WO2022078496A1 - 物理层监听方法及相关装置 - Google Patents

物理层监听方法及相关装置 Download PDF

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Publication number
WO2022078496A1
WO2022078496A1 PCT/CN2021/124104 CN2021124104W WO2022078496A1 WO 2022078496 A1 WO2022078496 A1 WO 2022078496A1 CN 2021124104 W CN2021124104 W CN 2021124104W WO 2022078496 A1 WO2022078496 A1 WO 2022078496A1
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Prior art keywords
type
pdcch
value
indication
wake
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PCT/CN2021/124104
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English (en)
French (fr)
Inventor
周化雨
赵思聪
雷珍珠
潘振岗
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展讯通信(上海)有限公司
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Priority to US18/249,292 priority Critical patent/US20230403719A1/en
Publication of WO2022078496A1 publication Critical patent/WO2022078496A1/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
    • H04W72/232Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave
    • H04W52/0216Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave using a pre-established activity schedule, e.g. traffic indication frame
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0225Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
    • H04W52/0229Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0225Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
    • H04W52/0235Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a power saving command
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present application relates to the field of communication technologies, and in particular, to a physical layer monitoring method and related devices.
  • the heartbeat service generally means that the client sends an application layer message to the server to tell the server that the current service is activated.
  • the heartbeat service is a long-period small packet service.
  • the long period means that the message can be sent every few minutes, and the small packet means that the data packets sent at one time are small, such as hundreds or thousands of bytes.
  • the heartbeat service is a relatively common service for energy saving and typical application requirements. Since the heartbeat service is a long-period small-packet service, the user equipment does not need to send a scheduling application to apply for uplink authorization from the network.
  • the user equipment can monitor the PDCCH at the configured PDCCH monitoring timing to obtain uplink authorization, which saves the operation of scheduling application. , making the user equipment more power-efficient.
  • the downlink control information format 2-6 (Downlink Control Information format 2-6, DCI format 2-6) is introduced, and the user equipment can be configured with 1-bit high-level parameters Wake-up indication
  • DCI format 2-6 a 1-bit wake-up indication is used to indicate whether the user equipment starts (starts) an On Duration Timer (ODT) in the next discontinuous reception cycle.
  • ODT On Duration Timer
  • the working time of the open duration timer is a kind of active time (Active Time, AT).
  • the user equipment needs to monitor all valid PDCCHs, that is, the MAC entity (MAC Entity) controls the physical layer to monitor all valid PDCCHs. PDCCH.
  • the embodiments of the present application provide a physical layer monitoring method and related apparatus, which can solve the coexistence problem of the PDCCH corresponding to the wake-up indication and the heartbeat service, and the coexistence problem of the PDCCH skip indication and the PDCCH corresponding to the heartbeat service.
  • an embodiment of the present application provides a physical layer monitoring method, which is applied to a user equipment, and the method includes:
  • the monitoring mode of the first type of PDCCH is determined according to the first type of PDCCH skip indication; or,
  • the monitoring mode of the first type of PDCCH is determined according to the second type of PDCCH skip indication.
  • an embodiment of the present application provides a physical layer monitoring device, where the physical layer monitoring includes a processing unit and a communication unit, wherein:
  • the processing unit is configured to determine the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication; or, to determine the monitoring mode of the first type of PDCCH according to the second type of wake-up indication;
  • the PDCCH-like skipping indication determines the monitoring manner of the first-type PDCCH; or, the monitoring manner of the first-type PDCCH is determined according to the second-type PDCCH skipping indication.
  • an embodiment of the present application provides a user equipment, including a processor, a memory, a communication interface, and one or more programs, wherein the one or more programs are stored in the memory, and are configured by the above Executed by the processor, the above program includes instructions for executing the steps in the first aspect of the embodiments of the present application.
  • an embodiment of the present application provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program for electronic data exchange, wherein the computer program causes a computer to execute the computer program as described in the first embodiment of the present application.
  • an embodiment of the present application provides a computer program product, wherein the computer program product includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute as implemented in the present application. Examples include some or all of the steps described in the first aspect.
  • the computer program product may be a software installation package.
  • the physical layer monitoring method and related apparatus described in the embodiments of the present application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication;
  • the second type of wake-up indication determines the monitoring mode of the first type of PDCCH; or, the first type of PDCCH monitoring mode is determined according to the first type of PDCCH skipping indication; or the first type of PDCCH is determined according to the second type of PDCCH skipping indication.
  • a type of PDCCH monitoring method Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • FIG. 1 is a schematic flowchart of a physical layer monitoring method provided by an embodiment of the present application.
  • FIG. 2 is a schematic flowchart of another physical layer monitoring method provided by an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of another physical layer monitoring method provided by an embodiment of the present application.
  • FIG. 4 is a schematic flowchart of another physical layer monitoring method provided by an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a user equipment provided by an embodiment of the present application.
  • FIG. 6 is a block diagram of functional units of a physical layer monitoring apparatus provided by an embodiment of the present application.
  • the user equipment described in the embodiments of this application may include smart phones (such as Android phones, iOS phones, Windows Phone phones, etc.), tablet computers, PDAs, notebook computers, video matrixes, monitoring platforms, and mobile Internet devices (MID, Mobile Internet Devices). ) or wearable devices, etc., the above are only examples, not exhaustive, including but not limited to the above devices, of course, the above user equipment may also be user equipment, for example, cloud user equipment.
  • FIG. 1 is a schematic flowchart of a physical layer monitoring method provided by an embodiment of the present application, where the physical layer monitoring method is applied to a user equipment. As shown in the figure, this physical layer monitoring method includes:
  • S101 Determine, according to a first-type wake-up indication, a monitoring mode of a first-type physical downlink control channel PDCCH, where the first-type PDCCH is a PDCCH corresponding to a heartbeat service.
  • the base station may configure a dedicated PDCCH for the heartbeat service.
  • the configuration of the PDCCH is generally configured through a search space set, so in fact, the base station can configure a search space set for the heartbeat service, and the PDCCH candidates in the search space set can be regarded as the first type of PDCCH.
  • the first type of PDCCH described here may also be equivalent to the first type of search space set.
  • a PDCCH or a search space set belonging to a heartbeat service may be represented by a parameter in a high-level parameter of the search space set, that is, identified by an information element. That is to say, the distinction between the PDCCH (search space set) corresponding to the heartbeat service and other PDCCHs (search space set) may be a parameter in the high-level parameters of the search space set.
  • the PDCCH (search space set) corresponding to the heartbeat service is divided into the first type of PDCCH (search space set).
  • the first type of wake-up indication is the wake-up indication in DCI format 2-6.
  • the monitoring mode of the first-type PDCCH is determined according to the first-type wake-up indication, and the monitoring mode includes monitoring the first-type PDCCH and not monitoring the first-type PDCCH.
  • the physical layer monitoring method and related apparatus described in the embodiments of this application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication. Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of wake-up indication includes: determining the value of the first type of wake-up indication, where the first type of wake-up indication includes one bit; if The value of the first type of wake-up indication is the first value, and it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the first type of wake-up indication includes 1 bit, and one bit in the first type of wake-up indication may not act on the first type of PDCCH.
  • the user equipment will continue to monitor the first type of PDCCH. At this time, the user equipment will not start the open duration timer, and will not monitor all valid PDCCHs within the corresponding time. , but considering that the heartbeat service corresponding to the first type of PDCCH is a long-period small packet service, it needs to be treated differently.
  • the base station still needs to open the duration timer to let The user equipment monitors other PDCCHs except the first type of PDCCHs during the activation time, but consumes power instead. If the first type of wake-up indication is to start the on-duration timer, the user equipment will monitor the first type of PDCCH, and will also monitor other PDCCHs except the first type of PDCCH.
  • the first value is 0, indicating that the value of the first type of wake-up indication received by the user equipment is 0, and when the value of the first type of wake-up indication is 0, it can be determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH For PDCCH, the on-duration timer is not started at this time, and other PDCCHs other than the first type of PDCCH are not monitored.
  • the heartbeat service corresponding to the first type of PDCCH is a long-period small packet service, it needs to be treated differently. Otherwise, when the user equipment only needs to monitor the first type of PDCCH during the activation time, the base station still needs to open the continuous open Time timer, which allows the user equipment to monitor other PDCCHs except the first type of PDCCH during the activation time, but consumes power instead. Therefore, if the wake-up indication is the first value of 0, the user equipment will monitor the first type of PDCCH. The on-duration timer is started, and other PDCCHs other than the first type of PDCCH are not monitored.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of wake-up indication includes: if the value of the first type of wake-up indication is a first value, and the first high layer parameter is the first The high layer parameter value determines that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH.
  • the first type of wake-up indication includes one bit, and the first value is 0.
  • the first type of wake-up indication is 0, whether the user equipment needs to monitor the first type of PDCCH depends on the first high-layer parameter, that is, on semi-static signaling.
  • the first type of wake-up indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the semi-static signaling.
  • the first high-level parameter includes two values, which are the first high-level parameter value and the second high-level parameter value.
  • the high-level parameter value, the first high-level parameter value and the second high-level parameter value correspond to monitoring and non-monitoring respectively.
  • the first high-level parameter can be understood as a switch, including two states of on or off.
  • the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH.
  • the value of the first type of wake-up indication is the first value, it is more accurate to determine the monitoring mode of the first type of PDCCH according to the value of the first high layer parameter corresponding to the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of wake-up indication includes: if the value of the first type of wake-up indication is a first value, and the first high-level parameter is a second The high layer parameter value determines that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the first type of wake-up indication includes one bit, and the first value is 0.
  • the first type of wake-up indication is 0, whether the user equipment needs to monitor the first type of PDCCH depends on the first high-layer parameter, that is, on semi-static signaling.
  • the first type of wake-up indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the semi-static signaling.
  • the first high-level parameter includes two values, which are the first high-level parameter value and the second high-level parameter value.
  • the high-level parameter value, the first high-level parameter value and the second high-level parameter value correspond to monitoring and non-monitoring respectively.
  • the first high-level parameter can be understood as a switch, including two states of on or off.
  • the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the value of the first type of wake-up indication is the first value, it is more accurate to determine the monitoring mode of the first type of PDCCH according to the value of the first high layer parameter corresponding to the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of wake-up indication includes: if the value of the first type of wake-up indication is a first value and the priority of the first logical channel is If the value is greater than or equal to the first threshold, it is determined that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCC.
  • the first type of wake-up indication includes one bit, and the first value is 0.
  • the first type of wake-up indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the first logical channel priority corresponding to the first type of PDCCH. If the priority of the first logical channel is greater than or equal to the first threshold, the monitoring method of the first type of PDCCH is to monitor the first type of PDCCH.
  • the value of the first type of wake-up indication is the first value, it is more accurate to determine the monitoring mode of the first type of PDCCH according to the first logical channel priority corresponding to the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of wake-up indication includes: if the value of the first type of wake-up indication is a first value and the priority of the first logical channel is If the value is smaller than the first threshold, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the first type of wake-up indication includes one bit, and the first value is 0.
  • the first type of wake-up indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the first logical channel priority corresponding to the first type of PDCCH. If the priority of the first logical channel is less than the first threshold, the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the value of the first type of wake-up indication is the first value, it is more accurate to determine the monitoring mode of the first type of PDCCH according to the first logical channel priority corresponding to the first type of PDCCH.
  • FIG. 2 is a schematic flowchart of a physical layer monitoring method provided by an embodiment of the present application, where the physical layer monitoring method is applied to user equipment. As shown in the figure, this physical layer monitoring method includes:
  • the base station may configure a dedicated PDCCH for the heartbeat service.
  • the configuration of the PDCCH is generally configured through a search space set, so in fact, the base station can configure a search space set for the heartbeat service, and the PDCCH candidates in the search space set can be regarded as the first type of PDCCH.
  • the first type of PDCCH described here may also be equivalent to the first type of search space set.
  • a PDCCH or a search space set belonging to a heartbeat service may be represented by a parameter in a high-level parameter of the search space set, that is, identified by an information element. That is to say, the distinction between the PDCCH (search space set) corresponding to the heartbeat service and other PDCCHs (search space sets) may be a parameter in the high-level parameters of the search space set.
  • the PDCCH (search space) corresponding to the heartbeat service is divided into the first type of PDCCH (search space set).
  • the second type of wake-up indication is that the wake-up indication in DCI format 2-6 adds an extra bit to one bit of one, and the extra one bit can be a wake-up indication in DCI format 2-6 to one bit. One bit before or one bit after the bit, and the adjacent one bit.
  • the physical layer monitoring method and related apparatus described in the embodiments of the present application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of PDCCH according to the second type of wake-up indication. Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of wake-up indication includes: if the value of the second type of wake-up indication is a second value, determining The monitoring method of the first type of PDCCH is to close the first timer and not monitor the first type of PDCCH.
  • the second type of wake-up indication includes two bits and a total of 4 code points, so it can include 4 cases, namely 00, 01, 11 and 10, and 00, 01, 11 and 10 can respectively correspond to a monitoring method, Therefore, four monitoring modes of the first type of PDCCH can be determined according to the second type of wake-up indication.
  • the value of the second type of wake-up indication is determined first, and then the monitoring mode of the first type of PDCCH is determined according to the value of the second type of wake-up indication.
  • the wake-up indication of the second type includes the wake-up indication in DCI format 2-6 plus an extra bit to one bit of one, so that whether to open the duration timer can be determined according to the value of the wake-up indication of the second type and determining the monitoring mode of the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of wake-up indication includes: if the value of the second type of wake-up indication is a second value, determining The monitoring method of the first type of PDCCH is to close the first timer and not monitor the first type of PDCCH.
  • the second value is 00
  • the first timer is a duration timer
  • the value of the second type of wake-up indication is 00, it can be determined that the monitoring mode of the first type of PDCCH is to turn off the duration timer, and not to monitor The first type of PDCCH.
  • the wake-up indication of the second type includes the wake-up indication in DCI format 2-6 plus an extra bit to one bit of one, so that whether to open the duration timer can be determined according to the value of the wake-up indication of the second type and determining the monitoring mode of the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of wake-up indication includes: if the value of the second type of wake-up indication is a third value, determining The monitoring method of the first type of PDCCH is to close the first timer and monitor the first type of PDCCH.
  • the third value is 01
  • the first timer is a duration timer
  • the value of the second type of wake-up indication is 01, it can be determined that the monitoring mode of the first type of PDCCH is to turn off the on-duration timer, and monitor the first type of PDCCH.
  • the wake-up indication of the second type includes the wake-up indication in DCI format 2-6 plus an extra bit to one bit of one, so that whether to open the duration timer can be determined according to the value of the wake-up indication of the second type and determining the monitoring mode of the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of wake-up indication includes: if the value of the second type of wake-up indication is a fourth value, determining The monitoring method of the first type of PDCCH is to start the first timer and monitor the first type of PDCCH.
  • the fourth value is 01
  • the first timer is a duration timer
  • the value of the second type of wake-up indication is 01, it can be determined that the monitoring mode of the first type of PDCCH is to open the duration timer, and monitor the first type of PDCCH.
  • Class PDCCH
  • the wake-up indication of the second type includes the wake-up indication in DCI format 2-6 plus an extra bit to one bit of one, so that whether to open the duration timer can be determined according to the value of the wake-up indication of the second type and determining the monitoring mode of the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of wake-up indication includes: if the value of the second type of wake-up indication is a fifth value, determining The monitoring method of the first type of PDCCH is to close the first timer, monitor the first type of PDCCH, and open the inactive timer corresponding to the first type of PDCCH, and the corresponding to the first type of PDCCH.
  • the inactive timer is different from the inactive timers corresponding to other PDCCHs except the first type of PDCCH.
  • the fifth value is 10
  • the first timer is a duration timer
  • the value of the second type of wake-up indication is 00
  • One type of PDCCH at the same time, the inactive timer corresponding to the first type of PDCCH is opened, and the inactive timer corresponding to the first type of PDCCH is different from the inactive timers corresponding to other PDCCHs except the first type of PDCCH.
  • the heartbeat service corresponding to the first type of PDCCH is a small packet service, the time for turning on the inactive timer is very short and will not cause a lot of power consumption.
  • FIG. 3 is a schematic flowchart of a physical layer monitoring method provided by an embodiment of the present application. As shown in the figure, this physical layer monitoring method includes:
  • the base station may configure a dedicated PDCCH for the heartbeat service.
  • the configuration of the PDCCH is generally configured through a search space set, so in fact, the base station can configure a search space set for the heartbeat service, and the PDCCH candidates in the search space set can be regarded as the first type of PDCCH.
  • the first type of PDCCH described here may also be equivalent to the first type of search space set.
  • a PDCCH or a search space set belonging to a heartbeat service may be represented by a parameter in a high-level parameter of the search space set, that is, identified by an information element. That is to say, the distinction between the PDCCH (search space set) corresponding to the heartbeat service and other PDCCHs (search space sets) may be a parameter in the high-level parameters of the search space set.
  • the PDCCH (search space) corresponding to the heartbeat service is divided into the first type of PDCCH (search space set).
  • the first type of PDCCH skip indication may be a PDCCH skip indication in the scheduling transmission configuration indication DCI.
  • the monitoring mode of the first-type PDCCH is determined according to the first-type PDCCH skipping indication, and the monitoring mode includes monitoring the first-type PDCCH and not monitoring the first-type PDCCH.
  • the physical layer monitoring method and related apparatus described in the embodiments of this application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of PDCCH according to the first type of PDCCH skip indication. Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of PDCCH skip indication includes: determining a value of the first type of PDCCH skip indication, the first type of PDCCH The skipping indication includes one bit; if the value of the first-type PDCCH skipping indication is a sixth value, it is determined that the monitoring mode of the first-type PDCCH is monitoring the first-type PDCCH.
  • the first-type PDCCH skipping indication includes one bit, and one bit in the first-type PDCCH skipping indication may not be used for monitoring the first-type PDCCH.
  • the first type of PDCCH skip indication is 1, the user equipment will continue to monitor the first type of PDCCH. duration) or the active time of a timer does not monitor PDCCH (a set of semi-statically configured search space sets), however, considering that the service corresponding to the first type of PDCCH is a long-period small packet service, it needs to be treated differently, otherwise, When the user equipment only needs to monitor the first type of PDCCH within the duration or the timer, the base station still cannot set the first type of PDCCH skip indication to 1, and consumes power instead. It is equivalent to that if the first type of PDCCH skipping indication is to skip PDCCH monitoring, the user equipment will continue to monitor the first type of PDCCH.
  • the value of the first type of PDCCH skipping indication is a sixth value, and the sixth value is 0 or 1, and the standard is to be determined.
  • the user equipment receives the value of the first-type PDCCH skipping indication as 0 or 1, it skips the monitoring of PDCCHs other than the first-type PDCCH for a period of time, or modifies the PDCCH pair except the first-type PDCCH A parameter of the search space set.
  • the value of the first-type PDCCH skipping indication is the sixth value, it is more accurate to determine the monitoring mode of the first-type PDCCH according to the sixth value.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of PDCCH skipping indication includes: if the value of the first type of PDCCH skipping indication is a sixth value, and the The second layer parameter is the value of the third layer parameter, and it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the first type of PDCCH skipping indication includes one bit, and the sixth value is 0 or 1.
  • the first type of PDCCH skipping indication is 0 or 1
  • whether the user equipment needs to monitor the first type of PDCCH depends on the second higher layer parameter, that is, on semi-static signaling.
  • the first type of PDCCH skip indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the semi-static signaling.
  • the second layer parameter includes two values, which are the third layer parameter value and The fourth high-level parameter value, the third high-level parameter value and the fourth high-level parameter value correspond to monitoring and non-monitoring respectively.
  • the second high-level parameter can be understood as a switch, including two states of on or off.
  • the second high layer parameter is the value of the third high layer parameter, it can be determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of PDCCH skipping indication includes: if the value of the first type of PDCCH skipping indication is a sixth value, and the The second layer parameter is the value of the fourth layer parameter, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the first type of PDCCH skipping indication includes one bit, and the first value is 0 or 1.
  • the first type of PDCCH skipping indication is 0 or 1
  • whether the user equipment needs to monitor the first type of PDCCH depends on the second higher layer parameter, that is, on semi-static signaling.
  • the first type of wake-up indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the semi-static signaling.
  • the second high layer parameter includes two values, which are the third high layer parameter value and the fourth high layer parameter value.
  • the high-level parameter value, the third high-level parameter value and the fourth high-level parameter value correspond to monitoring and non-monitoring respectively.
  • the second high-level parameter can be understood as a switch, including two states of on or off.
  • the second high layer parameter is the value of the fourth high layer parameter, it can be determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of PDCCH skipping indication includes: if the value of the first type of PDCCH skipping indication is a sixth value, and the The priority of the second logical channel is greater than or equal to the second threshold, and it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the first type of PDCCH skip indication includes one bit, the first value is 0 or 1, and when the first type of PDCCH skip indication is 0 or 0, whether the user equipment needs to monitor the first type of PDCCH depends on the second logical channel priority.
  • the first type of PDCCH skip indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the second logical channel priority corresponding to the first type of PDCCH. If the priority of the second logical channel is greater than or equal to the second threshold, the monitoring method of the first type of PDCCH is to monitor the first type of PDCCH.
  • the value of the first-type PDCCH skipping indication is the sixth value, it is more accurate to determine the monitoring mode of the first-type PDCCH according to the second logical channel priority.
  • the determining the monitoring mode of the first type of PDCCH according to the first type of PDCCH skipping indication includes: if the value of the first type of PDCCH skipping indication is a sixth value, and the The priority of the second logical channel is less than the second threshold, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the first type of PDCCH skip indication includes one bit, the first value is 0 or 1, and when the first type of PDCCH skip indication is 0 or 0, whether the user equipment needs to monitor the first type of PDCCH depends on the second logical channel priority.
  • the first type of PDCCH skip indication is dynamic signaling. After receiving the dynamic signaling, the behavior of the user equipment still depends on the second logical channel priority corresponding to the first type of PDCCH. If the priority of the second logical channel is less than the second threshold, the monitoring method of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the value of the first-type PDCCH skipping indication is the sixth value, it is more accurate to determine the monitoring mode of the first-type PDCCH according to the second logical channel priority.
  • FIG. 4 is a schematic flowchart of a physical layer monitoring method provided by an embodiment of the present application. As shown in the figure, this physical layer monitoring method includes:
  • the base station may configure a dedicated PDCCH for the heartbeat service.
  • the configuration of the PDCCH is generally configured through a search space set, so in fact, the base station can configure a search space set for the heartbeat service, and the PDCCH candidates in the search space set can be regarded as the first type of PDCCH.
  • the first type of PDCCH described here may also be equivalent to the first type of search space set.
  • a PDCCH or a search space set belonging to a heartbeat service may be represented by a parameter in a high-level parameter of the search space set, that is, identified by an information element. That is to say, the distinction between the PDCCH (search space set) corresponding to the heartbeat service and other PDCCH (search space sets) may be a parameter in the high-level parameters of the search space set.
  • the PDCCH (search space) corresponding to the heartbeat service is divided into the first type of PDCCH (search space set).
  • the first type of PDCCH skip indication may be a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, and the extra bit may be the PDCCH skip indication in the scheduling DCI corresponding to The one bit before or after the one bit of , and the adjacent one bit.
  • the physical layer monitoring method and related apparatus described in the embodiments of the present application are applied to user equipment, and the user equipment determines the monitoring mode of the first type of PDCCH according to the second type of PDCCH skip indication. Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skip indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of PDCCH skip indication includes: if the value of the second type of PDCCH skip indication is the first Seven values, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH, and the PDCCH includes the first type of PDCCH.
  • the second type of wake-up indication includes two bits, and the values corresponding to the two bits may be 00, or 01, or 11, or 10.
  • the value of the second type of wake-up indication is determined first, and then the monitoring mode of the first type of PDCCH is determined according to the value of the second type of wake-up indication.
  • the second type of PDCCH skip indication is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • a type of PDCCH monitoring method is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of PDCCH skip indication includes: if the value of the second type of wake-up indication is a seventh value , determining that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH, and the PDCCH includes the first type of PDCCH.
  • the seventh value is 00, and when the value of the second-type PDCCH skipping indication is 00, it can be determined that the monitoring mode of the first-type PDCCH is not to monitor the PDCCH, and the PDCCH includes the first-type PDCCH.
  • the second type of PDCCH skip indication is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • a type of PDCCH monitoring method is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of PDCCH skip indication includes: if the value of the second type of wake-up indication is an eighth value , determining that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first type of PDCCH.
  • the eighth value is 01, and when the value of the second type of PDCCH skipping indication is 01, it can be determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first type of PDCCH.
  • a type of PDCCH is 01, and when the value of the second type of PDCCH skipping indication is 01, it can be determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first type of PDCCH.
  • a type of PDCCH is 01, and when the value of the second type of PDCCH skipping indication is 01, it can be determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first type of PDCCH.
  • a type of PDCCH is 01, and when the value of the second type of PDCCH skipping indication is 01, it can be determined that the monitoring mode of the first type of P
  • the second type of PDCCH skip indication is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • a type of PDCCH monitoring method is a bit corresponding to the PDCCH skip indication in the scheduling transmission configuration indication DCI plus an extra bit, so that the first type of PDCCH skip indication can be determined according to the value of the second type of PDCCH skip indication.
  • the determining the monitoring mode of the first type of PDCCH according to the value of the second type of PDCCH skip indication includes: if the value of the second type of wake-up indication is a ninth value , determining that the monitoring mode of the first type of PDCCH is not to monitor other PDCCHs except the first type of PDCCH within the configured duration.
  • the ninth value is 11, and when the value of the second-type PDCCH skipping indication is 11, it can be determined that the monitoring mode of the first-type PDCCH is not to monitor other than the first-type PDCCH within the configured duration. other PDCCHs.
  • the heartbeat service corresponding to the first type of PDCCH is a small packet service, the time for turning on the inactive timer is very short and will not cause a lot of power consumption.
  • FIG. 5 is a schematic structural diagram of a user equipment provided by an embodiment of the present application.
  • the user equipment includes a processor 510, a memory 520, a communication interface 530, and a or more programs 521, wherein the one or more programs 521 are stored in the memory 520 and are configured to be executed by the processor 510.
  • the programs include instructions for executing the following steps:
  • the monitoring mode of the first type of PDCCH is determined according to the first type of PDCCH skip indication; or,
  • the monitoring mode of the first type of PDCCH is determined according to the second type of PDCCH skip indication.
  • the physical layer monitoring method and related apparatus described in the embodiments of the present application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication;
  • the second type of wake-up indication determines the monitoring mode of the first type of PDCCH; or, the first type of PDCCH monitoring mode is determined according to the first type of PDCCH skipping indication; or the first type of PDCCH is determined according to the second type of PDCCH skipping indication.
  • a type of PDCCH monitoring method Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the first type of PDCCH is a PDCCH corresponding to a heartbeat service.
  • the above program includes an instruction for performing the following steps: determining the value of the first type of wake-up indication, and then The first type of wake-up indication includes one bit; if the value of the first type of wake-up indication is a first value, it is determined that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: if the value of the first type of wake-up indication is the first type of wake-up indication A value, and the first high layer parameter is the value of the first high layer parameter, determining that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: if the value of the first type of wake-up indication is the first type of wake-up indication A value, and the first high layer parameter is the value of the second high layer parameter, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: if the value of the first type of wake-up indication is the first type of wake-up indication A numerical value, and the numerical value of the first logical channel priority is greater than or equal to the first threshold, it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCC.
  • the above program includes an instruction for performing the following steps: if the value of the first type of wake-up indication is the first type of wake-up indication A numerical value, and the numerical value of the first logical channel priority is smaller than the first threshold, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: determining the value of the second type of wake-up indication, and then The second type of wake-up indication includes two bits; according to the value of the second type of wake-up indication, the monitoring mode of the first type of PDCCH is determined.
  • the above program includes an instruction for performing the following steps: if the second type of wake-up indication is used The value of the wake-up-like indication is the second value, and it is determined that the monitoring mode of the first-type PDCCH is to close the first timer and not monitor the first-type PDCCH.
  • the above program includes an instruction for performing the following steps: if the second type of wake-up indication is used
  • the value of the wake-up-like indication is a third value, and it is determined that the monitoring mode of the first-type PDCCH is to close the first timer and monitor the first-type PDCCH.
  • the above program includes an instruction for performing the following steps: if the second type of wake-up indication is used
  • the value of the wake-up-like indication is a fourth value, and it is determined that the monitoring mode of the first-type PDCCH is to open the first timer and monitor the first-type PDCCH.
  • the above program includes an instruction for performing the following steps: if the second type of wake-up indication is used The value of the class wake-up indication is the fifth value, and it is determined that the monitoring method of the first-class PDCCH is to close the first timer, monitor the first-class PDCCH, and turn on the inactive corresponding to the first-class PDCCH A timer, the inactive timer corresponding to the first type of PDCCH is different from the inactive timer corresponding to other PDCCHs except the first type of PDCCH.
  • the above-mentioned program includes an instruction for performing the following steps: determining the first-type PDCCH skipping instruction If the value of the first type PDCCH skipping indication is the sixth value, it is determined that the monitoring method of the first type PDCCH is monitoring the The first type of PDCCH.
  • the above-mentioned program includes an instruction for performing the following steps: if the first-type PDCCH skipping instruction The value indicated by the pass is the sixth value, and the second high layer parameter is the third high layer parameter value, and it is determined that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH.
  • the above-mentioned program includes an instruction for performing the following steps: if the first-type PDCCH skipping instruction The value of the over-indication is the sixth value, and the second high layer parameter is the fourth high layer parameter value, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the above-mentioned program includes an instruction for performing the following steps: if the first-type PDCCH skipping instruction If the value of the over-indication is the sixth value, and the priority of the second logical channel is greater than or equal to the second threshold, it is determined that the monitoring method of the first type of PDCCH is to monitor the first type of PDCCH.
  • the above-mentioned program includes an instruction for performing the following steps: if the first-type PDCCH skipping instruction If the value of the over-indication is the sixth value, and the priority of the second logical channel is smaller than the second threshold, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: determining the second-type PDCCH hopping
  • the second type of PDCCH skip indication includes two bits; according to the value of the second type of PDCCH skip indication, the monitoring mode of the first type of PDCCH is determined.
  • the above program includes an instruction for performing the following steps: if the The value of the second type of wake-up indication is the seventh value, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH, and the PDCCH includes the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: if the The value of the second type of wake-up indication is the eighth value, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first type of PDCCH.
  • the above program includes an instruction for performing the following steps: if the The value of the second type of wake-up indication is the ninth value, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor other PDCCHs except the first type of PDCCH within the configured duration.
  • the user equipment includes corresponding hardware structures and/or software modules for executing each function.
  • the present application can be implemented in hardware or in the form of a combination of hardware and computer software, in combination with the units and algorithm steps of each example described in the embodiments provided herein. Whether a function is performed by hardware or computer software driving hardware depends on the specific application and design constraints of the technical solution. Skilled artisans may implement the described functionality using different methods for each particular application, but such implementations should not be considered beyond the scope of this application.
  • the user equipment may be divided into functional units according to the foregoing method examples.
  • each functional unit may be divided corresponding to each function, or two or more functions may be integrated into one processing unit.
  • the above-mentioned integrated units may be implemented in the form of hardware, or may be implemented in the form of software functional units. It should be noted that the division of units in the embodiments of the present application is illustrative, and is only a logical function division, and other division methods may be used in actual implementation.
  • FIG. 6 is a block diagram of functional units of the physical layer monitoring apparatus 600 involved in the embodiment of the present application.
  • the physical layer monitoring apparatus 600 is applied to user equipment, and the apparatus 600 includes: a communication unit 602 and a processing unit 601, wherein,
  • the processing unit 601 is configured to determine the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication; or, to determine the monitoring mode of the first type of PDCCH according to the second type of wake-up indication;
  • the first type of PDCCH skip indication determines the monitoring manner of the first type of PDCCH; or, the first type of PDCCH monitoring manner is determined according to the second type of PDCCH skip indication.
  • the physical layer monitoring method and related apparatus described in the embodiments of the present application are applied to the user equipment, and the user equipment determines the monitoring mode of the first type of physical downlink control channel PDCCH according to the first type of wake-up indication;
  • the second type of wake-up indication determines the monitoring mode of the first type of PDCCH; or, the first type of PDCCH monitoring mode is determined according to the first type of PDCCH skipping indication; or the first type of PDCCH is determined according to the second type of PDCCH skipping indication.
  • a type of PDCCH monitoring method Since the PDCCH corresponding to the wake-up indication and the heartbeat service coexist in the system, the PDCCH skipping indication and the PDCCH corresponding to the heartbeat service also coexist in the system.
  • the first type of PDCCH is a PDCCH corresponding to a heartbeat service.
  • the processing unit 601 is specifically configured to: determine the value of the first type of wake-up indication, the first type of wake-up indication One type of wake-up indication includes one bit;
  • the monitoring method of the first-type PDCCH is monitoring the first-type PDCCH.
  • the processing unit 601 is specifically configured to: if the value of the first type of wake-up indication is the first value , and the first high layer parameter is the value of the first high layer parameter, and it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the value of the first type of wake-up indication is the first value , and the first high layer parameter is the value of the second high layer parameter, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the value of the first type of wake-up indication is the first value , and the value of the priority of the first logical channel is greater than or equal to the first threshold, determining that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCC.
  • the processing unit 601 is specifically configured to: if the value of the first type of wake-up indication is the first value , and the value of the priority of the first logical channel is less than the first threshold, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: determine the value of the second type of wake-up indication, where The second type of wake-up indication includes two bits; according to the value of the second type of wake-up indication, the monitoring mode of the first type of PDCCH is determined.
  • the processing unit 601 is specifically configured to: if the second type of wake-up The indicated value is the second value, and it is determined that the monitoring mode of the first type of PDCCH is to close the first timer and not monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the second type of wake-up The indicated value is a third value, and it is determined that the monitoring method of the first type of PDCCH is to close the first timer and monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the second type of wake-up The indicated value is a fourth value, and it is determined that the monitoring mode of the first type of PDCCH is to open the first timer and monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the second type of wake-up The indicated value is the fifth value, and it is determined that the monitoring method of the first type of PDCCH is to close the first timer, monitor the first type of PDCCH, and open the inactive timer corresponding to the first type of PDCCH , the inactivation timer corresponding to the PDCCH of the first type is different from the inactivation timer corresponding to other PDCCHs except the PDCCH of the first type.
  • the processing unit 601 is specifically configured to: determine the first type of PDCCH skip indication The value of the first type of PDCCH skipping indication includes one bit; if the value of the first type of PDCCH skipping indication is the sixth value, it is determined that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH. Class PDCCH.
  • the processing unit 601 is specifically configured to: if the first type of PDCCH skip indication The value of is the sixth value, and the second high layer parameter is the third high layer parameter value, and it is determined that the monitoring mode of the first type of PDCCH is monitoring the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the first type of PDCCH skip indication The value of is the sixth value, and the second high layer parameter is the fourth high layer parameter value, and it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the first type of PDCCH skip indication The value of is the sixth value, and the priority of the second logical channel is greater than or equal to the second threshold, it is determined that the monitoring method of the first type of PDCCH is monitoring the first type of PDCCH.
  • the processing unit 601 is specifically configured to: if the first type of PDCCH skip indication The value of is the sixth value, and the priority of the second logical channel is less than the second threshold, it is determined that the monitoring mode of the first type of PDCCH is not to monitor the first type of PDCCH.
  • the processing unit 601 is specifically configured to: determine the second type of PDCCH skip indication
  • the value of the second type of PDCCH skipping indication includes two bits; according to the value of the second type of PDCCH skipping indication, the monitoring mode of the first type of PDCCH is determined.
  • the processing unit 601 is specifically configured to: if the second type of PDCCH is skipped The value of the wake-up-like indication is a seventh value, and it is determined that the monitoring mode of the first-type PDCCH is not to monitor the PDCCH, and the PDCCH includes the first-type PDCCH.
  • the processing unit 601 is specifically configured to: if the second type of PDCCH is skipped The value of the wake-up-like indication is the eighth value, and it is determined that the monitoring mode of the first-type PDCCH is not to monitor the PDCCH within the configured duration, and the PDCCH includes the first-type PDCCH.
  • the processing unit 601 is specifically configured to: if the second type of PDCCH is skipped The value of the wake-up-like indication is the ninth value, and it is determined that the monitoring mode of the first-type PDCCH is not to monitor other PDCCHs except the first-type PDCCH within the configured duration.
  • the electronic device may further include a storage unit 603, the processing unit 601 and the communication unit 602 may be a controller or a processor, and the storage unit 603 may be a memory.
  • each program module of the physical layer monitoring device in this embodiment can be specifically implemented according to the methods in the above method embodiments, and the specific implementation process can refer to the relevant descriptions of the above method embodiments, which will not be repeated here. .
  • Embodiments of the present application further provide a computer storage medium, wherein the computer storage medium stores a computer program for electronic data exchange, and the computer program causes the computer to execute part or all of the steps of any method described in the above method embodiments , the above computer includes user equipment.
  • Embodiments of the present application further provide a computer program product, where the computer program product includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute any one of the method embodiments described above. some or all of the steps of the method.
  • the computer program product may be a software installation package, and the computer includes user equipment.
  • the disclosed apparatus may be implemented in other manners.
  • the device embodiments described above are only illustrative.
  • the division of the above-mentioned units is only a logical function division.
  • multiple units or components may be combined or integrated. to another system, or some features can be ignored, or not implemented.
  • the shown or discussed mutual coupling or direct coupling or communication connection may be through some interfaces, indirect coupling or communication connection of devices or units, and may be in electrical or other forms.
  • the units described above as separate components may or may not be physically separated, and components shown as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution in this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units may be implemented in the form of hardware, or may be implemented in the form of software functional units.
  • the above-mentioned integrated units if implemented in the form of software functional units and sold or used as independent products, may be stored in a computer-readable memory.
  • the technical solution of the present application can be embodied in the form of a software product in essence, or the part that contributes to the prior art, or all or part of the technical solution, and the computer software product is stored in a memory.
  • a computer device which may be a personal computer, user equipment, or network device, etc.
  • the aforementioned memory includes: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk and other media that can store program codes.

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Abstract

本申请实施例公开了一种物理层监听方法及相关装置,应用于用户设备,所述方法包括:根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。采用本申请实施例有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。

Description

物理层监听方法及相关装置 技术领域
本申请涉及通信技术领域,具体涉及一种物理层监听方法及相关装置。
背景技术
心跳业务一般是指客户端向服务器端发送应用层消息,用以告诉服务器当前服务是激活的。一般来说,心跳业务是一种长周期的小包业务,长周期是指消息发送可以是几分钟一次,小包是指一次发送的数据包较小,比如几百或几千字节。在一些物联网或可穿戴设备场景中,出于节能和典型应用需求的考虑,心跳业务是一种较为常见的业务。由于心跳业务是长周期的小包业务,因此用户设备不需要发送调度申请来向网络申请上行授权,用户设备在配置的PDCCH监听时机上监听PDCCH获得上行授权即可,这样可以省了调度申请的操作,使得用户设备更省电。
在5G新无线电的版本16(Release 16)中,引入了基于下行控制信息格式2-6(Downlink Control Information format 2-6,DCI format 2-6),用户设备可以通过高层参数被配置1比特的唤醒指示在DCI format 2-6中,1比特的唤醒指示用于指示用户设备在下一个非连续接收循环中是否启动(start)打开持续时间定时器(On Duration Timer,ODT)。打开持续时间定时器的工作时间是激活时间(Active Time,AT)的一种,在激活时间内,用户设备需要监听所有的有效的PDCCH,即MAC实体(MAC Entity)控制物理层监听所有的有效PDCCH。
由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,所以唤醒指示是否对信条业务对应的PDCCH产生影响,以及如何对心跳业务对应的PDCCH产生影响,是亟需解决的热点问题。
此外,由于PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,所以PDCCH跳过指示是否对心跳业务对应的PDCCH产生影响,以及如何对心跳业务对应的PDCCH产生影响,也是亟需解决的特点问题。
发明内容
本申请实施例提供了一种物理层监听方法及相关装置,能够解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
第一方面,本申请实施例提供一种物理层监听方法,应用于用户设备,所述方法包括:
根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,
根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,
根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,
根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
第二方面,本申请实施例提供一种物理层监听装置,所述物理层监听包括处理单元和通信单元,其中,
所述处理单元,用于根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
第三方面,本申请实施例提供了一种用户设备,包括处理器、存储器、通信接口以及一个或多个程序,其中,上述一个或多个程序被存储在上述存储器中,并且被配置由上述处理器执行,上述程序包括用于执行本申请实施例第一方面中的步骤的指令。
第四方面,本申请实施例提供了一种计算机可读存储介质,其中,上述计算机可读存储介质存储用于电子数据交换的计算机程序,其中,上述计算机程序使得计算机执行如本申请实施例第一方面中所描述的部分或全部步骤。
第五方面,本申请实施例提供了一种计算机程序产品,其中,上述计算机程序产品包括存储了计算机程序的非瞬时性计算机可读存储介质,上述计算机程序可操作来使计算机执行如本申请实施例第一方面中所描述的部分或全部步骤。该计算机程序产品可以为一个软件安装包。
实施本申请实施例,具备如下有益效果:
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的一种物理层监听方法的流程示意图;
图2是本申请实施例提供的另一种物理层监听方法的流程示意图;
图3是本申请实施例提供的另一种物理层监听方法的流程示意图;
图4是本申请实施例提供的另一种物理层监听方法的流程示意图;
图5是本申请实施例提供的一种用户设备的结构示意图;
图6是本申请实施例提供的一种物理层监听装置的功能单元组成框图。
具体实施方式
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地 还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其他步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
为了使本技术领域的人员更好地理解本申请方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例所描述用户设备可以包括智能手机(如Android手机、iOS手机、Windows Phone手机等)、平板电脑、掌上电脑、笔记本电脑、视频矩阵、监控平台、移动互联网设备(MID,Mobile Internet Devices)或穿戴式设备等,上述仅是举例,而非穷举,包含但不限于上述装置,当然,上述用户设备还可以为用户设备,例如,云用户设备。
下面对本申请实施例进行详细介绍。
图1是本申请实施例提供的一种物理层监听方法的流程示意图,所述物理层监听方法应用于用户设备。如图所示,本物理层监听方法包括:
S101、根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式,所述第一类PDCCH为心跳业务对应的PDCCH。
其中,基站可以为心跳业务配置一个专门的PDCCH。PDCCH的配置一般通过搜索空间集来配置,因此实际上,基站可以为心跳业务配置一个搜索空间集,而该搜索空间集内的PDCCH候选即可以看作所述第一类PDCCH。这里所述第一类PDCCH也可以等价于第一类搜索空间集。
其中,一个PDCCH或搜索空间集属于心跳业务可以是通过搜索空间集的高层参数内的一个参数来表示,即用一个信息元素来标识。也就是说,心跳业务对应的PDCCH(搜索空间集)和其他PDCCH(搜索空间集)的区分可以 是通过搜索空间集的高层参数内的一个参数。本申请中将心跳业务对应的PDCCH(搜索空间集)划分为第一类PDCCH(搜索空间集)。
其中,第一类唤醒指示为DCI format 2-6中的唤醒指示。根据第一类唤醒指示确定第一类PDCCH的监听方式,监听方式包括监听所述第一类PDCCH和不监听所述第一类PDCCH。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:确定所述第一类唤醒指示的数值,所述第一类唤醒指示包括一个比特;若所述第一类唤醒指示的数值为第一数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
其中,第一类唤醒指示包括1个比特,第一类唤醒指示中的1个比特可以不作用于第一类PDCCH。现有技术中,如果第一类唤醒指示为0,用户设备将继续监听第一类PDCCH,此时用户设备将不开启打开持续时间定时器,也就不会监听对应时间内的所有有效的PDCCH,但是考虑到第一类PDCCH对应的心跳业务是长周期的小包业务,需要区别对待,否则,当用户设备只需要在激活时间内监听第一类PDCCH,基站仍然需要打开持续时间定时器,让用户设备在激活时间内监听除了第一类PDCCH外的其他PDCCH,反而耗电。如果第一类唤醒指示为开启打开持续时间定时器,则用户设备将监听第一类PDCCH,也将监听除了第一类PDCCH外的其他PDCCH。
其中,第一数值为0,表示用户设备接收到的第一类唤醒指示的值为0,第一类唤醒指示的数值为0时,则可以确定第一类PDCCH的监听方式为监听第一类PDCCH,此时不启动打开持续时间定时器,也就不监听除了第一类PDCCH之外的其他PDCCH。
可见,本示例中,考虑到第一类PDCCH对应的心跳业务是长周期的小包业务,需要区别对待,否则,当用户设备只需要在激活时间内监听第一类PDCCH,基站仍然需要开启打开持续时间定时器,让用户设备在激活时间内监听除了第一类PDCCH外的其他PDCCH,反而耗电,因此,如果唤醒指示为第一数值0时,用户设备将监听第一类PDCCH,此时不启动打开持续时间定时器,也就不监听除了第一类PDCCH之外的其他PDCCH。
在一种可能的示例中,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第一高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
其中,第一类唤醒指示包括一个比特位,第一数值为0。在第一类唤醒指示为0时,用户设备是否需要监听第一类PDCCH取决于第一高层参数,即取决于半静态的信令。第一类唤醒指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于半静态的信令,第一高层参数包括两个数值,分别为第一高层参数值和第二高层参数值,第一高层参数值和第二高层参数值分别对应监听和不监听,这里可以把第一高层参数理解为一个开关,包括开或者关两种状态。
其中,当第一高层参数为第一高层参数值时,即可确定第一类PDCCH的监听方式为监听所述第一类PDCCH。
可见,本示例中,在第一类唤醒指示的数值为第一数值时,根据第一类PDCCH对应的第一高层参数的数值来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第二高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
其中,第一类唤醒指示包括一个比特位,第一数值为0。在第一类唤醒指示为0时,用户设备是否需要监听第一类PDCCH取决于第一高层参数,即取决于半静态的信令。第一类唤醒指示是动态信令,在接收到动态信令之后,用 户设备的行为仍然取决于半静态的信令,第一高层参数包括两个数值,分别为第一高层参数值和第二高层参数值,第一高层参数值和第二高层参数值分别对应监听和不监听,这里可以把第一高层参数理解为一个开关,包括开或者关两种状态。
其中,当第一高层参数为第二高层参数值时,即可确定第一类PDCCH的监听方式为不监听所述第一类PDCCH。
可见,本示例中,在第一类唤醒指示的数值为第一数值时,根据第一类PDCCH对应的第一高层参数的数值来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值大于或等于第一阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCC。
其中,第一类唤醒指示包括一个比特位,第一数值为0。在第一类唤醒指示为0时,用户设备是否需要监听第一类PDCCH取决于第一逻辑信道优先级。第一类唤醒指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于第一类PDCCH所对应的第一逻辑信道优先级。如果第一逻辑信道优先级大于等于第一阈值,则第一类PDCCH的监听方式为监听所述第一类PDCCH。
可见,本示例中,在第一类唤醒指示的数值为第一数值时,根据第一类PDCCH对应的第一逻辑信道优先级来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值小于第一阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
其中,第一类唤醒指示包括一个比特位,第一数值为0。在第一类唤醒指示为0时,用户设备是否需要监听第一类PDCCH取决于第一逻辑信道优先级。第一类唤醒指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于第一类PDCCH所对应的第一逻辑信道优先级。如果第一逻辑信道优先级 小于第一阈值,则第一类PDCCH的监听方式为不监听所述第一类PDCCH。
可见,本示例中,在第一类唤醒指示的数值为第一数值时,根据第一类PDCCH对应的第一逻辑信道优先级来确定第一类PDCCH的监听方式,更具准确性。
与上述图1所示的实施例一致地,请参阅图2,图2是本申请实施例提供的一种物理层监听方法的流程示意图,所述物理层监听方法应用于用户设备。如图所示,本物理层监听方法包括:
S201、根据第二类唤醒指示确定所述第一类PDCCH的监听方式,所述第一类PDCCH为心跳业务对应的PDCCH。
其中,基站可以为心跳业务配置一个专门的PDCCH。PDCCH的配置一般通过搜索空间集来配置,因此实际上,基站可以为心跳业务配置一个搜索空间集,而该搜索空间集内的PDCCH候选即可以看作所述第一类PDCCH。这里所述第一类PDCCH也可以等价于第一类搜索空间集。
其中,一个PDCCH或搜索空间集属于心跳业务可以是通过搜索空间集的高层参数内的一个参数来表示,即用一个信息元素来标识。也就是说,心跳业务对应的PDCCH(搜索空间集)和其他PDCCH(搜索空间集)的区分可以是通过搜索空间集的高层参数内的一个参数。本申请中将心跳业务对应的PDCCH(搜索空间)划分为第一类PDCCH(搜索空间集)。
其中,第二类唤醒指示为DCI format 2-6中的唤醒指示对一个的一比特加上额外的一比特,该额外的一比特可以是在DCI format 2-6中的唤醒指示对一个的一比特之前的一比特或者之后的一比特,且为临近的一比特。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第二类唤醒指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第二数值,确定所述第一类PDCCH的监听方式为关闭第一定时器,且不监听所述第一类PDCCH。
其中,第二类唤醒指示包括两个比特,一共4个码点,因此可以包括4种情况,分别是00、01、11和10,00、01、11和10可分别对应一种监听方式,因此,根据第二类唤醒指示可以确定第一类PDCCH的四种监听方式。先确定第二类唤醒指示的数值,再根据第二类唤醒指示的数值,确定第一类PDCCH的监听方式。
可见,本示例中,第二类唤醒指示包括DCI format 2-6中的唤醒指示对一个的一比特加上额外的一比特,从而可以根据第二类唤醒指示的数值确定是否打开持续时间定时器以及确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第二数值,确定所述第一类PDCCH的监听方式为关闭第一定时器,且不监听所述第一类PDCCH。
其中,第二数值为00,第一定时器为持续时间定时器,当第二类唤醒指示的数值为00时,可确定第一类PDCCH的监听方式为关闭打开持续时间定时器,且不监听第一类PDCCH。
可见,本示例中,第二类唤醒指示包括DCI format 2-6中的唤醒指示对一个的一比特加上额外的一比特,从而可以根据第二类唤醒指示的数值确定是否打开持续时间定时器以及确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第三数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH。
其中,第三数值为01,第一定时器为持续时间定时器,当第二类唤醒指示的数值为01时,可确定第一类PDCCH的监听方式为关闭打开持续时间定时器,且监听第一类PDCCH。
可见,本示例中,第二类唤醒指示包括DCI format 2-6中的唤醒指示对一个的一比特加上额外的一比特,从而可以根据第二类唤醒指示的数值确定是否打开持续时间定时器以及确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第四数值,确定所述第一类PDCCH的监听方式为打开所述第一定时器,且监听所述第一类PDCCH。
其中,第四数值为01,第一定时器为持续时间定时器,当第二类唤醒指示的数值为01时,可确定第一类PDCCH的监听方式为打开持续时间定时器,且监听第一类PDCCH。
可见,本示例中,第二类唤醒指示包括DCI format 2-6中的唤醒指示对一个的一比特加上额外的一比特,从而可以根据第二类唤醒指示的数值确定是否打开持续时间定时器以及确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第五数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH,并打开所述第一类PDCCH对应的非激活定时器,所述第一类PDCCH对应的非激活定时器不同于除所述第一类PDCCH之外的其他PDCCH所对应的非激活定时器。
其中,第五数值为10,第一定时器为持续时间定时器,当第二类唤醒指示的数值为00时,可确定第一类PDCCH的监听方式为关闭打开持续时间定时器,且监听第一类PDCCH,同时,打开第一类PDCCH对应的非激活定时器,第一类PDCCH对应的非激活定时器不同于除所述第一类PDCCH之外的其他PDCCH所对应的非激活定时器。
可见,本示例中,由于第一类PDCCH对应的心跳业务是小包业务,因此打开非激活定时器的时间是很短的,不会造成很大的功耗。
与上述图1、图2所示的实施例一致地,请参阅图3,图3是本申请实施例提供的一种物理层监听方法的流程示意图。如图所示,本物理层监听方法包 括:
S301、根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,所述第一类PDCCH为心跳业务对应的PDCCH。
其中,基站可以为心跳业务配置一个专门的PDCCH。PDCCH的配置一般通过搜索空间集来配置,因此实际上,基站可以为心跳业务配置一个搜索空间集,而该搜索空间集内的PDCCH候选即可以看作所述第一类PDCCH。这里所述第一类PDCCH也可以等价于第一类搜索空间集。
其中,一个PDCCH或搜索空间集属于心跳业务可以是通过搜索空间集的高层参数内的一个参数来表示,即用一个信息元素来标识。也就是说,心跳业务对应的PDCCH(搜索空间集)和其他PDCCH(搜索空间集)的区分可以是通过搜索空间集的高层参数内的一个参数。本申请中将心跳业务对应的PDCCH(搜索空间)划分为第一类PDCCH(搜索空间集)。
其中,第一类PDCCH跳过指示可以为调度发射配置指示DCI中的PDCCH跳过指示。根据第一类PDCCH跳过指示确定第一类PDCCH的监听方式,监听方式包括监听所述第一类PDCCH和不监听所述第一类PDCCH。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:确定所述第一类PDCCH跳过指示的数值,所述第一类PDCCH跳过指示包括一个比特位;若所述第一类PDCCH跳过指示的数值为第六数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
其中,第一类PDCCH跳过指示包括一个比特,第一类PDCCH跳过指示中的1个比特可以不作用于第一类PDCCH的监听。现有技术中,如果第一类 PDCCH跳过指示为1,则用户设备将继续监听第一类PDCCH,一般来说,如果第一类PDCCH跳过指示为1,则用户设备在一个持续时间(duration)内或一个定时器的活动时间内不监听PDCCH(半静态配置的一组搜索空间集),但是,考虑到第一类PDCCH对应的业务是长周期的小包业务,需要区别对待,否则,当用户设备只需要在该持续时间内或定时器内监听第一类PDCCH,基站仍然不能将第一类PDCCH跳过指示设置为1,反而耗电。相当于如果第一类PDCCH跳过指示为跳过PDCCH监听,用户设备将继续监听第一类PDCCH。
其中,第一类PDCCH跳过指示的数值为第六数值,第六数值为0或者1,标准待定。当用户设备接收到第一类PDCCH跳过指示的值为0或者1时,则跳过一段时间内容的除了第一类PDCCH外的PDCCH的监听,或者,修改除第一类PDCCH外的PDCCH对一个搜索空间集的参数。
可见,本示例中,在第一类PDCCH跳过指示的数值为第六数值时,根据第六数值来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第三高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
其中,第一类PDCCH跳过指示包括一个比特位,第六数值为0或者1。在第一类PDCCH跳过指示为0或者1时,用户设备是否需要监听第一类PDCCH取决于第二高层参数,即取决于半静态的信令。第一类PDCCH跳过指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于半静态的信令,第二高层参数包括两个数值,分别为第三高层参数值和第四高层参数值,第三高层参数值和第四高层参数值分别对应监听和不监听,这里可以把第二高层参数理解为一个开关,包括开或者关两种状态。
其中,当第二高层参数为第三高层参数值时,即可确定第一类PDCCH的监听方式为监听所述第一类PDCCH。
可见,本示例中,在第一类PDCCH跳过指示的数值为第六数值时,根据第二高层参数的数值来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类PDCCH跳过指示确定所述第一类 PDCCH的监听方式,包括:若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第四高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
其中,第一类PDCCH跳过指示包括一个比特位,第一数值为0或者1。在第一类PDCCH跳过指示为0或者1时,用户设备是否需要监听第一类PDCCH取决于第二高层参数,即取决于半静态的信令。第一类唤醒指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于半静态的信令,第二高层参数包括两个数值,分别为第三高层参数值和第四高层参数值,第三高层参数值和第四高层参数值分别对应监听和不监听,这里可以把第二高层参数理解为一个开关,包括开或者关两种状态。
其中,当第二高层参数为第四高层参数值时,即可确定第一类PDCCH的监听方式为不监听所述第一类PDCCH。
可见,本示例中,在第一类PDCCH跳过指示的数值为第六数值时,根据第二高层参数的数值来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级大于或等于第二阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
其中,第一类PDCCH跳过指示包括一个比特位,第一数值为0或者1,在第一类PDCCH跳过指示为0或者时,用户设备是否需要监听第一类PDCCH取决于第二逻辑信道优先级。第一类PDCCH跳过指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于第一类PDCCH所对应的第二逻辑信道优先级。如果第二逻辑信道优先级大于等于第二阈值,则第一类PDCCH的监听方式为监听所述第一类PDCCH。
可见,本示例中,在第一类PDCCH跳过指示的数值为第六数值时,根据第二逻辑信道优先级来确定第一类PDCCH的监听方式,更具准确性。
在一种可能的示例中,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级小于第二阈值,确定所述第一类PDCCH的监听方 式为不监听所述第一类PDCCH。
其中,第一类PDCCH跳过指示包括一个比特位,第一数值为0或者1,在第一类PDCCH跳过指示为0或者时,用户设备是否需要监听第一类PDCCH取决于第二逻辑信道优先级。第一类PDCCH跳过指示是动态信令,在接收到动态信令之后,用户设备的行为仍然取决于第一类PDCCH所对应的第二逻辑信道优先级。如果第二逻辑信道优先级小于第二阈值,则第一类PDCCH的监听方式为不监听所述第一类PDCCH。
可见,本示例中,在第一类PDCCH跳过指示的数值为第六数值时,根据第二逻辑信道优先级来确定第一类PDCCH的监听方式,更具准确性。
与上述图1、图2、图3所示的实施例一致地,请参阅图4,图4是本申请实施例提供的一种物理层监听方法的流程示意图。如图所示,本物理层监听方法包括:
S401、根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式,所述第一类PDCCH为心跳业务对应的PDCCH。
其中,基站可以为心跳业务配置一个专门的PDCCH。PDCCH的配置一般通过搜索空间集来配置,因此实际上,基站可以为心跳业务配置一个搜索空间集,而该搜索空间集内的PDCCH候选即可以看作所述第一类PDCCH。这里所述第一类PDCCH也可以等价于第一类搜索空间集。
其中,一个PDCCH或搜索空间集属于心跳业务可以是通过搜索空间集的高层参数内的一个参数来表示,即用一个信息元素来标识。也就是说,心跳业务对应的PDCCH(搜索空间集)和其他PDCCH(搜索空间集)的区分可以是通过搜索空间集的高层参数内的一个参数。本申请中将心跳业务对应的PDCCH(搜索空间)划分为第一类PDCCH(搜索空间集)。
其中,第一类PDCCH跳过指示可以为调度发射配置指示DCI中的PDCCH跳过指示对应的一比特加上额外的一比特,该额外的一比特可以是在调度DCI中的PDCCH跳过指示对应的一比特之前或者之后的一比特,且为临近的一比特。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于 用户设备,用户设备根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类PDCCH跳过指示的数值为第七数值,确定所述第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
其中,第二类唤醒指示包括两个比特,两个比特对应的数值可能是00,或者01,或者11,或者10。先确定第二类唤醒指示的数值,再根据第二类唤醒指示的数值,确定第一类PDCCH的监听方式。
可见,本示例中,第二类PDCCH跳过指示为调度发射配置指示DCI中的PDCCH跳过指示对应的一比特加上额外的一比特,从而可以根据第二类PDCCH跳过指示的数值确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第七数值,确定所述第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
其中,第七数值为00,当第二类PDCCH跳过指示的数值为00时,可确定第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
可见,本示例中,第二类PDCCH跳过指示为调度发射配置指示DCI中的PDCCH跳过指示对应的一比特加上额外的一比特,从而可以根据第二类PDCCH跳过指示的数值确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第八数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听 PDCCH,所述PDCCH包括所述第一类PDCCH。
其中,第八数值为01,当第二类PDCCH跳过指示的数值为01时,可确定第一类PDCCH的监听方式为在配置的持续时间内,不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
可见,本示例中,第二类PDCCH跳过指示为调度发射配置指示DCI中的PDCCH跳过指示对应的一比特加上额外的一比特,从而可以根据第二类PDCCH跳过指示的数值确定第一类PDCCH的监听方式。
在一种可能的示例中,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:若所述第二类唤醒指示的数值为第九数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听除所述第一类PDCCH之外的其他PDCCH。
其中,第九数值为11,当第二类PDCCH跳过指示的数值为11时,可确定第一类PDCCH的监听方式为在配置的持续时间内,不监听除所述第一类PDCCH之外其他的PDCCH。
可见,本示例中,由于第一类PDCCH对应的心跳业务是小包业务,因此打开非激活定时器的时间是很短的,不会造成很大的功耗。
与上述实施例一致地,请参阅图5,图5是本申请实施例提供的一种用户设备的结构示意图,如图所示,该用户设备包括处理器510、存储器520、通信接口530以及一个或多个程序521,其中,上述一个或多个程序521被存储在上述存储器520中,并且被配置由上述处理器510执行,本申请实施例中,上述程序包括用于执行以下步骤的指令:
根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,
根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,
根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,
根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第一类唤醒指示确定第一类物理下行控制信道 PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述第一类PDCCH为心跳业务对应的PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:确定所述第一类唤醒指示的数值,所述第一类唤醒指示包括一个比特;若所述第一类唤醒指示的数值为第一数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第一高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第二高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值大于或等于第一阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCC。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值小于第一阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在根据第二类唤醒指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:确定所述第二类唤醒指示的数值,所述第二类唤醒指示包括两个比特;根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第二数值,确定所述第一类PDCCH的监听方式为关闭第一定时器,且不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第三数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第四数值,确定所述第一类PDCCH的监听方式为打开所述第一定时器,且监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第五数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH,并打开所述第一类PDCCH对应的非激活定时器,所述第一类PDCCH对应的非激活定时器不同于除所述第一类PDCCH之外的其他PDCCH所对应的非激活定时器。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:确定所述第一类PDCCH跳过指示的数值,所述第一类PDCCH跳过指示包括一个比特位;若所述第一类PDCCH跳过指示的数值为第六数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述 第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第三高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第四高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级大于或等于第二阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级小于第二阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:确定所述第二类PDCCH跳过指示的数值,所述第二类PDCCH跳过指示包括两个比特位;根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第七数值,确定所述第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第八数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值, 确定所述第一类PDCCH的监听方式方面,上述程序包括用于执行以下步骤的指令:若所述第二类唤醒指示的数值为第九数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听除所述第一类PDCCH之外的其他PDCCH。
上述主要从方法侧执行过程的角度对本申请实施例的方案进行了介绍。可以理解的是,用户设备为了实现上述功能,其包含了执行各个功能相应的硬件结构和/或软件模块。本领域技术人员应该很容易意识到,结合本文中所提供的实施例描述的各示例的单元及算法步骤,本申请能够以硬件或硬件和计算机软件的结合形式来实现。某个功能究竟以硬件还是计算机软件驱动硬件的方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
本申请实施例可以根据上述方法示例对用户设备进行功能单元的划分,例如,可以对应各个功能划分各个功能单元,也可以将两个或两个以上的功能集成在一个处理单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。需要说明的是,本申请实施例中对单元的划分是示意性的,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式。图6是本申请实施例中所涉及的物理层监听装置600的功能单元组成框图。该物理层监听装置600,应用于用户设备,所述装置600包括:通信单元602、和处理单元601,其中,
所述处理单元601,用于根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
可以看出,本申请实施例中所描述的物理层监听方法及相关装置,应用于用户设备,用户设备根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的 监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。由于唤醒指示和心跳业务对应的PDCCH是共存在系统中的,PDCCH跳过指示和心跳业务对应的PDCCH也是共存在系统中的,通过将心跳业务对应的PDCCH归类为第一类PDCCH,并进一步确定第一类PDCCH的监听方式,有助于解决唤醒指示和心跳业务对应的PDCCH的共存性问题,以及PDCCH跳过指示和心跳业务对应的PDCCH的共存性问题。
在一种可能的示例中,所述第一类PDCCH为心跳业务对应的PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,所述处理单元601具体用于:确定所述第一类唤醒指示的数值,所述第一类唤醒指示包括一个比特;
若所述第一类唤醒指示的数值为第一数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第一高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第二高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值大于或等于第一阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCC。
在一种可能的示例中,在所述根据第一类唤醒指示确定第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值小于第一阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第二类唤醒指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:确定所述第二类唤醒指示的数值,所述第二类唤醒指示包括两个比特;根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第二数值,确定所述第一类PDCCH的监听方式为关闭第一定时器,且不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第三数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第四数值,确定所述第一类PDCCH的监听方式为打开所述第一定时器,且监听所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第五数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH,并打开所述第一类PDCCH对应的非激活定时器,所述第一类PDCCH对应的非激活定时器不同于除所述第一类PDCCH之外的其他PDCCH所对应的非激活定时器。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:确定所述第一类PDCCH跳过指示的数值,所述第一类PDCCH跳过指示包括一个比特位;若所述第一类PDCCH跳过指示的数值为第六数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类 PDCCH跳过指示的数值为第六数值,且第二高层参数为第三高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第四高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级大于或等于第二阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级小于第二阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
在一种可能的示例中,在所述根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:确定所述第二类PDCCH跳过指示的数值,所述第二类PDCCH跳过指示包括两个比特位;根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第七数值,确定所述第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第八数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
在一种可能的示例中,在所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式方面,所述处理单元601具体用于:若所述第二类唤醒指示的数值为第九数值,确定所述第一类PDCCH的监听方式为 在配置的持续时间内不监听除所述第一类PDCCH之外的其他PDCCH。
其中,所述电子设备还可包括存储单元603,处理单元601和通信单元602可以是控制器或处理器,存储单元603可以是存储器。
可以理解的是,本实施例的物理层监听装置的各程序模块的功能可根据上述方法实施例中的方法具体实现,其具体实现过程可以参照上述方法实施例的相关描述,此处不再赘述。
本申请实施例还提供一种计算机存储介质,其中,该计算机存储介质存储用于电子数据交换的计算机程序,该计算机程序使得计算机执行如上述方法实施例中记载的任一方法的部分或全部步骤,上述计算机包括用户设备。
本申请实施例还提供一种计算机程序产品,上述计算机程序产品包括存储了计算机程序的非瞬时性计算机可读存储介质,上述计算机程序可操作来使计算机执行如上述方法实施例中记载的任一方法的部分或全部步骤。该计算机程序产品可以为一个软件安装包,上述计算机包括用户设备。
需要说明的是,对于前述的各方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置,可通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如上述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性或其它的形式。
上述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为 单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
上述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储器中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或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器中,包括若干指令用以使得一台计算机设备(可为个人计算机、用户设备或者网络设备等)执行本申请各个实施例上述方法的全部或部分步骤。而前述的存储器包括:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储器中,存储器可以包括:闪存盘、只读存储器(英文:Read-Only Memory,简称:ROM)、随机存取器(英文:Random Access Memory,简称:RAM)、磁盘或光盘等。
以上对本申请实施例进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (26)

  1. 一种物理层监听方法,其特征在于,应用于用户设备,所述方法包括:
    根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,
    根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,
    根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,
    根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
  2. 根据权利要求1所述的方法,其特征在于,所述第一类PDCCH为心跳业务对应的PDCCH。
  3. 根据权利要求1所述的方法,其特征在于,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:
    确定所述第一类唤醒指示的数值,所述第一类唤醒指示包括一个比特;
    若所述第一类唤醒指示的数值为第一数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
  4. 根据权利要求1所述的方法,其特征在于,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:
    若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第一高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
  5. 根据权利要求1所述的方法,其特征在于,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:
    若所述第一类唤醒指示的数值为第一数值,且第一高层参数为第二高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
  6. 根据权利要求1所述的方法,其特征在于,所述根据第一类唤醒指示确定第一类PDCCH的监听方式,包括:
    若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值大于或等于第一阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCC。
  7. 根据权利要求1所述的方法,其特征在于,所述根据第一类唤醒指示 确定第一类PDCCH的监听方式,包括:
    若所述第一类唤醒指示的数值为第一数值,且第一逻辑信道优先级的数值小于第一阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
  8. 根据权利要求1所述的方法,其特征在于,所述根据第二类唤醒指示确定所述第一类PDCCH的监听方式,包括:
    确定所述第二类唤醒指示的数值,所述第二类唤醒指示包括两个比特;
    根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式。
  9. 根据权利要求8所述的方法,其特征在于,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第二数值,确定所述第一类PDCCH的监听方式为关闭第一定时器,且不监听所述第一类PDCCH。
  10. 根据权利要求8所述的方法,其特征在于,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第三数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH。
  11. 根据权利要求8所述的方法,其特征在于,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第四数值,确定所述第一类PDCCH的监听方式为打开所述第一定时器,且监听所述第一类PDCCH。
  12. 根据权利要求8所述的方法,其特征在于,所述根据所述第二类唤醒指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第五数值,确定所述第一类PDCCH的监听方式为关闭所述第一定时器,且监听所述第一类PDCCH,并打开所述第一类PDCCH对应的非激活定时器,所述第一类PDCCH对应的非激活定时器不同于除所述第一类PDCCH之外的其他PDCCH所对应的非激活定时器。
  13. 根据权利要求1所述的方法,其特征在于,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    确定所述第一类PDCCH跳过指示的数值,所述第一类PDCCH跳过指示 包括一个比特位;
    若所述第一类PDCCH跳过指示的数值为第六数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
  14. 根据权利要求1所述的方法,其特征在于,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第三高层参数值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
  15. 根据权利要求1所述的方法,其特征在于,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    若所述第一类PDCCH跳过指示的数值为第六数值,且第二高层参数为第四高层参数值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
  16. 根据权利要求1所述的方法,其特征在于,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级大于或等于第二阈值,确定所述第一类PDCCH的监听方式为监听所述第一类PDCCH。
  17. 根据权利要求1所述的方法,其特征在于,所述根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    若所述第一类PDCCH跳过指示的数值为第六数值,且第二逻辑信道优先级小于第二阈值,确定所述第一类PDCCH的监听方式为不监听所述第一类PDCCH。
  18. 根据权利要求1所述的方法,其特征在于,所述根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式,包括:
    确定所述第二类PDCCH跳过指示的数值,所述第二类PDCCH跳过指示包括两个比特位;
    根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式。
  19. 根据权利要求18所述的方法,其特征在于,所述根据所述第二类 PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第七数值,确定所述第一类PDCCH的监听方式为不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
  20. 根据权利要求18所述的方法,其特征在于,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第八数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听PDCCH,所述PDCCH包括所述第一类PDCCH。
  21. 根据权利要求18所述的方法,其特征在于,所述根据所述第二类PDCCH跳过指示的数值,确定所述第一类PDCCH的监听方式,包括:
    若所述第二类唤醒指示的数值为第九数值,确定所述第一类PDCCH的监听方式为在配置的持续时间内不监听除所述第一类PDCCH之外的其他PDCCH。
  22. 一种物理层监听装置,其特征在于,应用于用户设备,所述物理层监听包括处理单元和通信单元,其中,
    所述处理单元,用于根据第一类唤醒指示确定第一类物理下行控制信道PDCCH的监听方式;或者,根据第二类唤醒指示确定所述第一类PDCCH的监听方式;或者,根据第一类PDCCH跳过指示确定所述第一类PDCCH的监听方式;或者,根据第二类PDCCH跳过指示确定所述第一类PDCCH的监听方式。
  23. 一种用户设备,其特征在于,包括处理器、存储器、通信接口,以及一个或多个程序,所述一个或多个程序被存储在所述存储器中,并且被配置由所述处理器执行,所述程序包括用于执行如权利要求1-21任一项所述的方法中的步骤的指令。
  24. 一种计算机可读存储介质,其特征在于,存储用于电子数据交换的计算机程序,其中,所述计算机程序使得计算机执行如权利要求1-21任一项所述的方法。
  25. 一种芯片,其特征在于,所述芯片包括处理器与接口,所述处理器和所述接口耦合;所述接口用于接收或输出信号,所述处理器用于执行代码指令,以使权利要求1至21中任一项所述的方法被执行。
  26. 一种模组设备,其特征在于,所述模组设备包括通信模组、电源模组、存储模组以及芯片模组,其中:
    所述电源模组用于为所述模组设备提供电能;
    所述存储模组用于存储数据和指令;
    所述通信模组用于进行模组设备内部通信,或者用于所述模组设备与外部设备进行通信;
    所述芯片模组用于执行如权利要求1至21任一项所述的方法。
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