoids affecting the subsequent scheduling decisions of the base station and ensures the reliability of network communication.
- FIG. 1 is a schematic diagram showing the location of time domain resources of different UL grant scheduling
- FIG. 2 is a schematic flowchart diagram of a buffer status reporting method according to an embodiment of the present disclosure
- FIG. 3 is a block diagram showing a terminal of an embodiment of the present disclosure.
- FIG. 4 shows a structural diagram of a terminal of an embodiment of the present disclosure.
- the terminal when the terminal receives multiple UL grants for different time periods with different TTI lengths, the terminal cannot determine how to perform BSR, and cannot guarantee the reliability of network communication, and provides a buffer status reporting method. , terminal and computer readable storage medium.
- a buffer status reporting method is applied to a terminal, including:
- Step 21 If the terminal receives the uplink scheduling permission for the same preset time period that is sent by the base station, the terminal determines the first uplink scheduling permission for performing the buffer status reporting in the multiple uplink scheduling grants.
- the terminal is configured to receive, by the terminal, multiple uplink grants (UL grants) for different preset lengths sent by the base station, for example, when the situation occurs, the terminal first It is to determine which of the uplink scheduling grants (the plurality of uplink scheduling grants referred to herein refer to at least two uplink scheduling grants), which uplink scheduling grants (ie, the first uplink scheduling grants mentioned above) are scheduled.
- the resource performs buffer status reporting, where an uplink scheduling grant may be determined by multiple uplink scheduling grants, that is, the first uplink scheduling grant includes only one uplink scheduling grant; and at least two uplink scheduling may be determined among multiple uplink scheduling grants.
- the license that is, the first uplink scheduling license includes at least two uplink scheduling grants.
- the difference in length mentioned above means that the length of the TTI of the uplink scheduling grant is different.
- Step 22 Send buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling.
- the buffer status report information sent by the first uplink scheduling permission includes: reporting a BSR or a periodic BSR in a normal buffer state.
- the priority of the regular BSR is the same as the priority of the periodic BSR when performing BSR prioritization. If multiple BSRs are triggered at the same time, only the highest priority is reported.
- the regular BSR and the periodic BSR the content of all the available data in the buffer is the same, and the reporting format is the same. You can choose one of them to report.
- the terminal when the terminal receives the uplink scheduling grants for the same preset time period that are sent by the base station, the terminal first determines the first uplink for reporting the buffer status in the multiple uplink scheduling grants. Scheduling the license, and then sending the buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling; thereby solving the problem of how to use multiple uplink scheduling grant transmission buffer status reporting information with different lengths to improve network communication The process avoids affecting the subsequent scheduling decisions of the base station and ensures the reliability of the network communication.
- step 11 may be implemented by using any one of the following implementation manners, that is, the determining principle of the first uplink scheduling grant:
- the latest uplink scheduling permission of the scheduling resource ending time in the multiple uplink scheduling grants is determined as the first uplink scheduling permission
- the implementation may be such that the buffer status (BS) information reported by the regular BSR or the periodic BSR can reflect the status of the BS of the terminal after all the uplink scheduling grants are completed, so that the subsequent scheduling is more accurate. To avoid waste of base station scheduling resources.
- BS buffer status
- the uplink scheduling grant with the earliest scheduling resource ending time in the plurality of uplink scheduling grants is determined as the first uplink scheduling grant
- the implementation manner can enable the network side to know the buffer status information of the terminal as soon as possible. If the service with high requirement and large amount of data is delayed, the subsequent scheduling can be performed as soon as possible.
- the reliability of the BSR report can be improved by selecting multiple uplink scheduling grants for reporting the regular BSR or the periodic BSR.
- the first uplink scheduling grant may be determined by flexibly selecting an implementation manner that satisfies the usage requirement according to the actual use requirements of the network.
- step 22 is as follows:
- the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group is sent to the base station by using the resource scheduled by the first uplink scheduling grant.
- the manner of determining the buffer state corresponding to the logical channel or the logical channel group carried in the buffer status report information is:
- the piggybacking BSR may be sent to the base station.
- the implementation manner is:
- the piggybacked BSR is sent to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- a MAC protocol data unit includes at most one BSR
- the piggyback BSR cannot be transmitted in a MAC PDU with a regular BSR (or a periodic BSR).
- the piggybacking BSR is transmitted in resources that do not transmit the regular scheduling grant scheduling of the regular BSR or the periodic BSR.
- the piggybacking BSR is also performed according to the logical channel or the logical channel group. Therefore, the reporting information needs to carry the logical channel to be reported or the buffer state corresponding to the logical channel group to be reported. Specifically, the second uplink scheduling is used.
- the specific implementation manner in which the licensed scheduling resource sends the piggybacking BSR to the base station is:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
- the selection principle of the first uplink scheduling permission for reporting the buffer status is as follows: selecting the earliest uplink scheduling permission at the end of the scheduling resource in the plurality of uplink scheduling grants as the first uplink scheduling permission, thereby performing regular BSR or periodicity
- the report of the BSR The purpose of this is to let the network side know the buffer status information of the terminal as soon as possible. If the service with high demand and large amount of data is delayed, the subsequent scheduling can be performed as soon as possible. Based on this principle, the terminal should select UL grant 2 for regular BSR or periodic BSR reporting.
- the BS information calculation principle of the logical channel or the logical channel group that needs to be carried in the regular BSR or the periodic BSR is: determining the logical channel to be carried in the regular BSR or the periodic BSR according to the end time of the resource scheduled by the UL grant 2 Or the buffer status corresponding to the logical channel group takes a value.
- the Padding BSR can be carried in a MAC PDU without a regular BSR or a periodic BSR, as shown in Figure 1, that is, in the MAC PDU corresponding to the resources scheduled by UL grant 1 and UL grant 3.
- Carry the Padding BSR (provided that there are redundant padding in the resources scheduled by UL grant 1 and UL grant 3).
- the value of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR may be the same as the value of the buffer state corresponding to the logical channel or logical channel group carried in the regular BSR or the periodic BSR. different.
- the calculation principle of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR is to determine the logical channel or logic to be carried in the piggybacking BSR according to the end time of the resource scheduled by the UL grant in which the Padding BSR is located.
- the corresponding buffer status values are different.
- the selection principle of the first uplink scheduling permission for reporting the buffer status is as follows: selecting the latest uplink scheduling permission at the end of the scheduling resource in the multiple uplink scheduling grants as the first uplink scheduling grant, thereby performing the regular BSR or period Report of sexual BSR.
- the purpose of this is to enable the BS information reported by the regular BSR or the periodic BSR to reflect the situation of the terminal BS after the current UL grant is completed, so that the subsequent scheduling is more accurate and the waste of the base station scheduling resources is avoided. Therefore, the terminal should select the UL grant 1 (because the end times of the scheduling resources of the UL grant 1 and the UL grant 3 are the same, and one of them can be randomly selected) to perform regular BSR or periodic BSR reporting.
- the BS information calculation principle of the logical channel or the logical channel group that needs to be carried in the regular BSR or the periodic BSR is: determining the logical channel to be carried in the regular BSR or the periodic BSR according to the end time of the resource scheduled by the UL grant 1. Or the buffer status corresponding to the logical channel group takes a value.
- the Padding BSR can be carried in a MAC PDU without a regular BSR or a periodic BSR. As shown in FIG. 1 , the Padding BSR is carried in the MAC PDU corresponding to the resources scheduled by the UL grant 2 and the UL grant 3. The premise is that there are redundant padding in the resources scheduled by UL grant 2 and UL grant 3.
- the value of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR may be the same as the value of the buffer state corresponding to the logical channel or logical channel group carried in the regular BSR or the periodic BSR. different.
- the calculation principle of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR is to determine the logical channel or logic to be carried in the piggybacking BSR according to the end time of the resource scheduled by the UL grant in which the Padding BSR is located.
- the corresponding buffer status values are different.
- the selection principle of the first uplink scheduling grant for reporting the buffer status is as follows: selecting at least two uplink scheduling grants as the first uplink scheduling grant among the multiple uplink scheduling grants, thereby reporting the regular BSR or the periodic BSR. .
- the purpose of this is to improve the reliability of BSR reporting. For example, based on the principle, the terminal should select the UL grant 1 and the UL grant 3 for regular BSR or periodic BSR reporting.
- the BS information calculation principle of the logical channel or logical channel group that needs to be carried in the regular BSR or the periodic BSR is: determining the need to utilize the resource transmission scheduled in the UL grant 1 according to the end time of the resource scheduled by the UL grant 1 in the conventional
- the buffer state corresponding to the logical channel or the logical channel group carried in the BSR or the periodic BSR takes the value; the end time of the resource scheduled according to the UL grant 3 determines the need to use the resource transmission scheduled in the UL grant 3 in the regular BSR or periodicity.
- the buffer state corresponding to the logical channel or logical channel group carried in the BSR takes the value.
- the Padding BSR can be carried in a MAC PDU without a regular BSR or a periodic BSR. As shown in Figure 1, the Padding BSR is carried in the MAC PDU corresponding to the resource scheduled by the UL grant 2. 2 There are extra padding in the scheduled resources).
- the value of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR may be the same as the value of the buffer state corresponding to the logical channel or logical channel group carried in the regular BSR or the periodic BSR. different.
- the calculation principle of the buffer state corresponding to the logical channel or the logical channel group carried in the Padding BSR is to determine the logical channel or logic to be carried in the piggybacking BSR according to the end time of the resource scheduled by the UL grant in which the Padding BSR is located.
- the corresponding buffer status values are different.
- the embodiment of the present disclosure can ensure that the terminal performs BSR reporting according to the requirements of the network, ensures the reliability of the base station to obtain the BS information, facilitates the subsequent scheduling of the base station, and ensures the reliability of the network communication.
- an embodiment of the present disclosure further provides a terminal 30, including:
- the determining module 31 is configured to: if the terminal receives the uplink scheduling grants for the same preset time period that are sent by the base station, determine the first uplink scheduling for performing buffer status reporting in the multiple uplink scheduling grants. license;
- the first sending module 32 is configured to send buffer status report information to the base station on the first uplink scheduling grant scheduling resource;
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the determining module 31 is configured to:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the first sending module 32 includes:
- a first determining unit configured to determine a value of a buffer state corresponding to a logical channel or a logical channel group that needs to be carried in the buffer status report information
- the first sending unit is configured to send the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group to the base station by using the resource scheduled by the first uplink scheduling permission.
- the first determining unit is configured to:
- the terminal further includes:
- a second sending module configured to: if the piggybacking BSR exists, send the piggybacking BSR to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the second sending module includes:
- a second determining unit configured to determine a buffer state value corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR;
- a second sending unit configured to send the piggyback BSR that includes the buffer state corresponding to the logical channel or the logical channel group to the base station by using the resource scheduled by the second uplink scheduling grant.
- the second determining unit is configured to:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
- the terminal embodiment is a terminal corresponding to the foregoing method embodiment. All the implementation manners in the foregoing method embodiments are applicable to the embodiment of the terminal, and the same technical effects can be achieved.
- an embodiment of the present disclosure further provides a terminal 40, including a processor 41, a transceiver 42, a memory 43, and a program stored on the memory 43 and executable on the processor 41;
- the transceiver 42 is coupled to the processor 41 and the memory 43 via a bus interface, wherein the processor 41 is configured to read a program in the memory and perform the following process:
- the terminal receives the uplink scheduling permission for the same preset time period that is sent by the base station, the first uplink scheduling permission for performing buffer status reporting is determined in the multiple uplink scheduling grants;
- the transceiver 42 is configured to send buffer status report information to the base station on the first uplink scheduling grant scheduling resource;
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the bus architecture may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 41 and various circuits of memory represented by memory 43.
- the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
- the bus interface provides an interface.
- Transceiver 42 may be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
- the user interface 44 may also be an interface capable of externally connecting the required devices, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
- the processor 41 is responsible for managing the bus architecture and the usual processing, and the memory 43 can store data used by the processor 41 when performing operations.
- the processor 41 is configured to read a program in the memory 43 and perform the following process:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the processor 41 is configured to read a program in the memory 43 and perform the following process:
- the transceiver 42 is configured to send, by using the first uplink scheduling grant scheduling resource, the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group to the base station.
- the processor 41 is configured to read a program in the memory 43 and perform the following process:
- transceiver 42 is further configured to:
- the piggybacked BSR is sent to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the processor 41 is configured to read a program in the memory 43 and perform the following process:
- the transceiver 42 is configured to send, by the piggyback BSR that takes the buffer state corresponding to the logical channel or the logical channel group, the resource scheduled by the second uplink scheduling grant to the base station.
- the processor 41 is configured to read a program in the memory 43 and perform the following process:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
- the terminal in the embodiment of the present disclosure When receiving the uplink scheduling grants for the same preset time period that are different in length, the terminal in the embodiment of the present disclosure first determines the first uplink used for buffer status reporting in the multiple uplink scheduling grants. Scheduling the license, and then sending the buffer status report information to the base station on the resource of the first uplink scheduling grant scheduling; thereby solving the problem of how to use multiple uplink scheduling grant transmission buffer status reporting information with different lengths to improve network communication The process avoids affecting the subsequent scheduling decisions of the base station and ensures the reliability of the network communication.
- An embodiment of the present disclosure further provides a computer readable storage medium having stored thereon a computer program, wherein the computer program is executed by a processor to implement the following steps:
- the terminal receives the uplink scheduling permission for the same preset time period that is sent by the base station, the first uplink scheduling permission for performing buffer status reporting is determined in the multiple uplink scheduling grants;
- the buffer status report information includes: reporting a BSR or a periodic BSR in a normal buffer status.
- the computer program is executed by the processor to implement the following steps:
- At least two uplink scheduling grants are determined as the first uplink scheduling grant among the plurality of uplink scheduling grants.
- the computer program is executed by the processor to implement the following steps:
- the buffer status report information that includes the buffer state corresponding to the logical channel or the logical channel group is sent to the base station by using the resource scheduled by the first uplink scheduling grant.
- the computer program is executed by the processor to implement the following steps:
- the computer program is executed by the processor to implement the following steps:
- the piggybacked BSR is sent to the base station by using the resource scheduled by the second uplink scheduling grant;
- the second uplink scheduling grant is an uplink scheduling grant of the plurality of uplink scheduling grants except the first uplink scheduling grant.
- the computer program is executed by the processor to implement the following steps:
- the piggybacking BSR including the buffer state corresponding to the logical channel or the logical channel group is sent to the base station by using the resource scheduled by the second uplink scheduling grant.
- the computer program is executed by the processor to implement the following steps:
- the value of the buffer state corresponding to the logical channel or the logical channel group that needs to be carried in the piggybacking BSR is determined according to the scheduling resource ending time corresponding to the second uplink scheduling grant.
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Abstract
La présente invention appartient au domaine technique des communications, et concerne un procédé de compte-rendu d'état de tampon, un terminal, et un support de stockage lisible par ordinateur. Le procédé de compte-rendu d'état de tampon comprend les étapes suivantes : si un terminal reçoit une pluralité d'autorisations de planification de liaison montante de différentes longueurs, pour une même période de temps prédéfinie, et envoyées à partir d'une station de base, déterminer une première autorisation de planification de liaison montante pour un compte-rendu d'état de tampon parmi la pluralité d'autorisations de planification de liaison montante; et transmettre, à la station de base, des informations de compte-rendu d'état de tampon sur une ressource programmée par la première autorisation de planification de liaison montante, les informations de compte-rendu d'état de tampon comprenant un compte-rendu d'état de tampon (BSR) régulier ou un BSR périodique.
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| Application Number | Priority Date | Filing Date | Title |
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| CN201711072947.3 | 2017-11-03 | ||
| CN201711072947.3A CN109756987B (zh) | 2017-11-03 | 2017-11-03 | 一种缓冲区状态上报方法、终端及计算机可读存储介质 |
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| WO2019085740A1 true WO2019085740A1 (fr) | 2019-05-09 |
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| PCT/CN2018/110456 Ceased WO2019085740A1 (fr) | 2017-11-03 | 2018-10-16 | Procédé de compte-rendu d'état de tampon, terminal, et support de stockage lisible par ordinateur |
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| CN101932019A (zh) * | 2009-06-19 | 2010-12-29 | 中兴通讯股份有限公司 | 一种实现上报缓冲区状态报告的方法、终端及网络系统 |
| CN102149206A (zh) * | 2010-02-09 | 2011-08-10 | 中兴通讯股份有限公司 | 上行调度方法 |
| JP2015213282A (ja) * | 2014-05-07 | 2015-11-26 | 株式会社Nttドコモ | ユーザ端末、無線基地局、無線通信方法及び無線通信システム |
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| CN102984659B (zh) * | 2011-09-02 | 2016-03-16 | 普天信息技术有限公司 | 一种td-lte系统中的缓存状态报告的上报方法 |
| WO2014098701A1 (fr) * | 2012-12-21 | 2014-06-26 | Telefonaktiebolaget L M Ericsson (Publ) | Annulation de messages d'ordonnancement multi-tti |
| CN104349461B (zh) * | 2013-07-26 | 2019-02-22 | 电信科学技术研究院 | 一种上行资源分配方法及其设备 |
| US9942881B2 (en) * | 2014-03-14 | 2018-04-10 | Telefonaktiebolaget Lm Ericsson (Publ) | Uplink multi-TTI scheduling in TDD system |
| EP3226639B1 (fr) * | 2016-04-01 | 2018-09-19 | ASUSTek Computer Inc. | Procédé et appareil permettant d'améliorer une transmission à l'aide d'une ressource configurée dans un système de communication sans fil |
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| CN102149206A (zh) * | 2010-02-09 | 2011-08-10 | 中兴通讯股份有限公司 | 上行调度方法 |
| JP2015213282A (ja) * | 2014-05-07 | 2015-11-26 | 株式会社Nttドコモ | ユーザ端末、無線基地局、無線通信方法及び無線通信システム |
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| Publication number | Publication date |
|---|---|
| CN109756987B (zh) | 2021-02-23 |
| CN109756987A (zh) | 2019-05-14 |
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