WO2019051770A1 - 一种调度请求的配置方法、终端设备及计算机存储介质 - Google Patents

一种调度请求的配置方法、终端设备及计算机存储介质 Download PDF

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Publication number
WO2019051770A1
WO2019051770A1 PCT/CN2017/101881 CN2017101881W WO2019051770A1 WO 2019051770 A1 WO2019051770 A1 WO 2019051770A1 CN 2017101881 W CN2017101881 W CN 2017101881W WO 2019051770 A1 WO2019051770 A1 WO 2019051770A1
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WIPO (PCT)
Prior art keywords
scheduling request
configuration
scheduling
logical channel
transmission
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PCT/CN2017/101881
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English (en)
French (fr)
Inventor
唐海
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Oppo广东移动通信有限公司
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Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to JP2020515245A priority Critical patent/JP6980906B2/ja
Priority to AU2017431415A priority patent/AU2017431415A1/en
Priority to PCT/CN2017/101881 priority patent/WO2019051770A1/zh
Priority to EP17925336.4A priority patent/EP3684133B1/en
Priority to US16/646,838 priority patent/US11350438B2/en
Priority to CN201780091842.4A priority patent/CN110720253B/zh
Priority to KR1020207009986A priority patent/KR102450189B1/ko
Priority to TW107132551A priority patent/TWI769310B/zh
Publication of WO2019051770A1 publication Critical patent/WO2019051770A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1263Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W74/00Wireless channel access
    • H04W74/08Non-scheduled access, e.g. ALOHA
    • H04W74/0833Random access procedures, e.g. with 4-step access

Definitions

  • the present invention relates to the field of information processing technologies, and in particular, to a method for configuring a scheduling request, a terminal device, and a computer storage medium.
  • the LTE scheduling request is a 1-bit message transmitted by the terminal on the PUCCH for requesting the uplink grant resource.
  • the triggering condition is that the terminal triggers a regular BSR report; the terminal has a PUCCH (Physical Uplink Control CHannel) resource available in the current transmission time slot, and the sr-ProhibitTimer (SR prohibition transmission timer) is not running; Note that in LTE, one MAC (Media Access Control) has only one sr-ProhibitTimer.
  • a MAC entity corresponding to one terminal may be configured with one or more SR configurations.
  • the secondary cell SCell may have a corresponding SR configuration.
  • a problem to be solved is that the network configures different SR configuration mappings for the logical channels of the terminal, and different SR configurations belong to different aggregated carriers. If one logical channel is mapped to the SR configuration of multiple different carriers, How to choose PUCCH transmission and how to operate the corresponding timer is a problem that needs to be solved.
  • an embodiment of the present invention provides a configuration method of a scheduling request, a terminal device, and a computer storage medium.
  • the configuration method of the scheduling request provided by the embodiment of the present invention is applied to the terminal device, and includes:
  • the scheduling request prohibition transmission timer is configured to prohibit a transmission scheduling request on a configuration parameter of all scheduling requests mapped by the logical channel within a valid duration
  • scheduling request counter is configured to increase a counting value when the scheduling request is transmitted in a configuration parameter of the at least one scheduling request mapped by the logical channel.
  • the embodiment of the invention provides a terminal device, including:
  • a timer configuration unit configured to configure a scheduling request prohibition transmission timer, where the scheduling request prohibition transmission timer is configured to prohibit a transmission scheduling request on a configuration parameter of all scheduling requests mapped by the logical channel within a valid duration;
  • a counter configuration unit configured to configure a scheduling request counter, wherein the scheduling request counter is configured to increase a count value when the scheduling request is transmitted in a configuration parameter of the at least one scheduling request mapped by the logical channel.
  • An embodiment of the present invention provides a terminal device, including: a processor and a memory for storing a computer program capable of running on a processor,
  • processor is configured to perform the steps of the foregoing method when the computer program is run.
  • the computer storage medium provided by the embodiment of the present invention stores computer executable instructions, and when the computer executable instructions are executed, the steps of the foregoing method are performed.
  • the scheduling request prohibition transmission timer can be configured, and the resource can prohibit the transmission scheduling request corresponding to the configuration parameter of all scheduling requests of the logical channel, and configure the scheduling request counter to record the logical channel. All of the times the resource transfer scheduling request corresponding to the requested configuration parameter is retrieved. In this way, it is possible to provide control of the interval for transmitting the scheduling request and control of the number of times in the multi-carrier scenario, thereby ensuring that when the scheduling request is transmitted, it is not necessary to use more processing resources for transmission and the like, thereby The processing efficiency of the system is guaranteed.
  • FIG. 1 is a schematic flowchart 1 of a method for configuring a scheduling request according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a scenario according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram 1 of a terminal device according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram 2 of a terminal device according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a hardware architecture according to an embodiment of the present invention.
  • the embodiment of the present application provides a configuration method for scheduling a request, which is applied to a terminal device, as shown in FIG. 1 , and includes:
  • Step 101 Configure a scheduling request prohibition transmission timer, where the scheduling request prohibition transmission timer is used to prohibit a transmission scheduling request on a configuration parameter of all scheduling requests mapped by the logical channel within the effective duration;
  • Step 102 Configure a scheduling request counter, where the scheduling request counter is configured to increase a counting value when the scheduling request is transmitted in a configuration parameter of at least one scheduling request mapped by the logical channel.
  • the terminal device may be a terminal device that can be applied to a multi-carrier (CA) scenario.
  • CA multi-carrier
  • steps 101 and 102 may be performed at the same time in a sequence, or may be performed by performing step 101 and then performing step 102.
  • the allocation of each scheduling request A scheduling request prohibiting transmission timer can be maintained in the parameter setting; which scheduling request is prohibited to be transmitted, and the SR corresponding to the configuration parameter of the scheduling request currently selected may be determined by, for example, When the resource in the configuration parameter of one of the scheduling requests is selected for SR transmission, the scheduling request prohibiting transmission timer in the configuration parameter of the scheduling request is started; further, by prohibiting the transmission timer from being enabled by the scheduling request, the All resource transmission SRs corresponding to configuration parameters of all scheduling requests corresponding to the logical channel.
  • embodiment of the present application may also perform the following processing:
  • the configuration parameters have the same physical uplink control channel resource period and different physical uplink control channel frequency domain resources.
  • SR configuration configuration parameters of two scheduling requests, which are respectively recorded as SR-CONFIG-1 and SR-CONFIG-2, then specific:
  • Logic path group (LCG, Logical Channel Group) is configured by RRC; RRC configures SR configuration mapping relationship for logical channel LCH a, LCH a is mapped to SR-CONFIG-1 and SR-CONFIG-2, SR-CONFIG -1 and SR-CONFIG-2 belong to the SR configuration on Carrier1 and Carrier2, respectively.
  • the SR-CONFIG-1 and the SR-CONFIG-2 may have the same PUCCH resource period and different PUCCH frequency domain resources.
  • the SR-CONFIG-1 configuration includes a dsr-TransMax to identify the maximum number of transmissions of the SR corresponding to the SR configuration.
  • a sr-ProhibiTimer corresponding to a sr-ProhibiTimer, after the SR transmission corresponding to the SR configuration is identified, the prohibition time of the SR is retransmitted (that is, the SR needs to be disabled when the sr-ProhibitTimer is running).
  • the same configuration for SR-CONFIGU-2 is the same configuration for SR-CONFIGU-2.
  • the scheduling request transmission resource is selected based on the configuration parameter of the at least one scheduling request, and the selected resource is selected.
  • the scheduling request prohibiting transmission timer corresponding to the configuration parameter of the scheduling request in which the scheduling request transmission resource is located is started, and the counting value of the scheduling request counter is increased.
  • the scheduling request transmission resource may be a Physical Uplink Control Channel (PUCCH) resource configured for the configuration parameter of the scheduling request; wherein the resource may include the concepts of the time domain and the frequency domain.
  • PUCCH Physical Uplink Control Channel
  • the foregoing logical channel may be a logical channel in a certain logical channel group (LCG); and before performing the foregoing processing, may further include determining whether the selected logical channel is mapped to a scheduling request on two or more carriers Configuration parameter (SR configuration).
  • LCG logical channel group
  • SR configuration carriers Configuration parameter
  • the logical channel belonging to a certain LCG triggers SR reporting, and if the logical channel is mapped to the SR configuration on multiple carriers, the latest PUCCH resource transmission SR is selected; wherein the selecting the most recent PUCCH resource transmission SR can be referred to
  • an LCHa corresponds to a PUCCH resource on a carrier 1, a carrier 2, and in particular, a time domain resource, which is PUCCH1 and PUCCH2, respectively
  • a PUCCH resource can be understood as a series of periods having the same period in the time domain.
  • the time domain resource the current time is time 1. From the carrier 1 and the carrier 2, the resource closest to the time domain 1 in time domain is selected as the selected resource to transmit the SR.
  • the scheduling request prohibition transmission timer sr-ProhibitTimer corresponding to the SR configuration is started.
  • the sr-ProhibitTimer is valid for all SR transmissions of the SR configuration of the logical channel mapping, that is, any SR configuration mapped to the logical channel of the SR channel is in the SR transmission
  • the sr-ProhibitTimer is disabled for the duration of the effective period.
  • the configuration scheduling request counter may be: the MAC maintains a scheduling request counter (SR-COUNTER) for all SR configurations mapped to the logical channel, and the SR-COUNTER is added once if the SR transmission belongs to any one of the SR configurations.
  • SR-COUNTER scheduling request counter
  • the method for determining the maximum number of transmissions may include: determining, from the configuration parameters of the at least one scheduling request corresponding to the logical channel, a maximum number of scheduling request transmissions configured in a configuration parameter of each scheduling request; One of the maximum number of scheduled scheduling request transmissions is selected as the maximum number of transmissions.
  • any one of the maximum number of transmissions among the configuration parameters of the scheduling request corresponding to the plurality of carriers is used as the maximum number of transmissions corresponding to the logical channel.
  • a minimum value may be selected from the configured maximum number of scheduling request transmissions, and the selected minimum value is used as the maximum number of transmissions. Then, in this case, the SR-COUNTER is added to satisfy the drs-TransMax configured in any one of the SR configurations, and the terminal simultaneously releases all PUCCH resources corresponding to the SR configuration of the logical channel, and initiates a random access procedure.
  • the configuration parameter of the at least one scheduling request selects a resource, and transmits a scheduling request on the selected resource, and may also have multiple determining conditions, specifically:
  • the effective scheduling request is selected to transmit the physical resource, and the scheduling request is transmitted on the selected effective scheduling request transmission physical resource.
  • the SR should first be in a pending state, that is, it will not be transmitted on the PUCCH immediately.
  • the logical channel that triggers the SR is determined by the MAC, and according to the configured mapping relationship, it is determined which SR configuration or SR configuration the SR should use for transmission.
  • the method for determining the logical channel that triggers the SR is consistent with the existing LTE, that is, the logical channel is found according to the trigger of the Regular BSR.
  • a scheduling request prohibition transmission timer can be configured in each SR Configuration of at least one SR Configuration corresponding to the same logical channel, but only for the logical channel, at the same time, only The sr-ProhibitTimer corresponding to an SR Configuration can be processed within the effective time. In other words, at most one logical channel can have only one open sr-ProhibitTimer at the same time.
  • the sr-ProhibitTimer is started.
  • the scheduling request prohibition transmission timer can be configured, and the resource can prohibit the transmission scheduling request corresponding to the configuration parameter of all scheduling requests of the logical channel, and configure the scheduling request counter to record the logical channel. The number of times the resource transmission scheduling request corresponding to the requested configuration parameter is retrieved. In this way, it is possible to provide control of the interval for transmitting the scheduling request and control of the number of times in the multi-carrier scenario, thereby ensuring that when the scheduling request is transmitted, it is not necessary to use more processing resources for transmission and the like, thereby The processing efficiency of the system is guaranteed.
  • the embodiment of the present application provides a terminal device, as shown in FIG. 3, including:
  • the timer configuration unit 31 is configured to configure a scheduling request prohibition transmission timer, where the scheduling request prohibition transmission timer is configured to prohibit a transmission scheduling request on a configuration parameter of all scheduling requests mapped by the logical channel within the effective duration;
  • the counter configuration unit 32 is configured to configure a scheduling request counter, where the scheduling request counter is configured to increase the counting value when the scheduling request is transmitted in the configuration parameter of the at least one scheduling request mapped by the logical channel.
  • the terminal device may be a terminal device that can be applied to a multi-carrier (CA) scenario.
  • CA multi-carrier
  • a scheduling request prohibiting transmission timer can be maintained in the configuration parameters of each scheduling request; which scheduling request is specifically disabled to prohibit the transmission timer, which may be selected for the current selection.
  • the resource corresponding to the configuration parameter of the scheduling request is determined by the SR transmission. For example, when the resource in the configuration parameter of one of the scheduling requests is selected for SR transmission, the scheduling request in the configuration parameter of the scheduling request is disabled. The timer is further disabled. By enabling the scheduling request to disable the transmission timer, all resource transmission SRs corresponding to the configuration parameters of all scheduling requests corresponding to the logical channel can be disabled.
  • the terminal device provided by the embodiment of the present application may further include:
  • the processing unit 33 is configured to obtain a mapping relationship between the configuration parameters of the at least one scheduling request configured by the network side for the logical channel, where the configuration parameters of the different scheduling requests in the configuration parameters of the at least one scheduling request respectively correspond to different carriers;
  • the configuration parameters of the scheduling request have the same physical uplink control channel resource period and different physical uplink control channel frequency domain resources.
  • SR configuration configuration parameters of two scheduling requests, which are respectively recorded as SR-CONFIG-1 and SR-CONFIG-2, then specific:
  • Logic path group (LCG, Logical Channel Group) is configured by RRC; RRC configures SR configuration mapping relationship for logical channel LCH a, LCH a is mapped to SR-CONFIG-1 and SR-CONFIG-2, SR-CONFIG -1 and SR-CONFIG-2 belong to the SR configuration on Carrier1 and Carrier2, respectively.
  • the SR-CONFIG-1 and the SR-CONFIG-2 may have the same PUCCH resource period and different PUCCH frequency domain resources.
  • the SR-CONFIG-1 configuration includes a dsr-TransMax to identify the maximum number of transmissions of the SR corresponding to the SR configuration.
  • a sr-ProhibiTimer corresponding to a sr-ProhibiTimer, after the SR transmission corresponding to the SR configuration is identified, the prohibition time of the SR is retransmitted (that is, the SR needs to be disabled when the sr-ProhibitTimer is running).
  • the same configuration for SR-CONFIGU-2 is the same configuration for SR-CONFIGU-2.
  • the terminal device further includes:
  • the scheduling unit 34 when the logical channel triggering the scheduling request is reported, if the logical channel is mapped to the configuration parameter of the at least one scheduling request on the at least one carrier, the scheduling request transmission resource is selected based on the configuration parameter of the at least one scheduling request, Transmitting a scheduling request on the selected resource;
  • the processing unit 33 is configured to: when the scheduling request is transmitted, start a scheduling request prohibiting transmission timer in the configuration parameter of the scheduling request where the scheduling request transmission resource is located, and increase a count value of the scheduling request counter.
  • the scheduling request transmission resource may be a Physical Uplink Control Channel (PUCCH) resource configured for the configuration parameter of the scheduling request; wherein the resource may include the concepts of the time domain and the frequency domain.
  • PUCCH Physical Uplink Control Channel
  • the foregoing logical channel may be a logical channel in a certain logical channel group (LCG); and before performing the foregoing processing, may further include determining whether the selected logical channel is mapped to a scheduling request on two or more carriers Configuration parameter (SR configuration).
  • LCG logical channel group
  • SR configuration carriers Configuration parameter
  • the logical channel belonging to a certain LCG triggers SR reporting, and if the logical channel is mapped to the SR configuration on multiple carriers, the latest PUCCH resource transmission SR is selected; wherein the selecting the most recent PUCCH resource transmission SR can be referred to
  • an LCHa corresponds to a PUCCH resource on a carrier 1, a carrier 2, and in particular, a time domain resource, which is PUCCH1 and PUCCH2, respectively
  • a PUCCH resource can be understood as a series of periods having the same period in the time domain.
  • the time domain resource; the current time is time 1. From the carrier 1 and the carrier 2, the PUCCH resource A closest to the time domain 1 in the time domain is selected to transmit the SR.
  • a scheduling request prohibition transmission timer (sr-ProhibitTimer) corresponding to the SR configuration is started.
  • the sr-ProhibitTimer is valid for all SR transmissions of the SR configuration of the logical channel mapping, that is, any SR transmission in the SR configuration mapped to the logical channel is prohibited within the duration of the sr-ProhibitTimer.
  • the configuration scheduling request counter may be: the MAC maintains a scheduling request counter (SR-COUNTER) for all SR configurations mapped to the logical channel, and the SR-COUNTER is added once if the SR transmission belongs to any one of the SR configurations.
  • SR-COUNTER scheduling request counter
  • the manner of determining the maximum number of transmissions may include the counter configuration unit, determining each of the configuration parameters of the at least one scheduling request corresponding to the logical channel The maximum number of scheduling request transmissions configured in the configuration parameter of the scheduling request; one of the maximum number of scheduling request transmissions of the configuration is selected as the maximum number of transmissions.
  • any one of the maximum number of transmissions among the configuration parameters of the scheduling request corresponding to the plurality of carriers is used as the maximum number of transmissions corresponding to the logical channel.
  • a minimum value may be selected from the configured maximum number of scheduling request transmissions, and the selected minimum value is used as the maximum number of transmissions. Then, in this case, the SR-COUNTER is added to satisfy the drs-TransMax configured in any one of the SR configurations, and the terminal simultaneously releases all PUCCH resources corresponding to the SR configuration of the logical channel, and initiates a random access procedure.
  • the configuration parameter of the at least one scheduling request selects a resource, and transmits a scheduling request on the selected resource, and may also have multiple determining conditions, specifically:
  • the scheduling unit is configured to determine, according to the configuration parameter of the at least one scheduling request of the logical channel mapping, whether the scheduling request transmission physical resource corresponding to the configuration parameter of the at least one scheduling request is valid at the current transmission time;
  • the effective scheduling request is selected to transmit the physical resource, and the scheduling request is transmitted on the selected effective scheduling request transmission physical resource.
  • the SR should first be in a pending state, that is, it will not be transmitted on the PUCCH immediately.
  • the logical channel that triggers the SR is determined by the MAC, and according to the configured mapping relationship, it is determined which SR configuration or SR configuration the SR should use for transmission.
  • the method for determining the logical channel that triggers the SR is consistent with the existing LTE, that is, the logical channel is found according to the trigger of the Regular BSR.
  • a scheduling request prohibition transmission timer can be configured in each SR Configuration of at least one SR Configuration corresponding to the same logical channel, but only for the logical channel, at the same time, only The sr-ProhibitTimer corresponding to an SR Configuration can be processed within the effective time. In other words, at most one logical channel can have only one open sr-ProhibitTimer at the same time.
  • the sr-ProhibitTimer is started.
  • the scheduling request prohibition transmission timer can be configured, and the resource can prohibit the transmission scheduling request corresponding to the configuration parameter of all scheduling requests of the logical channel, and configure the scheduling request counter to record the logical channel. The number of times the resource transmission scheduling request corresponding to the requested configuration parameter is retrieved. In this way, it is possible to provide control of the interval for transmitting the scheduling request and control of the number of times in the multi-carrier scenario, thereby ensuring that when the scheduling request is transmitted, it is not necessary to use more processing resources for transmission and the like, thereby The processing efficiency of the system is guaranteed.
  • the embodiment of the invention further provides a hardware component architecture of the terminal device, as shown in FIG. 5,
  • the method includes at least one processor 51, a memory 52, and at least one network interface 53.
  • the various components are coupled together by a bus system 54.
  • bus system 54 is used to implement connection communication between these components.
  • the bus system 54 includes, in addition to the data bus, a power bus, a control bus, and a status signal bus.
  • various buses are labeled as bus system 54 in FIG.
  • the memory 52 in the embodiments of the present invention may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory.
  • memory 52 stores elements, executable modules or data structures, or a subset thereof, or their extension set:
  • the processor 51 is configured to: configure a scheduling request prohibition transmission timer; wherein the scheduling request prohibition transmission timer is used to prohibit transmission scheduling on configuration parameters of all scheduling requests mapped by the logical channel within the effective duration request;
  • scheduling request counter is configured to increase a counting value when the scheduling request is transmitted in a configuration parameter of the at least one scheduling request mapped by the logical channel.
  • the terminal device can process the method steps in the foregoing Embodiment 1, and details are not described herein again.
  • the embodiment of the present invention provides a computer storage medium, where the computer storage medium stores computer executable instructions, and when the computer executable instructions are executed, the method steps of the foregoing first embodiment are implemented.
  • Embodiments of the Invention may be stored in a computer readable storage medium if it is implemented in the form of a software function module and sold or used as a standalone product. Based on such understanding, the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage.
  • the medium includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • embodiments of the invention are not limited to any specific combination of hardware and software.
  • an embodiment of the present invention further provides a computer storage medium, wherein a computer program is configured, and the computer program is configured to execute a data scheduling method according to an embodiment of the present invention.

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Abstract

本发明公开了一种调度请求的配置方法、终端设备及计算机存储介质,其中方法包括:配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。

Description

一种调度请求的配置方法、终端设备及计算机存储介质 技术领域
本发明涉及信息处理技术领域,尤其涉及一种调度请求的配置方法、终端设备及计算机存储介质。
背景技术
LTE调度请求(SR,scheduling request),是终端用来请求上行授权资源的在PUCCH上传输的1bit消息。其触发条件是:终端触发regular BSR上报;终端在当前传输时隙有可用的PUCCH(Physical Uplink Control CHannel,物理上行链路控制信道)资源,且sr-ProhibitTimer(SR禁止传输定时器)没有运行;注意在LTE中,一个MAC(Media Access Control,媒体介入控制层)只有一个sr-ProhibitTimer。
在LTE中,一个终端对应的MAC实体可以配置一个或者多个SR configuration。配置多个SR configuration是在载波聚合CA的情况下,辅小区SCell可以有相应的SR configuration。结合SR configuration,需要解决的一个问题是,网络给终端的逻辑信道配置了不同的SR configuration映射,不同的SR configuration属于不同的聚合载波,如果一个逻辑信道映射到多个不同载波的SR configuration,则如何选择PUCCH传输,以及相应的定时器如何操作,是需要解决的问题。
发明内容
为解决上述技术问题,本发明实施例提供了一种调度请求的配置方法、终端设备及计算机存储介质。
本发明实施例提供的调度请求的配置方法,应用于终端设备,包括:
配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
本发明实施例提供一种终端设备,包括:
定时器配置单元,用于配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
计数器配置单元,用于配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
本发明实施例提供一种终端设备,包括:处理器和用于存储能够在处理器上运行的计算机程序的存储器,
其中,所述处理器用于运行所述计算机程序时,执行前述方法的步骤。
本发明实施例提供的计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令被执行时执行前述方法的步骤。
本发明实施例的技术方案,能够配置调度请求禁止传输定时器,通过该定时器能够控制逻辑信道的全部调度请求的配置参数对应的资源禁止传输调度请求,并通过配置调度请求计数器来记录逻辑信道的全部调取请求的配置参数对应的资源传输调度请求的次数。如此,就能够针对多载波场景下,提供进行调度请求的传输的间隔的控制以及次数的控制,从而保证保证进行调度请求的发送的时候,不需要使用更多的处理资源进行传输等操作,从而保证了系统的处理效率。
附图说明
图1为本发明实施例提供的一种调度请求的配置方法流程示意图1;
图2为本发明实施例提供的一种场景示意图;
图3为本发明实施例终端设备组成结构示意图1;
图4为本发明实施例终端设备组成结构示意图2;
图5为本发明实施例的一种硬件架构示意图。
具体实施方式
为了能够更加详尽地了解本发明实施例的特点与技术内容,下面结合附图对本发明实施例的实现进行详细阐述,所附附图仅供参考说明之用,并非用来限定本发明实施例。
实施例一、
本申请实施例提供了一种调度请求的配置方法,应用于终端设备,如图1所示,包括:
步骤101:配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
步骤102:配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
这里,所述终端设备可以为能够适用于多载波(CA)场景下的终端设备。
需要指出的是,前述步骤101和步骤102的配置,可以不分先后顺序,可以同时执行,还可以先执行步骤101再执行步骤102,或者,还可以先执行步骤102再执行步骤101。
在逻辑信道映射到多个调度请求的配置参数时,每一个调度请求的配 置参数中均可以维护一个调度请求禁止传输定时器;具体开启的哪一个调度请求禁止传输定时器,可以为当前选取了哪一个调度请求的配置参数对应的资源进行SR的传输来确定,比如,选取了其中的一个调度请求的配置参数中的资源进行SR传输时,开启该调度请求的配置参数中的调度请求禁止传输定时器;进一步地,通过开启该调度请求禁止传输定时器,能够禁止所述逻辑信道所对应的全部调度请求的配置参数对应的全部资源传输SR。
此外,本申请实施例还可以执行以下处理:
获取网络侧针对逻辑信道配置的与至少一个调度请求的配置参数之间的映射关系;其中,至少一个调度请求的配置参数中不同的调度请求的配置参数分别对应不同载波;且不同的调度请求的配置参数具备相同的物理上行控制信道资源周期、以及不同的物理上行控制信道频域资源。
比如,假设同一个逻辑信道映射了两个调度请求的配置参数(SR configuration),分别记为SR-CONFIG-1和SR-CONFIG-2,那么具体的:
通过RRC给逻辑信道LCH a配置逻辑信道组(LCG,Logical Channel Group);RRC给逻辑信道LCH a配置SR configuration映射关系,LCH a映射到SR-CONFIG-1和SR-CONFIG-2,SR-CONFIG-1和SR-CONFIG-2分别属于Carrier1和Carrier2上的SR配置。
其中,SR-CONFIG-1和SR-CONFIG-2可以有相同的PUCCH资源周期,不同的PUCCH频域资源。
SR-CONFIG-1配置中包含一个dsr-TransMax标识该对应该SR configuration的SR的最大传输次数。同时对应一个sr-ProhibiTimer,标识对应该SR configuration的SR传输之后,重传SR的禁止时间(即在sr-ProhibitTimer运行时,SR需要禁止)。对于SR-CONFIGU-2也是一样的配置。
基于前述步骤101和步骤102提供的配置条件,下面结合定时器以及计数器的应用场景进行详细说明:
在逻辑信道触发调度请求上报时,若所述逻辑信道映射到至少一个载波上的至少一个调度请求的配置参数,则基于所述至少一个调度请求的配置参数选取调度请求传输资源,在选取的资源上传输调度请求;
在传输所述调度请求时,启动调度请求传输资源所在的调度请求的配置参数中对应的调度请求禁止传输定时器、以及增加所述调度请求计数器的计数值。
其中,所述调度请求传输资源,可以为调度请求的配置参数配置的物理上行控制信道(PUCCH)资源;其中,所述资源可以包括有时域以及频域两个维度的概念。
前述逻辑信道可以为某一个逻辑信道组(LCG)中的逻辑信道;并且在执行前述处理之前,还可以包括判断所述选取的逻辑信道是否映射到两个或更多的载波上的调度请求的配置参数(SR configuration)。
即,属于某个LCG的逻辑信道触发SR上报,如果该逻辑信道映射到多个载波上的SR configuration,则选择最近的PUCCH资源传输SR;其中,所述选择最近的PUCCH资源传输SR,可以参见图2所示,当一个LCHa对应了载波1、载波2上的PUCCH资源,尤其是时域资源,分别为PUCCH1和PUCCH2,需要明确的是,PUCCH资源可以理解为时域上周期相同的一系列时域资源;当前时刻为时刻1,从载波1以及载波2中,选取与时刻1在时域上最接近的资源作为选中的资源,以传输SR。
仍然参见图2,在(选中的资源中)传输SR的同时,启动对应该SR configuration的调度请求禁止传输定时器(sr-ProhibitTimer)。该sr-ProhibitTimer对所有该逻辑信道映射的SR configuration的SR传输都有效,即任何一个映射到该逻辑信道的SR configuration中SR传输都会在该 sr-ProhibitTimer生效时长内禁止。关于该定时器的生效时长可以参见图2中的阴影部分所示,也就是在该阴影部分所示的载波1以及载波2的每一个传输资源上,均不进行该逻辑信道的SR的传输。
另外,配置调度请求计数器,可以为:MAC给所有映射到该逻辑信道的SR configuration维护一个调度请求计数器(SR-COUNTER),属于任何一个SR configuration的SR传输一次,则SR-COUNTER增加一次。
进一步地,确定传输最大次数的方式可以包括:从所述逻辑信道对应的所述至少一个调度请求的配置参数中,确定每一个调度请求的配置参数中配置的调度请求传输最大次数;从所述配置的调度请求传输最大次数中选取一个作为所述传输最大次数。
也就是说,将多个载波对应的调度请求的配置参数中的传输最大次数中的任意一个作为逻辑信道对应的传输最大次数。
另外,还可以从所述配置的调度请求传输最大次数中选取最小值,将选取的最小值作为所述传输最大次数。那么这种情况下,SR-COUNTER增加到满足任何一个SR configuration中配置的drs-TransMax,则终端同时RRC释放所有对应该逻辑信道的SR configuration的PUCCH资源,并发起随机接入过程。
前面的所述基于所述至少一个调度请求的配置参数选取资源,在选取的资源上传输调度请求,还可以具备多种判断条件,具体来说:
基于所述逻辑信道映射的至少一个调度请求的配置参数,判断在当前传输时刻所述至少一个调度请求的配置参数所对应的调度请求传输物理资源是否有效;
若存在有效调度请求传输物理资源,则判断至少一个调度请求的配置参数中是否存在调度请求禁止传输定时器在生效时长内;
若所述调度请求禁止传输定时器不在生效时长内,则判断所述调度请 求计数器的计数值是否达到所述传输最大次数;
若所述计数值未达到传输最大次数,则选取有效调度请求传输物理资源,在选取的有效调度请求传输物理资源上传输调度请求。
下面以一个示例来说明,如果一个SR被触发,该SR首先应该处于挂起(pending)的状态,即不会立即在PUCCH上传输。由MAC确定触发该SR的逻辑信道,并根据配置的映射关系,确定该SR应该使用哪个或哪些SR configuration进行传输。其中,确定触发该SR的逻辑信道的方法与现有LTE一致,即根据Regular BSR的触发找到逻辑信道。
如果传输该SR的SR configuration有多个,即所述逻辑信道映射到多个SR configuration,则:
确定当前时刻属于所述这些SR configuration的任意一个PUCCH资源是有效的;
确定属于这些SR configuration的任意一个sr-ProhibitTimer没有运行。
这里需要说明的是,在同一个逻辑信道对应的至少一个SR Configuration的每一个SR Configuration中均可以配置一个调度请求禁止传输定时器(sr-ProhibitTimer),只是针对该逻辑信道,同一时间,仅有一个SR Configuration所对应的sr-ProhibitTimer能够处理生效时长内,换句话说,某一个逻辑信道同一时刻最多仅可以存在一个开启的sr-ProhibitTimer。
判断如果SR-COUNTER<传输最大次数drx-TransMax:
则针对这些SR configuration的共同维护的一个SR-COUNTER累加1;
并且指示物理层在有效的PUCCH资源中的最近的一个PUCCH资源上传输SR。
进一步地,在传输SR的时候,启动sr-ProhibitTimer。
另外,如果SR-COUNTER=drs-TransMax,则通知RRC释放所有SR configuration的PUCCH资源,并发起RA过程。
可见,通过采用上述方案,能够配置调度请求禁止传输定时器,通过该定时器能够控制逻辑信道的全部调度请求的配置参数对应的资源禁止传输调度请求,并通过配置调度请求计数器来记录逻辑信道的全部调取请求的配置参数对应的资源传输调度请求的次数。如此,就能够针对多载波场景下,提供进行调度请求的传输的间隔的控制以及次数的控制,从而保证保证进行调度请求的发送的时候,不需要使用更多的处理资源进行传输等操作,从而保证了系统的处理效率。
实施例二、
本申请实施例提供了一种终端设备,如图3所示,包括:
定时器配置单元31,用于配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
计数器配置单元32,用于配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
这里,所述终端设备可以为能够适用于多载波(CA)场景下的终端设备。
在逻辑信道映射到多个调度请求的配置参数时,每一个调度请求的配置参数中均可以维护一个调度请求禁止传输定时器;具体开启的哪一个调度请求禁止传输定时器,可以为当前选取了哪一个调度请求的配置参数对应的资源进行SR的传输来确定,比如,选取了其中的一个调度请求的配置参数中的资源进行SR传输时,开启该调度请求的配置参数中的调度请求禁止传输定时器;进一步地,通过开启该调度请求禁止传输定时器,能够禁止所述逻辑信道所对应的全部调度请求的配置参数对应的全部资源传输SR。
此外,基于图3提供的终端设备的结构,本申请实施例提供的终端设备,如图4所示,还可以包括:
处理单元33,获取网络侧针对逻辑信道配置的与至少一个调度请求的配置参数之间的映射关系;其中,至少一个调度请求的配置参数中不同的调度请求的配置参数分别对应不同载波;且不同的调度请求的配置参数具备相同的物理上行控制信道资源周期、以及不同的物理上行控制信道频域资源。
比如,假设同一个逻辑信道映射了两个调度请求的配置参数(SR configuration),分别记为SR-CONFIG-1和SR-CONFIG-2,那么具体的:
通过RRC给逻辑信道LCH a配置逻辑信道组(LCG,Logical Channel Group);RRC给逻辑信道LCH a配置SR configuration映射关系,LCH a映射到SR-CONFIG-1和SR-CONFIG-2,SR-CONFIG-1和SR-CONFIG-2分别属于Carrier1和Carrier2上的SR配置。
其中,SR-CONFIG-1和SR-CONFIG-2可以有相同的PUCCH资源周期,不同的PUCCH频域资源。
SR-CONFIG-1配置中包含一个dsr-TransMax标识该对应该SR configuration的SR的最大传输次数。同时对应一个sr-ProhibiTimer,标识对应该SR configuration的SR传输之后,重传SR的禁止时间(即在sr-ProhibitTimer运行时,SR需要禁止)。对于SR-CONFIGU-2也是一样的配置。
如图4所示,所述终端设备还包括:
调度单元34,在逻辑信道触发调度请求上报时,若所述逻辑信道映射到至少一个载波上的至少一个调度请求的配置参数,则基于所述至少一个调度请求的配置参数选取调度请求传输资源,在选取的资源上传输调度请求;
处理单元33,用于在传输所述调度请求时,启动调度请求传输资源所在的调度请求的配置参数中对应的调度请求禁止传输定时器、以及增加所述调度请求计数器的计数值。
其中,所述调度请求传输资源,可以为调度请求的配置参数配置的物理上行控制信道(PUCCH)资源;其中,所述资源可以包括有时域以及频域两个维度的概念。
前述逻辑信道可以为某一个逻辑信道组(LCG)中的逻辑信道;并且在执行前述处理之前,还可以包括判断所述选取的逻辑信道是否映射到两个或更多的载波上的调度请求的配置参数(SR configuration)。
即,属于某个LCG的逻辑信道触发SR上报,如果该逻辑信道映射到多个载波上的SR configuration,则选择最近的PUCCH资源传输SR;其中,所述选择最近的PUCCH资源传输SR,可以参见图2所示,当一个LCHa对应了载波1、载波2上的PUCCH资源,尤其是时域资源,分别为PUCCH1和PUCCH2,需要明确的是,PUCCH资源可以理解为时域上周期相同的一系列时域资源;当前时刻为时刻1,从载波1以及载波2中,选取与时刻1在时域上最接近的PUCCH资源A以传输SR。
在传输SR的同时,启动对应该SR configuration的调度请求禁止传输定时器(sr-ProhibitTimer)。该sr-ProhibitTimer对所有该逻辑信道映射的SR configuration的SR传输都有效,即任何一个映射到该逻辑信道的SR configuration中SR传输都会在该sr-ProhibitTimer生效时长内禁止。
另外,配置调度请求计数器,可以为:MAC给所有映射到该逻辑信道的SR configuration维护一个调度请求计数器(SR-COUNTER),属于任何一个SR configuration的SR传输一次,则SR-COUNTER增加一次。
进一步地,确定传输最大次数的方式可以包括所述计数器配置单元,从所述逻辑信道对应的所述至少一个调度请求的配置参数中,确定每一个 调度请求的配置参数中配置的调度请求传输最大次数;从所述配置的调度请求传输最大次数中选取一个作为所述传输最大次数。
也就是说,将多个载波对应的调度请求的配置参数中的传输最大次数中的任意一个作为逻辑信道对应的传输最大次数。
另外,还可以从所述配置的调度请求传输最大次数中选取最小值,将选取的最小值作为所述传输最大次数。那么这种情况下,SR-COUNTER增加到满足任何一个SR configuration中配置的drs-TransMax,则终端同时RRC释放所有对应该逻辑信道的SR configuration的PUCCH资源,并发起随机接入过程。
前面的所述基于所述至少一个调度请求的配置参数选取资源,在选取的资源上传输调度请求,还可以具备多种判断条件,具体来说:
所述调度单元,用于基于所述逻辑信道映射的至少一个调度请求的配置参数,判断在当前传输时刻所述至少一个调度请求的配置参数所对应的调度请求传输物理资源是否有效;
若存在有效调度请求传输物理资源,则判断至少一个调度请求的配置参数中是否存在调度请求禁止传输定时器在生效时长内;
若所述调度请求禁止传输定时器不在生效时长内,则判断所述调度请求计数器的计数值是否达到所述传输最大次数;
若所述计数值未达到传输最大次数,则选取有效调度请求传输物理资源,在选取的有效调度请求传输物理资源上传输调度请求。
下面以一个示例来说明,如果一个SR被触发,该SR首先应该处于挂起(pending)的状态,即不会立即在PUCCH上传输。由MAC确定触发该SR的逻辑信道,并根据配置的映射关系,确定该SR应该使用哪个或哪些SR configuration进行传输。其中,确定触发该SR的逻辑信道的方法与现有LTE一致,即根据Regular BSR的触发找到逻辑信道。
如果传输该SR的SR configuration有多个,即所述逻辑信道映射到多个SR configuration,则:
确定当前时刻属于所述这些SR configuration的任意一个PUCCH资源是有效的;
确定属于这些SR configuration的任意一个sr-ProhibitTimer没有运行。
这里需要说明的是,在同一个逻辑信道对应的至少一个SR Configuration的每一个SR Configuration中均可以配置一个调度请求禁止传输定时器(sr-ProhibitTimer),只是针对该逻辑信道,同一时间,仅有一个SR Configuration所对应的sr-ProhibitTimer能够处理生效时长内,换句话说,某一个逻辑信道同一时刻最多仅可以存在一个开启的sr-ProhibitTimer。
判断如果SR-COUNTER<传输最大次数drx-TransMax:
则针对这些SR configuration的共同维护的一个SR-COUNTER累加1;
并且指示物理层在有效的PUCCH资源中的最近的一个PUCCH资源上传输SR。
进一步地,在传输SR的时候,启动sr-ProhibitTimer。
另外,如果SR-COUNTER=drs-TransMax,则通知RRC释放所有SR configuration的PUCCH资源,并发起RA过程。
可见,通过采用上述方案,能够配置调度请求禁止传输定时器,通过该定时器能够控制逻辑信道的全部调度请求的配置参数对应的资源禁止传输调度请求,并通过配置调度请求计数器来记录逻辑信道的全部调取请求的配置参数对应的资源传输调度请求的次数。如此,就能够针对多载波场景下,提供进行调度请求的传输的间隔的控制以及次数的控制,从而保证保证进行调度请求的发送的时候,不需要使用更多的处理资源进行传输等操作,从而保证了系统的处理效率。
本发明实施例还提供了一种终端设备的硬件组成架构,如图5所示, 包括:至少一个处理器51、存储器52、至少一个网络接口53。各个组件通过总线系统54耦合在一起。可理解,总线系统54用于实现这些组件之间的连接通信。总线系统54除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。但是为了清楚说明起见,在图5中将各种总线都标为总线系统54。
可以理解,本发明实施例中的存储器52可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。
在一些实施方式中,存储器52存储了如下的元素,可执行模块或者数据结构,或者他们的子集,或者他们的扩展集:
操作系统521和应用程序522。
其中,所述处理器51配置为:配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
具体来说,终端设备能够处理前述实施例一的方法步骤,这里不再进行赘述。
本发明实施例提供的一种计算机存储介质,所述计算机存储介质存储有计算机可执行指令,所述计算机可执行指令被执行时实施前述实施例一的方法步骤。
本发明实施例上述装置如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储 介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机、服务器、或者网络设备等)执行本发明各个实施例所述方法的全部或部分。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read Only Memory)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。
相应地,本发明实施例还提供一种计算机存储介质,其中存储有计算机程序,该计算机程序配置为执行本发明实施例的数据调度方法。
尽管为示例目的,已经公开了本发明的优选实施例,本领域的技术人员将意识到各种改进、增加和取代也是可能的,因此,本发明的范围应当不限于上述实施例。

Claims (16)

  1. 一种调度请求的配置方法,应用于终端设备,包括:
    配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
    配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参数中传输时,均增加其计数值。
  2. 根据权利要求1所述的方法,其特征在于,所述方法还包括:
    在逻辑信道触发调度请求上报时,若所述逻辑信道映射到至少一个载波上的至少一个调度请求的配置参数,则基于所述至少一个调度请求的配置参数选取调度请求传输资源,在选取的调度请求传输资源上传输调度请求;
    在传输所述调度请求时,启动调度请求传输资源所在的调度请求的配置参数中对应的调度请求禁止传输定时器、以及增加所述调度请求计数器的计数值。
  3. 根据权利要求2所述的方法,其特征在于,所述方法还包括:
    当计数值达到传输最大次数时,释放所述逻辑信道所映射的调度请求的配置参数的调度请求传输资源,并发起随机接入过程。
  4. 根据权利要求2所述的方法,其特征在于,所述方法还包括:
    从所述逻辑信道对应的所述至少一个调度请求的配置参数中,确定每一个调度请求的配置参数中配置的调度请求传输最大次数;
    从所述配置的调度请求传输最大次数中选取一个作为所述传输最大次数。
  5. 根据权利要求4所述的方法,其特征在于,从所述配置的调度请求 传输最大次数中选取一个作为所述传输最大次数,包括:
    从所述配置的调度请求传输最大次数中选取最小值,将选取的最小值作为所述传输最大次数。
  6. 根据权利要求2所述的方法,其特征在于,所述基于所述至少一个调度请求的配置参数选取资源,在选取的资源上传输调度请求,还包括:
    基于所述逻辑信道映射的至少一个调度请求的配置参数,判断在当前传输时刻所述至少一个调度请求的配置参数所对应的调度请求传输物理资源是否有效;
    若存在有效调度请求传输物理资源,则判断至少一个调度请求的配置参数中是否存在调度请求禁止传输定时器在生效时长内;
    若所述调度请求禁止传输定时器不在生效时长内,则判断所述调度请求计数器的计数值是否达到所述传输最大次数;
    若所述计数值未达到传输最大次数,则选取有效调度请求传输物理资源,在选取的有效调度请求传输物理资源上传输调度请求。
  7. 根据权利要求2所述的方法,其特征在于,所述方法还包括:
    获取网络侧针对逻辑信道配置的与至少一个调度请求的配置参数之间的映射关系;其中,至少一个调度请求的配置参数中不同的调度请求的配置参数分别对应不同载波;且不同的调度请求的配置参数具备相同的物理上行控制信道资源周期、以及不同的物理上行控制信道频域资源。
  8. 一种终端设备,包括:
    定时器配置单元,用于配置调度请求禁止传输定时器;其中,所述调度请求禁止传输定时器用于在生效时长内,针对逻辑信道所映射的全部调度请求的配置参数上禁止传输调度请求;
    计数器配置单元,用于配置调度请求计数器;其中,所述调度请求计数器用于当调度请求在所述逻辑信道所映射的至少一个调度请求的配置参 数中传输时,均增加其计数值。
  9. 根据权利要求8所述的终端设备,其特征在于,所述终端设备还包括:
    调度单元,用于在逻辑信道触发调度请求上报时,若所述逻辑信道映射到至少一个载波上的至少一个调度请求的配置参数,则基于所述至少一个调度请求的配置参数选取调度请求传输资源,在选取的调度请求传输资源上传输调度请求;
    处理单元,用于在传输所述调度请求时,启动调度请求传输资源所在的调度请求的配置参数中对应的调度请求禁止传输定时器、以及增加所述调度请求计数器的计数值。
  10. 根据权利要求9所述的终端设备,其特征在于,所述计数器配置单元,用于当计数值达到传输最大次数时,释放所述逻辑信道所映射的调度请求的配置参数的调度请求传输资源,并发起随机接入过程。
  11. 根据权利要求9所述的终端设备,其特征在于,所述计数器配置单元,用于从所述逻辑信道对应的所述至少一个调度请求的配置参数中,确定每一个调度请求的配置参数中配置的调度请求传输最大次数;从所述配置的调度请求传输最大次数中选取一个作为所述传输最大次数。
  12. 根据权利要求11所述的终端设备,其特征在于,所述计数器配置单元,用于从所述配置的调度请求传输最大次数中选取最小值,将选取的最小值作为所述传输最大次数。
  13. 根据权利要求9所述的终端设备,其特征在于,所述调度单元,用于基于所述逻辑信道映射的至少一个调度请求的配置参数,判断在当前传输时刻所述至少一个调度请求的配置参数所对应的调度请求传输物理资源是否有效;
    若存在有效调度请求传输物理资源,则判断至少一个调度请求的配置 参数中是否存在调度请求禁止传输定时器在生效时长内;
    若所述调度请求禁止传输定时器不在生效时长内,则判断所述调度请求计数器的计数值是否达到所述传输最大次数;
    若所述计数值未达到传输最大次数,则选取有效调度请求传输物理资源,在选取的有效调度请求传输物理资源上传输调度请求。
  14. 根据权利要求9所述的终端设备,其特征在于,所述处理单元,用于获取网络侧针对逻辑信道配置的与至少一个调度请求的配置参数之间的映射关系;其中,至少一个调度请求的配置参数中不同的调度请求的配置参数分别对应不同载波;且不同的调度请求的配置参数具备相同的物理上行控制信道资源周期、以及不同的物理上行控制信道频域资源。
  15. 一种终端设备,包括:处理器和用于存储能够在处理器上运行的计算机程序的存储器,
    其中,所述处理器用于运行所述计算机程序时,执行权利要求1-7任一项所述方法的步骤。
  16. 一种计算机存储介质,所述计算机存储介质存储有计算机可执行指令,所述计算机可执行指令被执行时实现权利要求1-7任一项所述的方法步骤。
PCT/CN2017/101881 2017-09-15 2017-09-15 一种调度请求的配置方法、终端设备及计算机存储介质 WO2019051770A1 (zh)

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