WO2023011252A1 - Drx通信方法、终端及计算机可读存储介质 - Google Patents

Drx通信方法、终端及计算机可读存储介质 Download PDF

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Publication number
WO2023011252A1
WO2023011252A1 PCT/CN2022/107915 CN2022107915W WO2023011252A1 WO 2023011252 A1 WO2023011252 A1 WO 2023011252A1 CN 2022107915 W CN2022107915 W CN 2022107915W WO 2023011252 A1 WO2023011252 A1 WO 2023011252A1
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Prior art keywords
wus
terminal
monitoring
period
drx
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PCT/CN2022/107915
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English (en)
French (fr)
Inventor
罗晨
王加庆
张英豪
苏俞婉
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大唐移动通信设备有限公司
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Publication of WO2023011252A1 publication Critical patent/WO2023011252A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • 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

  • Embodiments of the present disclosure relate to the field of communication technologies, and in particular to a DRX communication method, a terminal, and a computer-readable storage medium.
  • downlink control information (Downlink Control Information, DCI) format 2_6 can be indicated based on the buffer (buffer), and DCI format 2_6 indicates that the terminal (User Equipment, UE) can be indicated according to whether the buffer has data. ) Whether to perform physical downlink control channel (Physical Downlink Control Channel, PDCCH) monitoring in the next discontinuous reception (Discontinuous Reception, DRX) cycle. If the data packet arrives after DCI format 2_6, since the terminal will not receive other wake-up signal (Wake-up signal, WUS) signals after successfully receiving DCI format 2_6, it will no longer be possible to check the activation of the DRX activation timer. Change.
  • PDCCH Physical Downlink Control Channel
  • WUS wake-up signal
  • the data packet needs to be transmitted in the next DRX cycle, which increases the transmission waiting delay; if the data packet arrives before the DCI format 2_6, the WUS may instruct to start the next DRX activation timer, but if the data packet and the DRX activation period When the distance from the starting position is large, the transmission waiting delay will also be increased.
  • the purpose of the embodiments of the present disclosure is to provide a DRX communication method, a terminal and a computer-readable storage medium, which can solve the problem in the related art that the DRX activation period does not match the arrival time of data packets.
  • an embodiment of the present disclosure provides a discontinuous reception DRX communication method, the method including:
  • the terminal receives configuration information from the network device, and the configuration information is used for the terminal to determine one or more target DRX activation periods in one DRX cycle according to multiple wake-up signals WUS;
  • the terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up the target DRX activation period according to the monitoring result.
  • the configuration information is used by the terminal to determine multiple wake-up signal WUS monitoring positions and/or multiple WUS monitoring time periods, and/or, multiple candidate DRX activations within one DRX cycle period, the starting positions of the multiple candidate DRX activation periods are determined according to the multiple WUS listening positions or multiple WUS listening time periods.
  • the configuration information includes: configuration information of the WUS monitoring position and/or WUS monitoring time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions and/or multiple WUS monitoring time periods.
  • the configuration information includes: configuration information of the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period configuration information;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine a plurality of wake-up signal WUS monitoring positions and/or WUS monitoring time periods;
  • the candidate DRX activation period configuration information associated with the WUS monitoring position and/or the WUS monitoring period is used for the terminal to determine the start of the candidate DRX activation period according to the WUS monitoring position and/or the WUS monitoring period Location.
  • the configuration information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the candidate DRX active period configuration information at least includes an offset value between the start position of one or more candidate DRX active periods and the WUS listening position and/or the WUS listening time period, And/or, higher layer signaling configuration.
  • the terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up the target DRX activation period in the one or more candidate DRX activation periods according to the monitoring result, including:
  • the terminal performs multiple WUS monitoring according to the configuration information, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS when the monitored WUS satisfies the first rule;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up indication information in the WUS of the candidate DRX activation period.
  • the terminal monitors multiple WUSs according to the configuration information, and wakes up or not Awaken the candidate DRX activation period, including one or more of the following:
  • each WUS monitoring time period of the plurality of WUS monitoring time periods when the terminal monitors WUS, the terminal stops WUS monitoring of other monitoring opportunities in the current WUS monitoring time period, according to the latest The monitored indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal During each WUS monitoring time period among the plurality of WUS monitoring time periods, the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal The indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal In the case that the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS.
  • the terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up a target DRX activation period in the one or more candidate DRX activation periods according to the monitoring result, including:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule, Determine whether to wake up or not to wake up the associated DRX activation period according to the monitored indication information in the WUS;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the start positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the associated The indication information in the WUS of the candidate DRX activation period.
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the The starting position of the candidate DRX activation period, determining whether to wake up or not wake up the associated candidate DRX activation period according to the monitored indication information in the WUS, including one or more of the following:
  • each WUS monitoring time period in a DRX cycle if the terminal monitors a WUS, the terminal stops monitoring other WUSs in the WUS monitoring time period, and the terminal Instructing information to wake up or not to wake up the associated candidate DRX activation period;
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal The indication information in the WUS activates or does not activate the associated candidate DRX activation period.
  • the configuration information further includes a preset number
  • the method further includes:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the method includes one or more of the following:
  • the terminal monitors the WUS
  • the terminal monitors the DCI in the target format
  • the terminal monitors both the WUS and the DCI in the target format.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a terminal, where the terminal includes:
  • the receiving unit is used for the terminal to receive configuration information from the network device, and the configuration information is used for the terminal to determine one or more target DRX activation periods in one DRX cycle according to multiple wake-up signals WUS;
  • the processing unit is used for the terminal to perform WUS monitoring according to the configuration information, and wake up or not wake up the target DRX activation period according to the monitoring result.
  • the configuration information is used by the terminal to determine multiple WUS listening positions and/or multiple WUS listening time periods, and/or, multiple candidate DRX activation periods within one DRX cycle,
  • the starting positions of the multiple candidate DRX activation periods are determined according to the multiple WUS listening positions or multiple WUS listening time periods.
  • the configuration information includes: configuration information of the WUS monitoring position and/or WUS monitoring time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions and/or multiple WUS monitoring time periods.
  • the configuration information includes: configuration information of the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period configuration information;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine a plurality of wake-up signal WUS monitoring positions and/or WUS monitoring time periods;
  • the candidate DRX activation period configuration information associated with the WUS monitoring position and/or the WUS monitoring period is used for the terminal to determine the start of the candidate DRX activation period according to the WUS monitoring position and/or the WUS monitoring period Location.
  • the configuration information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the candidate DRX active period configuration information at least includes an offset value between the start position of one or more candidate DRX active periods and the WUS listening position and/or the WUS listening time period, And/or, higher layer signaling configuration.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS when the monitored WUS satisfies the first rule;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period of the plurality of WUS monitoring time periods when the terminal monitors WUS, the terminal stops WUS monitoring of other monitoring opportunities in the current WUS monitoring time period, according to the latest The monitored indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal During each WUS monitoring time period among the plurality of WUS monitoring time periods, the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal The indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal In the case that the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule, Determine whether to wake up or not to wake up the associated DRX activation period according to the monitored indication information in the WUS;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the start positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the associated The indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period in a DRX cycle if the terminal monitors a WUS, the terminal stops monitoring other WUSs in the WUS monitoring time period, and the terminal Instructing information to wake up or not to wake up the associated candidate DRX activation period;
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal The indication information in the WUS activates or does not activate the associated candidate DRX activation period.
  • the configuration information further includes a preset quantity
  • the processing unit is further configured to:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the processing unit is further used for one or more of the following:
  • the terminal monitors the WUS
  • the terminal monitors the DCI in the target format
  • the terminal monitors both the WUS and the DCI in the target format.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a discontinuous reception DRX communication method, the method comprising:
  • the network device sends configuration information to the terminal, where the configuration information is used for one or more target DRX activation periods within the DRX cycle determined by the terminal based on multiple wake-up signals WUS.
  • the configuration information includes: related information of the WUS listening position and/or WUS listening time period, and/or, multiple candidate DRX activation periods within one DRX cycle.
  • the configuration information includes: related information of the WUS monitoring location and/or WUS monitoring time period.
  • the configuration information includes: information about the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period Related Information.
  • the relevant information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the information about the candidate DRX activation period includes at least one of the following:
  • the configuration information further includes a preset quantity
  • the preset number is used to stop WUS monitoring by the terminal when the number of target DRX activation periods awakened by the terminal reaches the preset number, and the terminal stops activating the remaining candidate DRX Periodic awakening or non-awakening.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a network device, where the network device includes:
  • a sending unit configured for the network device to send configuration information to the terminal
  • the configuration information is used for the terminal to determine one or more target DRX activation periods in the DRX cycle determined based on multiple wake-up signals WUS according to the configuration information; the terminal performs WUS monitoring, and wakes up or The one or more target DRX activation periods are not awakened.
  • the configuration information includes: related information of the WUS listening position and/or WUS listening time period, and/or, multiple candidate DRX activation periods within one DRX cycle.
  • the configuration information includes: related information of the WUS monitoring location and/or WUS monitoring time period.
  • the configuration information includes: information about the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period Related Information.
  • the relevant information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the information about the candidate DRX activation period includes at least one of the following:
  • the configuration information further includes a preset quantity
  • the preset number is used to stop WUS monitoring by the terminal when the number of target DRX activation periods awakened by the terminal reaches the preset number, and the terminal stops activating the remaining candidate DRX Periodic awakening or non-awakening.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a terminal, including a memory, a transceiver, and a processor:
  • the memory is used to store computer programs; the transceiver is used to send and receive data under the control of the processor; the processor is used to read the computer programs in the memory and execute the first aspect The DRX communication method.
  • an embodiment of the present disclosure provides a network device, including a memory, a transceiver, and a processor:
  • the memory is used to store a computer program; the transceiver is used to send and receive data under the control of the processor; the processor is used to read the computer program in the memory and execute the third aspect The DRX communication method.
  • an embodiment of the present disclosure provides a computer-readable storage medium, where the computer-readable storage medium stores a computer program, and the computer program is used to enable a computer to execute the DRX communication described in the first aspect or the third aspect method.
  • the network device configures multiple WUS listening positions or multiple WUS listening time periods for the terminal, and determines one or more candidate DRX in one DRX cycle by using multiple WUS listening positions or multiple WUS listening time periods.
  • the DRX activation period can be enabled through the WUS dynamic and flexible instruction.
  • Figure 1a is a schematic diagram of the DRX mechanism
  • Figure 1b is a schematic diagram of a scenario where a data packet arrives after the WUS signal
  • Figure 1c is a schematic diagram of a scenario where a data packet arrives before the WUS signal
  • FIG. 2 is a schematic flowchart of a DRX communication method provided by an embodiment of the present disclosure
  • 3a to 3c are schematic diagrams of application scenarios provided by embodiments of the present disclosure.
  • FIG. 4 is one of the schematic structural diagrams of a terminal provided by an embodiment of the present disclosure.
  • FIG. 5 is a second schematic diagram of a terminal structure provided by an embodiment of the present disclosure.
  • first”, “second” and the like in the specification and claims of the present disclosure are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the present disclosure are capable of practice in sequences other than those illustrated or described herein, and references to "first”, “second”, etc. to distinguish Objects are generally of one type, and the number of objects is not limited. For example, there may be one or more first objects.
  • “and/or” in the specification and claims means at least one of the connected objects, and the character “/” generally means that the related objects are an "or” relationship.
  • the UE When the user configures a DRX group, the UE will discontinuously monitor the PDCCH of all serving cells.
  • the DRX mechanism is shown in Figure 1a.
  • the UE In the DRX cycle, the UE only monitors the PDCCH during the On duration.
  • the UE During the "Opportunity for DRX", that is, during the inactive period (DRX off), the UE does not receive other PDCCHs except scheduling broadcast signaling. To reduce power consumption, that is, enter sleep mode.
  • the activation period refers to the following: DRX activation period timer drx-onDurationTimer, inactivity timer drx-InactivityTimer, downlink retransmission timer drx-RetransmissionTimerDL, uplink retransmission timer drx-RetransmissionTimerUL, random access contention resolution timer ra -ContentionResolutionTimer, message B response window msgB-ResponseWindow and other timers have not timed out.
  • the start time of the DRX activation period needs to satisfy the following relationship:
  • SFN is the system frame number (System Frame Number)
  • drx-LongCycle is the long DRX cycle
  • drx-StartOffset is the time offset value of the start of the activation period.
  • Extended Reality is the most important type of 5G media applications, with augmented reality (Augmented reality, AR), mixed reality (Mixed reality, MR), virtual reality (Virtual reality, VR) as the main Representative forms, combined real and virtual environments and related human-computer interactions generated by computer technology and wearable devices.
  • AR Augmented reality
  • MR Mixed reality
  • VR Virtual reality
  • the degree of virtuality from AR to VR is from weak to strong, that is, from augmented reality (AR) with partial sensory input to the sensory presence (VR) of a completely virtual person, and the "illusion" of human vision, hearing or environment through XR equipment " presents.
  • XR services are specifically similar to periodic transmission characteristics, that is, XR service sources will generate corresponding data packets at a certain refresh rate.
  • the refresh rate is 60 frames (60FPS), which means that 60 data frames will be generated per second, and the time interval between data frames is 16.67 milliseconds.
  • a refresh rate of 120 frames (120FPS) means that 120 data frames will be generated per second, and the time interval between data frames is 8.33 milliseconds.
  • each frame of XR service source data packet After each frame of XR service source data packet is generated, it will reach the base station side through encoding, network routing and other links. In the above links, due to the difference in data packet size and network congestion, the service source data packet will reach the base station side to varying degrees. Delay jitter (jitter), and the delay jitter has certain randomness.
  • XR services are sensitive to delay requirements. According to the performance requirements of SA4 for XR services, PDB delay requirements are about 10ms to 15ms. While the PDB time delay is required, the average transmission rate of its downlink business is about 100Mbps. This means that under the requirement of shorter time delay, higher data rate business information is transmitted.
  • the energy-saving signal is configured in the main cell, which has two functions: one is the wake-up signal (Wake Up Signal, WUS), that is, the "whether to open" of the drx-onDurationTimer for the next long DRX cycle indication; the other is a secondary cell (Secondary Cell, SCell) body sleep indication, which is to indicate the sleep behavior of the SCell group configured by RRC.
  • WUS wake-up Signal
  • SCell Secondary Cell
  • the energy-saving signal is received within a certain offset time PS-offset before the DRX activation period, and the specific position within the offset time is determined by the configuration of the search space set where the energy-saving signal (DCI format 2_6) is located.
  • the energy saving signal is only associated with the adjacent long DRX cycle. When the short DRX cycle is configured, there is no energy saving signal for indication.
  • the WUS indication may indicate whether the UE performs PDCCH monitoring in the next DRX cycle according to whether there is data in the buffer.
  • the gray filling is the data packet
  • the arrow indicates WUS
  • the solid line box indicates the WUS monitoring window
  • the dotted line box indicates no WUS
  • the DRX cycle in the figure is 20ms; if the data packet arrives after the WUS signal, the terminal successfully After receiving the WUS signal, no other WUS signal will be received, so that the enabling status of the DRX activation timer cannot be changed.
  • the data packet needs to be transmitted in the next DRX cycle, which increases the transmission waiting delay.
  • the WUS may indicate to start the next DRX activation period timer, but if the distance between the data packet and the starting position of the DRX activation period is large, the transmission waiting time will be increased delay.
  • the maximum PS-offset value range of 0.125ms to 15ms that is, the maximum value of the monitoring position of the WUS signal from the starting position of the DRX activation period is 15ms, and this value is close to the refresh rate of 60 frames per second Rate.
  • the protocol in the related technology stipulates that WUS signal detection is only performed in the first complete duration, and WUS signal detection is not required at other positions. detection.
  • the PS-offset is configured with a small value, once the data arrives earlier than the DRX activation period or WUS detection time, the terminal needs to wait until the DRX activation period, which affects the service transmission delay of the terminal to a certain extent.
  • the technology described herein is not limited to the fifth-generation mobile communication (5th-generation, 5G) system and the subsequent evolution communication system, and is not limited to the evolution of LTE/LTE (LTE-Advanced, LTE-A) system, and can also be used in various A wireless communication system, such as code division multiple access (Code Division Multiple Access, CDMA), time division multiple access (Time Division Multiple Access, TDMA), frequency division multiple access (Frequency Division Multiple Access, FDMA), orthogonal frequency division multiple access (Orthogonal Frequency Division Multiple Access, OFDMA), Single-carrier Frequency-Division Multiple Access (Single-carrier Frequency-Division Multiple Access, SC-FDMA) and other systems.
  • code division multiple access Code Division Multiple Access
  • TDMA time division multiple access
  • FDMA frequency division multiple access
  • OFDMA Orthogonal frequency division multiple access
  • SC-FDMA Single-carrier Frequency-Division Multiple Access
  • the terms “system” and “network” are often used interchangeably.
  • the CDMA system can implement radio technologies such as CDMA2000, Universal Terrestrial Radio Access (UTRA) and the like.
  • UTRA includes Wideband CDMA (Wideband Code Division Multiple Access, WCDMA) and other CDMA variants.
  • a TDMA system implements a radio technology such as Global System for Mobile Communication (GSM).
  • GSM Global System for Mobile Communication
  • OFDMA system can realize such as Ultra Mobile Broadband (Ultra Mobile Broadband, UMB), Evolved UTRA ((Evolution-UTRA, E-UTRA)), IEEE 802.11 ((Wi-Fi)), IEEE802.16 ((WiMAX)), IEEE 802.20, Flash-OFDM and other radio technologies.
  • UTRA and E-UTRA are part of the Universal Mobile Telecommunications System (UMTS).
  • LTE and LTE-Advanced (like LTE-A) are new UMTS releases that use E-UTRA.
  • UTRA, E-UTRA, UMTS, LTE, LTE-A and GSM are described in documents from an organization named "3rd Generation Partnership Project” (3GPP).
  • CDMA2000 and UMB are described in documents from an organization named "3rd Generation Partnership Project 2" (3GPP2).
  • the techniques described herein may be used for the systems and radio technologies mentioned above as well as other systems and radio technologies.
  • an embodiment of the present disclosure provides a DRX communication method, which includes the following steps:
  • Step 201 the terminal receives configuration information from the network device
  • Step 202 The terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up the target DRX activation period according to the monitoring result.
  • the above configuration information is used by the terminal to determine one or more target DRX activation periods in one DRX cycle according to multiple WUSs.
  • the above configuration information is used for the terminal to determine multiple WUS listening positions and/or multiple WUS listening time periods, and/or, multiple candidate DRX activation periods within one DRX cycle, and the start of multiple candidate DRX activation periods
  • the location is determined according to multiple WUS monitoring locations or multiple WUS monitoring time periods;
  • the first method is to configure multiple WUS monitoring positions or multiple WUS monitoring time periods by the network device. There are multiple monitoring opportunities in each WUS monitoring window. Compared with related There is only one WUS monitoring position mechanism in the technology, and the terminal can perform flexible WUS monitoring at multiple monitoring positions.
  • the second method is to configure multiple WUS monitoring positions or multiple WUS monitoring time periods on the network device, and communicate with the multiple WUS monitoring positions.
  • One or more candidate DRX activation periods within a DRX cycle associated with a position or multiple WUS listening periods, that is, the starting position of the DRX activation period can be determined by the WUS listening position or the WUS listening period, that is to say
  • the terminal can determine the candidate DRX activation period through the detected WUS, so that the terminal can dynamically and flexibly enable the DRX activation period corresponding to the detected WUS, that is, the target DRX activation period, based on the information indicated by the detected WUS.
  • the network device configures multiple WUS listening positions or multiple WUS listening time periods for the terminal, and determines one or more candidate DRX in one DRX cycle by using multiple WUS listening positions or multiple WUS listening time periods.
  • the DRX activation period can be enabled through the WUS dynamic and flexible instruction.
  • the foregoing WUS is a DCI-based physical layer signal, for example based on a specific format (such as DCI format 2_6), or the WUS is a sequence-based physical layer signal.
  • waking up or not waking up the target DRX activation period refers to that the terminal determines whether to start the DRX activation period timer according to the specific indication information in the DCI; for In the case of WUS based on sequence-based physical layer signals, WUS indicates the DRX activation period, rather than waking up or not waking up, or it can detect the WUS signal and perform PDCCH monitoring during its associated activation period, that is, whether it detects WUS to determine whether to enable the associated DRX activation period.
  • the configuration information received by the terminal from the network device is as follows:
  • configuration information including: configuration information of WUS monitoring position or WUS monitoring time period;
  • the above configuration information of the WUS monitoring position or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions or WUS monitoring time periods.
  • the network side configures multiple WUS monitoring positions or monitoring time periods for the terminal.
  • configuration information including: configuration information of WUS listening position or WUS listening time period, and candidate DRX activation period configuration information associated with WUS listening position or WUS listening time period;
  • the configuration information of the above-mentioned WUS monitoring position or WUS monitoring time period is used for the terminal to determine multiple wake-up signal WUS monitoring positions or multiple WUS monitoring time periods;
  • the above candidate DRX active period configuration information associated with the WUS listening position or the WUS listening time period is used for the terminal to determine the start position of the DRX active period according to the WUS listening position or the WUS listening time period.
  • the network side configures multiple WUS monitoring positions or monitoring time periods for the terminal, and one or more candidate DRX activation periods, where the positions of the candidate DRX activation periods have a certain relationship with the WUS signal monitoring positions or monitoring time periods.
  • configuration information of the above-mentioned WUS monitoring position or WUS monitoring time period includes at least one or more of the following:
  • the configuration information of the WUS monitoring position or the WUS monitoring time period includes one or more of the following:
  • the configuration information of the above-mentioned candidate DRX activation period at least includes an offset value between the starting position of one or more candidate DRX activation periods and the WUS listening position and/or the WUS listening time period, and/or, the high-level Signaling configuration.
  • the configuration information of the DRX activation period includes one or more of the following:
  • a set of candidate starting positions configured by high-level signaling. It should be noted that the terminal selects a candidate starting position closest to the detected WUS from the set of candidate starting positions.
  • the terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up the target DRX activation period in one or more candidate DRX activation periods according to the monitoring result, including:
  • the terminal performs multiple WUS monitoring according to the configuration information, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS when the monitored WUS meets the first rule;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up the indication information in the WUS of the candidate DRX activation period.
  • the DRX cycle configuration can adopt the configuration method in related technologies, that is, the DRX parameter is a fixed value. This method realizes the time matching between WUS and data packets by configuring multiple WUS monitoring positions. .
  • the terminal performs multiple WUS monitoring according to the configuration information, and when the monitored WUS meets the first rule, wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS, including one or more of the following: item:
  • the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal performs WUS monitoring based on the newly monitored WUS
  • the instruction information wakes up or does not wake up the candidate DRX activation period
  • the terminal When the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS. Specifically, the terminal is performing WUS monitoring for multiple WUS monitoring time periods.
  • the information indicated by WUS it can be indicated by 1 bit.
  • the value of "0” means that the DRX active period timer is not turned on (off), and the terminal is not awakened to monitor the relevant PDCCH.
  • the value of "1” means that the DRX active period timer is turned on. device to wake up the terminal to monitor the relevant PDCCH.
  • the embodiment of the present disclosure does not limit the specific manner of the WUS indication.
  • the specific processing methods of the above (1)-(3) can be used in combination, for example: in an actual application scenario, there may be one WUS in the current DRX cycle, and there will be multiple WUS in the next DRX cycle , the processing method used in each DRX cycle may be one of the above (1)-(3), so for the terminal, the specific processing methods of the above (1)-(3) can be used in combination.
  • the terminal performs WUS monitoring according to the configuration information, and wakes up or does not wake up the target DRX activation period in one or more candidate DRX activation periods according to the monitoring result, including:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the start position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule.
  • the instruction information determines whether to wake up or not to wake up the associated DRX activation period;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the starting positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the WUS of the associated candidate DRX activation period instructions in .
  • the aforementioned monitoring of multiple WUSs may be monitoring of multiple WUSs within one monitoring window, or monitoring of multiple WUSs from different monitoring windows.
  • the DRX activation period can be dynamically adjusted within one DRX cycle, that is, multiple WUS monitoring positions are configured within one DRX cycle, and multiple WUS monitoring positions are determined according to the multiple WUS monitoring positions.
  • the start position of the candidate DRX activation period and then dynamically adjust the start position of the corresponding target DRX activation period based on the monitored WUS position.
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS in the case that the monitored WUS in one DRX cycle satisfies the second rule.
  • the indication information in the WUS determines whether to wake up or not to wake up the associated candidate DRX activation period, including one or more of the following:
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal monitors the latest WUS according to the The indication information wakes up or does not wake up the associated candidate DRX activation period.
  • the configuration information also includes a preset quantity
  • the method also includes:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the network side can also configure a preset number for the terminal.
  • the preset number can be one or more.
  • the terminal wakes up the preset number of During the target DRX activation period, the terminal stops the WUS monitoring behavior, and stops subsequent waking up or not waking up for the remaining candidate DRX activation periods. In this way, by configuring the preset number, it is determined how many target DRX activation periods the terminal can wake up among multiple candidate DRX activation periods determined according to multiple WUS listening positions and/or multiple WUS listening time periods.
  • the method when the WUS monitoring position or monitoring time period overlaps or does not overlap with the monitoring window of the DCI of the target format (for example, DCI format 2_6), the method includes one or more of the following:
  • the terminal monitors the WUS; that is, the terminal only monitors the WUS signal. For example: when the DRX activation period can be adjusted dynamically, if the WUS of this solution is configured, only the WUS signal will be monitored if the monitoring windows overlap.
  • the terminal monitors the DCI of the target format; that is, the terminal only monitors the DCI format 2_6.
  • the DRX activation period is based on high-level signaling configuration, that is, a fixed starting position.
  • the terminal monitors both the WUS and the DCI in the target format. That is, the terminal monitors both the WUS signal and the DCI format 2_6.
  • WUS signal is a DCI-based signal
  • the listening window of DCI format 2_6 can be a subset of the WUS listening time period
  • DCI format 2_6 is a subset of configuring multiple WUS
  • the DRX cycle configuration adopts the related technology, that is, the DRX parameter is a fixed value, and the monitoring offset values of multiple WUS signals ⁇ WUS-offset_1, WUS-offset_2, ..., WUS-offset_N are configured before the DRX activation period ⁇ , and the monitoring period of the WUS signal ⁇ WUS-duration_1, WUS-duration_2, ..., WUS-duration_N ⁇ , here, WUS-duration_i and WUS-duration_j, 1 ⁇ i, j ⁇ N, can be the same value or are different values.
  • the WUS signal is a DCI-based WUS signal, for example, DCI format 2_6, and multiple monitoring opportunities can be configured based on WUS search space configuration within each WUS monitoring time period.
  • the terminal can have one or a combination of the following behaviors:
  • Behavior 1 For each monitoring time period, as long as the WUS signal is monitored, the WUS signal monitoring will not be performed at other monitoring opportunities in this monitoring time period, and the terminal will wake up or not wake up DRX activation according to the information indicated by the latest WUS signal period timer.
  • a value of "0" indicates that the DRX active period timer is not enabled (disabled), and a value of "1" indicates that the DRX active period timer is enabled.
  • Parameter 1 WUS-offset_1, the starting position of the first WUS signal monitoring period
  • Parameter 2 Monitor offset values of multiple WUS signals ⁇ WUS-offset_1, WUS-offset_2,...,WUS-offset_N ⁇ ;
  • Parameter 3 Time offset value for terminating monitoring ⁇ WUS-end-offset_1, WUS-end-offset_2, ..., WUS-end-offset_N ⁇ ;
  • Parameter 4 WUS-offset-delta, the time difference between the starting position of the WUS monitoring period and the starting position of the previous WUS monitoring period;
  • Parameter 5 The time difference between the starting position of the WUS monitoring time period and the starting position of the previous WUS monitoring time period ⁇ WUS-offset-delta_2,...,WUS-offset-delta_N ⁇ ;
  • Parameter six the number N of WUS monitoring time periods
  • Parameter seven WUS-duration, the monitoring period of WUS signal
  • Method 1 Configure multiple WUS signal monitoring offset values ⁇ WUS-offset_1, WUS-offset_2, ..., WUS-offset_N ⁇ before the DRX cycle, and the time offset value ⁇ WUS-end-offset_1, WUS -end-offset_2,...,WUS-end-offset_N ⁇ .
  • Method 2 Configure the starting position WUS-offset_1 of the first WUS signal monitoring period before the DRX cycle, and the time difference between the starting position of the subsequent WUS monitoring period and the starting position of the previous WUS monitoring period WUS-offset- delta, and the number N of WUS monitoring time periods.
  • Method 3 Configure the starting position WUS-offset_1 of the first WUS signal before the DRX cycle, and the time difference between the starting position of the subsequent WUS listening period and the starting position of the previous WUS listening period ⁇ WUS-offset-delta_2, ...,WUS-offset-delta_N ⁇ , and the number of WUS monitoring time periods.
  • WUS-offset-delta_i and WUS-offset-delta_j, 2 ⁇ i, j ⁇ N may be the same value or different values.
  • the WUS monitoring position in this embodiment is configured by the search space configuration, for example : A relatively sparse WUS monitoring period, and the WUS only monitors during the DRX inactive period.
  • the base station configures, for the terminal, offset values between multiple WUS signals and the start position of the DRX activation period, that is, DRX-to-WUS.
  • the start time of the dynamically adjusted DRX activation period can be obtained through the offset value.
  • For the monitoring of the WUS signal by the terminal one or a combination of the following behaviors can be performed:
  • Behavior 1 During each WUS monitoring period in a DRX cycle, when the terminal monitors the indication information of the WUS signal, it will no longer monitor other WUS signals in this DRX cycle. If the WUS signal indicates to wake up the DRX activation period, Then the terminal starts the DRX activation timer at a preconfigured time according to the offset value DRX-to-WUS.
  • Behavior 2 in each WUS monitoring period in one DRX cycle, monitor multiple WUS signals. When multiple WUS signals indicate different information, the latest indication information is the main one.
  • the starting position of configuring the DRX activation period for the terminal on the base station side can also be obtained by one or a combination of the following methods:
  • Mode 1 The offset value between the end position of the listening period of the WUS and the start position of the DRX activation period, that is, DRX-to-WUSend.
  • Mode 2 The offset value between the start position of the listening period of the WUS and the start position of the DRX activation period, that is, DRX-to-WUSstart.
  • Mode 3 The offset value between the listening position of the WUS and the starting position of the DRX activation period, that is, DRX-to-WUS.
  • Mode 4 Select a candidate start position set closest to the detected WUS signal from the set of candidate start positions configured by high-layer signaling.
  • the DRX activation period offset value can be dynamically adjusted within a DRX cycle, configure multiple WUS monitoring positions or monitoring time periods in a DRX cycle (that is, configure the starting position and monitoring time period of WUS monitoring, the configuration method is the same as Embodiment 1, which will not be described in detail), is different from the configuration of the search space, and the listening position of the WUS can be configured separately.
  • the base station also configures a possible starting position of the DRX activation period for the terminal.
  • the possible starting position of the DRX activation period may be an offset value relative to the monitoring position of the WUS signal or the monitoring period of the WUS signal, or an offset value relative to the starting position of the WUS, or an offset value relative to the WUS signal monitoring period.
  • the offset value of the end position of the WUS monitoring window may also be a candidate value configured by a high-level layer, etc.
  • the specific configuration method is similar to that of Embodiment 2, and will not be repeated here.
  • the WUS signal is a sequence-based WUS signal, for example: Gold sequence, Hadmand sequence, the sequence of the reference signal in the related technology, etc. or a combination of several (here for illustration purposes only).
  • the specific configuration method is the same as that in Embodiment 1), which will not be repeated here.
  • the monitoring offset values ⁇ WUS-offset_1, WUS-offset_2, ..., WUS-offset_N ⁇ of multiple WUS signals are configured before the DRX activation period, and the monitoring time period of WUS signals ⁇ WUS-duration_1, WUS -duration_2,...,WUS-duration_N ⁇ , here, WUS-duration_i and WUS-duration_j, 1 ⁇ i, j ⁇ N, can be the same value or different values.
  • Multiple monitoring positions can be configured in each WUS monitoring period. Based on the indication information of the sequence-based WUS signal, if the terminal detects the sequence-based WUS signal, start the next DRX active period timer; otherwise, do not start the next DRX active period timer.
  • the terminal can have one or a combination of the following behaviors:
  • Behavior 1 For each monitoring time period, as long as the WUS signal is monitored, the WUS signal monitoring will not be performed at other monitoring opportunities in this monitoring time period, and the terminal will wake up or not wake up DRX activation according to the information indicated by the latest WUS signal period timer.
  • the WUS signal is a sequence-based WUS signal.
  • Each WUS listening position or listening time period corresponds to a candidate DRX activation period.
  • the start position of the DRX activation period can be obtained by one or a combination of the following methods, specifically the same as in Embodiment 2:
  • Mode 1 The offset value between the end position of the listening period of the WUS and the start position of the DRX activation period, that is, DRX-to-WUSend.
  • Mode 2 The offset value between the start position of the listening period of the WUS and the start position of the DRX activation period, that is, DRX-to-WUSstart.
  • Mode 3 The offset value between the listening position of the WUS and the starting position of the DRX activation period, that is, DRX-to-WUS.
  • Mode 4 High-level signaling configures a set of candidate start positions for the DRX activation period, and selects a candidate start position closest to the detected WUS signal.
  • the terminal When the terminal detects multiple WUSs, there may be only one DRX activation period or multiple DRX activation periods in one DRX cycle.
  • the monitoring position or monitoring time period of the WUS signal configured on the base station side may overlap with the monitoring window of the Rel-16 energy-saving signal DCI format 2_6.
  • the terminal behavior has one or more combinations of the following methods:
  • Method 1 The terminal only monitors the WUS signal. For example: when the DRX activation period can be dynamically adjusted, if the WUS signal described in this solution is configured, only the WUS signal is monitored if the monitoring windows overlap.
  • Method 2 The terminal only monitors the DCI format 2_6.
  • the DRX activation period is based on high-level signaling configuration, that is, a fixed starting position.
  • the monitoring time period of the WUS overlaps with the DCI format 2_6 monitoring window, only DCI format 2_6 is monitored.
  • Method 3 The terminal monitors both the WUS signal and the DCI format 2_6.
  • WUS signal is a DCI-based signal
  • the listening window of DCI format 2_6 can be a subset of the WUS listening time period, or DCI format 2_6 is a subset of configuring multiple WUS, or DCI format 2_6 and the listening position of WUS not exactly coincident.
  • both WUS can be monitored at the same time, or only WUS can be monitored, or it can be conditional to perform an alternative monitoring.
  • an embodiment of the present disclosure provides a terminal, including a memory 401, a transceiver 402, a processor 403, and a user interface 404:
  • the transceiver 402 is used for receiving and sending data under the control of the processor 403 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 403 and various circuits of the memory represented by the memory 401 are linked together.
  • the bus architecture can also link together various other circuits such as peripherals, voltage regulators, and power management circuits, etc., which are well known in the art and therefore will not be further described herein.
  • the bus interface provides the interface.
  • Transceiver 402 may be a plurality of elements, including a transmitter and a receiver, providing a unit for communicating with various other devices over transmission media, including wireless channels, wired channels, fiber optic cables, etc. Transmission medium.
  • the user interface 404 may also be an interface capable of connecting externally and internally to required devices, and the connected devices include but not limited to keypads, monitors, speakers, microphones, joysticks, and the like.
  • the processor 403 is responsible for managing the bus architecture and general processing, and the memory 401 can store data used by the processor 403 when performing operations.
  • the processor 403 can be a CPU (central device), ASIC (Application Specific Integrated Circuit, application specific integrated circuit), FPGA (Field-Programmable Gate Array, field programmable gate array) or CPLD (Complex Programmable Logic Device , complex programmable logic device), the processor can also adopt a multi-core architecture.
  • CPU central device
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array, field programmable gate array
  • CPLD Complex Programmable Logic Device , complex programmable logic device
  • the processor 403 is used to read the computer program in the memory 401 and execute:
  • the terminal receives configuration information from the network device, the configuration information is used by the terminal to determine one or more target DRX activation periods in one DRX cycle according to multiple wake-up signals WUS; the terminal performs WUS monitoring according to the configuration information, And wake up or not wake up the target DRX activation period according to the monitoring result.
  • the configuration information is used by the terminal to determine multiple WUS listening positions and/or multiple WUS listening time periods, and/or, multiple candidate DRX activation periods within one DRX cycle, and the multiple candidate The starting position of the DRX activation period is determined according to the multiple WUS listening positions or the multiple WUS listening time periods.
  • the configuration information includes: configuration information of the WUS monitoring position and/or WUS monitoring time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions and/or multiple WUS monitoring time periods.
  • the configuration information includes: configuration information of the WUS listening position and/or WUS listening time period, and candidate DRX activation period configuration information associated with the WUS listening position and/or WUS listening time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine a plurality of wake-up signal WUS monitoring positions and/or WUS monitoring time periods;
  • the candidate DRX activation period configuration information associated with the WUS monitoring position and/or the WUS monitoring period is used for the terminal to determine the start of the candidate DRX activation period according to the WUS monitoring position and/or the WUS monitoring period Location.
  • the configuration information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the configuration information of the candidate DRX active period at least includes an offset value between the start position of one or more candidate DRX active periods and the WUS listening position and/or the WUS listening time period, and/or, the high-level Signaling configuration.
  • the processor 403 is configured for the terminal to monitor multiple WUSs according to the configuration information, and wake up or Do not wake up the candidate DRX activation period;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up indication information in the WUS of the candidate DRX activation period.
  • the processor 403 is used for one or more of the following:
  • each WUS monitoring time period of the plurality of WUS monitoring time periods when the terminal monitors WUS, the terminal stops WUS monitoring of other monitoring opportunities in the current WUS monitoring time period, according to the latest The monitored indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal During each WUS monitoring time period among the plurality of WUS monitoring time periods, the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal The indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal In the case that the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS.
  • the processor 403 is configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule, Determine whether to wake up or not to wake up the associated DRX activation period according to the monitored indication information in the WUS;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the start positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the associated The indication information in the WUS of the candidate DRX activation period.
  • the processor 403 is used for one or more of the following:
  • each WUS monitoring time period in a DRX cycle if the terminal monitors a WUS, the terminal stops monitoring other WUSs in the WUS monitoring time period, and the terminal Instructing information to wake up or not to wake up the associated candidate DRX activation period;
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal The indication information in the WUS activates or does not activate the associated candidate DRX activation period.
  • the configuration information also includes a preset number
  • the processor 403 is configured to:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the processor 403 is used for one or more of the following when the WUS monitoring position or monitoring time period overlaps or does not overlap with the DCI monitoring window of the target format:
  • the terminal monitors the WUS
  • the terminal monitors the DCI in the target format
  • the terminal monitors both the WUS and the DCI in the target format.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a terminal 500, and the terminal 500 includes:
  • the receiving unit 501 is used for the terminal to receive configuration information from the network device, and the configuration information is used for the terminal to determine one or more target DRX activation periods in one DRX cycle according to multiple wake-up signals WUS;
  • the processing unit 502 is configured for the terminal to perform WUS monitoring according to the configuration information, and wake up or not wake up the target DRX activation period according to the monitoring result.
  • the configuration information is used by the terminal to determine multiple WUS listening positions and/or multiple WUS listening time periods, and/or, multiple candidate DRX activation periods within one DRX cycle,
  • the starting positions of the multiple candidate DRX activation periods are determined according to the multiple WUS listening positions or multiple WUS listening time periods.
  • the configuration information includes: configuration information of the WUS monitoring position and/or WUS monitoring time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions and/or multiple WUS monitoring time periods.
  • the configuration information includes: configuration information of the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period configuration information;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine a plurality of wake-up signal WUS monitoring positions and/or WUS monitoring time periods;
  • the candidate DRX activation period configuration information associated with the WUS monitoring position and/or the WUS monitoring period is used for the terminal to determine the start of the candidate DRX activation period according to the WUS monitoring position and/or the WUS monitoring period Location.
  • the configuration information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the candidate DRX active period configuration information at least includes an offset value between the start position of one or more candidate DRX active periods and the WUS listening position and/or the WUS listening time period, And/or, higher layer signaling configuration.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS when the monitored WUS satisfies the first rule;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period of the plurality of WUS monitoring time periods when the terminal monitors WUS, the terminal stops WUS monitoring of other monitoring opportunities in the current WUS monitoring time period, according to the latest The monitored indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal During each WUS monitoring time period among the plurality of WUS monitoring time periods, the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal The indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal In the case that the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule, Determine whether to wake up or not to wake up the associated DRX activation period according to the monitored indication information in the WUS;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the start positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the associated The indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period in a DRX cycle if the terminal monitors a WUS, the terminal stops monitoring other WUSs in the WUS monitoring time period, and the terminal Instructing information to wake up or not to wake up the associated candidate DRX activation period;
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal The indication information in the WUS activates or does not activate the associated candidate DRX activation period.
  • the configuration information further includes a preset quantity
  • the processing unit is further configured to:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the processing unit is further used for one or more of the following:
  • the terminal monitors the WUS
  • the terminal monitors the DCI in the target format
  • the terminal monitors both the WUS and the DCI in the target format.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • an embodiment of the present disclosure provides a terminal, and the terminal includes:
  • the receiving unit is used for the terminal to receive configuration information from the network device, the configuration information is used for the terminal to determine multiple WUS listening positions and/or multiple WUS listening time periods, and/or, multiple candidates within one DRX cycle DRX activation period, the starting positions of the multiple candidate DRX activation periods are determined according to the multiple WUS listening positions or multiple WUS listening time periods;
  • a processing unit configured for the terminal to perform WUS monitoring according to the configuration information, and wake up or not wake up a target DRX activation period in the one or more candidate DRX activation periods according to the monitoring result.
  • the configuration information includes: configuration information of the WUS monitoring position and/or WUS monitoring time period;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine multiple WUS monitoring positions and/or multiple WUS monitoring time periods.
  • the configuration information includes: configuration information of the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period configuration information;
  • the configuration information of the WUS monitoring position and/or the WUS monitoring time period is used for the terminal to determine a plurality of wake-up signal WUS monitoring positions and/or WUS monitoring time periods;
  • the candidate DRX activation period configuration information associated with the WUS monitoring position and/or the WUS monitoring period is used for the terminal to determine the start of the candidate DRX activation period according to the WUS monitoring position and/or the WUS monitoring period Location.
  • the configuration information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the candidate DRX active period configuration information at least includes an offset value between the start position of one or more candidate DRX active periods and the WUS listening position and/or the WUS listening time period, And/or, higher layer signaling configuration.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS when the monitored WUS satisfies the first rule;
  • the first rule is used for the terminal to determine whether to wake up or not to wake up indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period of the plurality of WUS monitoring time periods when the terminal monitors WUS, the terminal stops WUS monitoring of other monitoring opportunities in the current WUS monitoring time period, according to the latest The monitored indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal During each WUS monitoring time period among the plurality of WUS monitoring time periods, the terminal performs WUS monitoring on each WUS monitoring opportunity, and when multiple WUSs are detected, the terminal The indication information in the WUS wakes up or does not wake up the candidate DRX activation period;
  • the terminal In the case that the terminal monitors the WUS, the terminal stops the WUS monitoring in other WUS monitoring time periods, and wakes up or does not wake up the candidate DRX activation period according to the indication information in the monitored WUS.
  • the processing unit is further configured to:
  • the terminal performs multiple WUS monitoring according to the configuration information, and determines the starting position of the candidate DRX activation period associated with the monitored WUS when the monitored WUS in one DRX cycle satisfies the second rule, Determine whether to wake up or not to wake up the associated DRX activation period according to the monitored indication information in the WUS;
  • multiple WUS monitoring positions and/or WUS monitoring time periods correspond to the start positions of multiple candidate DRX activation periods in one DRX cycle
  • the second rule is used for the terminal to determine whether to wake up or not wake up the associated The indication information in the WUS of the candidate DRX activation period.
  • the processing unit is further used for one or more of the following:
  • each WUS monitoring time period in a DRX cycle if the terminal monitors a WUS, the terminal stops monitoring other WUSs in the WUS monitoring time period, and the terminal Instructing information to wake up or not to wake up the associated candidate DRX activation period;
  • the terminal monitors all monitoring opportunities. If multiple WUSs are monitored and the indication information in the multiple WUSs is different, the terminal The indication information in the WUS activates or does not activate the associated candidate DRX activation period.
  • the configuration information further includes a preset quantity
  • the processing unit is further configured to:
  • the terminal stops WUS monitoring, and the terminal stops waking up or not waking up for remaining candidate DRX activation periods.
  • the processing unit is further used for one or more of the following:
  • the terminal monitors the WUS
  • the terminal monitors the DCI in the target format
  • the terminal monitors both the WUS and the DCI in the target format.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • An embodiment of the present disclosure provides a network device, and the network device includes:
  • a sending unit configured for the network device to send configuration information to the terminal
  • the configuration information is used for the terminal to determine one or more target DRX activation periods in the DRX cycle determined based on multiple wake-up signals WUS according to the configuration information; the terminal performs WUS monitoring, and wakes up or The one or more target DRX activation periods are not awakened.
  • the configuration information includes: related information of the WUS listening position and/or WUS listening time period, and/or, multiple candidate DRX activation periods within one DRX cycle.
  • the configuration information includes: related information of the WUS monitoring location and/or WUS monitoring time period.
  • the configuration information includes: information about the WUS listening position and/or WUS listening time period, and candidate DRX activation periods associated with the WUS listening position and/or WUS listening time period Related Information.
  • the relevant information of the WUS monitoring position and/or WUS monitoring time period includes at least one or more of the following:
  • the starting location of one or more WUS listening locations The starting location of one or more WUS listening locations
  • the information about the candidate DRX activation period includes at least one of the following:
  • the configuration information further includes a preset quantity
  • the preset number is used to stop WUS monitoring by the terminal when the number of target DRX activation periods awakened by the terminal reaches the preset number, and the terminal stops activating the remaining candidate DRX Periodic awakening or non-awakening.
  • the WUS is a DCI-based physical layer signal, or the WUS is a sequence-based physical layer signal.
  • An embodiment of the present disclosure further provides a computer-readable storage medium, where a computer program or an instruction is stored on the readable storage medium, and when the computer program or instruction is executed by a processor, each process of the above-mentioned DRX communication method embodiment is implemented, and The same technical effect can be achieved, so in order to avoid repetition, details will not be repeated here.
  • the processor is the processor in the electronic device described in the above embodiments.
  • the readable storage medium includes computer readable storage medium, such as computer read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk, etc.
  • An embodiment of the present disclosure further provides a chip, the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the above-mentioned DRX communication method embodiment
  • the chip includes a processor and a communication interface
  • the communication interface is coupled to the processor
  • the processor is used to run programs or instructions to implement the above-mentioned DRX communication method embodiment
  • chips mentioned in the embodiments of the present disclosure may also be referred to as system-on-chip, system-on-chip, system-on-chip, or system-on-chip.
  • the term “comprising”, “comprising” or any other variation thereof is intended to cover a non-exclusive inclusion such that a process, method, article or apparatus comprising a set of elements includes not only those elements, It also includes other elements not expressly listed, or elements inherent in the process, method, article, or device. Without further limitations, an element defined by the phrase “comprising a " does not preclude the presence of additional identical elements in the process, method, article, or apparatus comprising that element.
  • the scope of the methods and apparatus in the disclosed embodiments is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in reverse order depending on the functions involved. Functions are performed, for example, the described methods may be performed in an order different from that described, and various steps may also be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
  • the methods of the above embodiments can be implemented by means of software plus a necessary general-purpose hardware platform, and of course also by hardware, but in many cases the former is better implementation.
  • the technical solution of the present disclosure can be embodied in the form of a software product in essence or in other words, the part that contributes to the technology in the related art, and the computer software product is stored in a storage medium (such as ROM/RAM, disk , optical disc), including several instructions to enable a terminal (which may be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in various embodiments of the present disclosure.
  • the division of the above modules is only a division of logical functions, and may be fully or partially integrated into a physical entity or physically separated during actual implementation.
  • these modules can all be implemented in the form of calling software through processing elements; they can also be implemented in the form of hardware; some modules can also be implemented in the form of calling software through processing elements, and some modules can be implemented in the form of hardware.
  • the determining module may be a separate processing element, or may be integrated in a chip of the above-mentioned device.
  • it may be stored in the memory of the above-mentioned device in the form of program code, and a certain processing element of the above-mentioned device may Call and execute the functions of the modules identified above.
  • each step of the above method or each module above can be completed by an integrated logic circuit of hardware in the processor element or an instruction in the form of software.
  • each module, unit, subunit or submodule may be one or more integrated circuits configured to implement the above method, for example: one or more specific integrated circuits (Application Specific Integrated Circuit, ASIC), or, one or Multiple microprocessors (digital signal processor, DSP), or, one or more field programmable gate arrays (Field Programmable Gate Array, FPGA), etc.
  • ASIC Application Specific Integrated Circuit
  • DSP digital signal processor
  • FPGA Field Programmable Gate Array
  • the processing element may be a general-purpose processor, such as a central processing unit (Central Processing Unit, CPU) or other processors that can call program codes.
  • these modules can be integrated together and implemented in the form of a system-on-a-chip (SOC).
  • SOC system-on-a-chip

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Abstract

本公开实施例提供一种DRX通信方法、终端及计算机可读存储介质,属于通信技术领域。方法包括:终端从网络设备接收配置信息,所述配置信息用于所述终端根据多个唤醒信号WUS确定一个DRX周期内的一个或多个目标DRX激活期;所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期。

Description

DRX通信方法、终端及计算机可读存储介质
相关申请的交叉引用
本公开主张在2021年8月6日在中国提交的中国专利申请号No.202110904394.3的优先权,其全部内容通过引用包含于此。
技术领域
本公开实施例涉及通信技术领域,具体涉及一种DRX通信方法、终端及计算机可读存储介质。
背景技术
在版本16(Rel-16)中,下行控制信息(Downlink Control Information,DCI)格式2_6可以基于缓存(buffer)进行指示的,DCI格式2_6指示可以根据buffer是否有数据,指示终端(User Equipment,UE)在接下来的非连续接收(Discontinuous Reception,DRX)周期是否进行物理下行控制信道(Physical Downlink Control Channel,PDCCH)监听。如果数据包在DCI格式2_6之后到达,由于终端成功接收到DCI格式2_6之后不会再接收其他唤醒信号(Wake-up signal,WUS)信号,而导致无法再对DRX的激活定时器的开启情况进行改变。数据包需要到下一个DRX周期才能得到传输,增加了传输等待时延;如果数据包在DCI格式2_6之前到达,WUS可能指示开启接下来的DRX激活期定时器,但如果数据包与DRX激活期起始位置距离较大时,同样会增加传输等待时延。
发明内容
本公开实施例的目的是提供一种DRX通信方法、终端及计算机可读存储介质,能够解决相关技术中DRX激活期与数据包到达时间不匹配的问题。
第一方面,本公开实施例提供一种非连续接收DRX通信方法,所述方法包括:
终端从网络设备接收配置信息,所述配置信息用于所述终端根据多个唤 醒信号WUS确定一个DRX周期内的一个或多个目标DRX激活期;
所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期。
在一种可能的实施方式中,所述配置信息用于所述终端确定多个唤醒信号WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个唤醒信号WUS监听位置和/或WUS监听时间段;
所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置和/或WUS监听时间段确定所述候选DRX激活期的起始位置。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的配置信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期配置信息中至少包括一个或多个候选DRX激活期的起始位置与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
在一种可能的实施方式中,所述终端根据所述配置信息进行WUS监听, 并根据监听结果唤醒或不唤醒所述一个或多个候选DRX激活期中的目标DRX激活期,包括:
所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,所述第一规则用于所述终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期,包括以下一项或者多项:
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
在一种可能的实施方式中,所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述一个或多个候选DRX激活期中的目标DRX激活期,包括:
所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端确定唤醒或不唤醒所述关联的候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的候选DRX激活期,包括以下一项或者多项:
在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
在一种可能的实施方式中,所述配置信息中还包括预设数量,所述方法还包括:
在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,在所述WUS监听位置或监听时间段与目标格式的下行控制信息DCI的监听窗口重叠或不重叠的情况下,所述方法,包括以下一项或者多项:
所述终端对WUS进行监听;
所述终端对所述目标格式的DCI进行监听;
所述终端对WUS和所述目标格式的DCI均进行监听。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
第二方面,本公开实施例提供一种终端,所述终端包括:
接收单元,用于终端从网络设备接收配置信息,所述配置信息用于所述终端根据多个唤醒信号WUS确定一个DRX周期内的一个或多个目标DRX激活期;
处理单元,用于所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期。
在一种可能的实施方式中,所述配置信息用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个唤醒信号WUS监听位置和/或WUS监听时间段;
所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置和/或WUS监听时间段确定所述候选DRX激活期的起始位置。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的配置信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期配置信息中至少包括一个或多个候选DRX激活期的起始位置与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,所述第一规则用于所述终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多项:
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端确定唤醒或不唤醒所述关联的候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多项:
在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
在一种可能的实施方式中,所述配置信息中还包括预设数量,所述处理单元,还用于:
在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述处理单元在所述WUS监听位置或监听时间段与目标格式的DCI的监听窗口重叠或不重叠的情况下,进一步用于以下一项或者多项:
所述终端对WUS进行监听;
所述终端对所述目标格式的DCI进行监听;
所述终端对WUS和所述目标格式的DCI均进行监听。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
第三方面,本公开实施例提供一种非连续接收DRX通信方法,所述方法 包括:
网络设备向终端发送配置信息,所述配置信息用于所述终端基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,和/或,一个DRX周期内的多个候选DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期相关信息包括以下至少一项:
一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
高层信令配置。
在一种可能的实施方式中,所述配置信息中还包括预设数量;
其中,所述预设数量用于在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
第四方面,本公开实施例提供一种网络设备,所述网络设备包括:
发送单元,用于所述网络设备向终端发送配置信息;
其中,所述配置信息用于所述终端根据所述配置信息确定基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期;所述终端进行WUS监听,根据监听结果唤醒或不唤醒所述一个或多个目标DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,和/或,一个DRX周期内的多个候选DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期相关信息包括以下至少一项:
一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
高层信令配置。
在一种可能的实施方式中,所述配置信息中还包括预设数量;
其中,所述预设数量用于在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
第五方面,本公开实施例提供一种终端,包括存储器,收发机,处理器:
所述存储器,用于存储计算机程序;所述收发机,用于在所述处理器的控制下收发数据;所述处理器,用于读取所述存储器中的计算机程序并执行如第一方面所述的DRX通信方法。
第六方面,本公开实施例提供一种网络设备,包括存储器,收发机,处理器:
所述存储器,用于存储计算机程序;所述收发机,用于在所述处理器的控制下收发数据;所述处理器,用于读取所述存储器中的计算机程序并执行如第三方面所述的DRX通信方法。
第七方面,本公开实施例提供一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序用于使计算机执行第一方面或第三方面所述的DRX通信方法。
本公开实施例中,网络设备为终端配置多个WUS监听位置或多个WUS监听时间段,以及由多个WUS监听位置或多个WUS监听时间段确定一个DRX周期内的一个或多个候选DRX激活期,一方面可以增加更多的WUS的监听机会,另一方面可以通过WUS动态灵活指示开启DRX激活期。通过该方法实现WUS与数据包时间匹配,有效减少数据传输的等待时延。
附图说明
图1a为DRX机制示意图;
图1b为数据包在WUS信号之后到达的场景示意图;
图1c为数据包在WUS信号之前到达的场景示意图;
图2为本公开实施例提供的DRX通信方法流程示意图;
图3a至图3c为本公开实施例提供的应用场景示意图;
图4为本公开实施例提供的终端结构示意图之一;
图5为本公开实施例提供的终端结构示意图之二。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
本公开的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便本公开的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、“第二”等所区分的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”,一般表示前后关联对象是一种“或”的关系。
为更好理解本公开实施例的技术方案,首先对以下内容进行介绍:
1)DRX机制
当用户配置一个DRX组时,UE将对所有服务小区进行不连续的监听PDCCH。DRX机制如图1a所示。在DRX周期内,UE只在激活期(On duration)内监测PDCCH,在“Opportunity for DRX”,即非激活期(DRX off)时间内,UE不接收除调度广播信令之外的其他PDCCH,以减少功耗,即进入睡眠模式。激活期是指以下包括:DRX激活期定时器drx-onDurationTimer,非激活定时器drx-InactivityTimer,下行重传定时器drx-RetransmissionTimerDL,上行重传定时器drx-RetransmissionTimerUL,随机接入竞争解决定时器ra-ContentionResolutionTimer,消息B响应窗口msgB-ResponseWindow等定时器未超时的时间段。
对于长DRX组内,DRX激活期的开始时间需要满足以下关系:
[(SFN×10)+帧号]modulo(drx-LongCycle)=drx-StartOffset
其中,SFN为系统帧号(System Frame Number),drx-LongCycle为长DRX周期,drx-StartOffset为激活期开始的时间偏移值。
2)扩展现实(XR)业务特性
扩展现实(eXtended Reality,XR)是5G媒体应用中最重要的一种,以增强现实(Augmented reality,AR)、混合现实(Mixed reality,MR)、虚拟现实(Virtual reality,VR)等三种为代表性形式,通过计算机技术与可穿戴设备产生的真实与虚拟的组合环境以及相关的人机交互。AR到VR的虚拟程度由弱到强,即,从传感器部分感知输入的现实增强(AR)到完全虚拟人的感观存在(VR),通过XR设备对人的视觉、听觉或环境进行“错觉”呈现。
根据独立组网(Standalone,SA)2,SA4以及RAN1对XR业务的研究,XR业务具体近似于周期性的传输特性,即XR业务源会以一定刷新率产生相应的数据包。例如:刷新率为60帧(60FPS)则意味着每秒钟会产生60个数据帧,数据帧之间的时间间隔为16.67毫秒。刷新率为120帧(120FPS)则意味着每秒钟会产生120个数据帧,数据帧之间的时间间隔为8.33毫秒。
但每帧XR业务源数据包产生后会经过编码、网络路由等环节到达基站侧,在上述环节中会因为数据包大小、网络拥塞情况不同而导致业务源数据包到达基站侧会有不同程度的时延抖动(jitter),且该时延抖动具有一定的随机性。
XR业务对时延要求较为敏感,根据SA4对XR业务的性能要求来看,PDB时延要求约为10ms~15ms。而在PDB时延要求的同时,其下行业务的平均传输速率约为100Mbps。这就意味着在较短的时延要求下,传输较高的数据速率业务信息。
3)Rel-16节能信号
在Rel-16中的DRX非激活期内在主小区配置节能信号,具有两个功能:一个是唤醒信号(Wake Up Signal,WUS),即对接下来的长DRX周期的drx-onDurationTimer的“是否开启”指示,;另一个是辅小区(Secondary Cell,SCell)体眠指示,即对RRC配置的SCell组休眠行为进行指示。
节能信号在DRX激活期前一定偏移时间内PS-offset内进行接收,在偏移时间内的具体位置由节能信号(DCI格式2_6)所在的搜索空间集配置确定。PS-offset的取值范围是120x0.125ms=15ms。节能信号接收时,至少要距离DRX激活期前最小时间间隔(MinTimeGap)时间停止进行节能信号的监听,以便终端可以有足够时间准备后续DRX激活期的唤醒。在PS-offset与MinTimeGap之间,终端仅对第一个完善的监听时间段(duration)进行监听。对于最小时间间隔MinTimeGap时间的取值X规定为如表1所示:
Figure PCTCN2022107915-appb-000001
表1
节能信号只关联邻近的长DRX周期,当配置了短DRX周期,则无节能信号进行指示。
Rel-16的节能信号的WUS指示存在的问题:
如果WUS是基于buffer进行指示的,WUS指示可以根据buffer是否有数据,指示UE在接下来的DRX周期是否进行PDCCH监听。
如图1b所示,其中灰色填充为数据包,箭头表示WUS,实线框表示WUS监听窗口,虚线框表示无WUS,图中DRX周期为20ms;如果数据包在WUS信号之后到达,由于终端成功接收到WUS信号之后不会再接收其他WUS信号,而导致无法再对DRX的激活定时器的开启情况进行改变。数据包需要到下一个DRX周期才能得到传输,增加了传输等待时延。
如图1c所示,如果数据包在WUS信号之前到达,WUS可能指示开启接下来的DRX激活期定时器,但,如果数据包与DRX激活期起始位置距离较大时,会增加传输等待时延。
根据Rel-16的节能信号,以最大PS-offset值范围为0.125ms~15ms为例,即WUS信号的监听位置距离DRX激活期起始位置最大值为15ms,此值接 近60帧每秒的刷新率。即便根据PDCCH搜索空间的周期性配置,可以在PS-offset内进行多次WUS信号检测,但相关技术中协议规定,只在第一个完整的duration进行WUS信号检测,其他位置则不需要进行WUS检测。当PS-offset配置较小值时,一旦数据比DRX激活期或WUS检测时间更早到达,则需要终端等待至DRX激活期,一定程度影响了终端的业务传输时延。
下面结合附图,通过具体的实施例及其应用场景对本公开实施例提供的DRX通信方法进行详细地说明。
本文所描述的技术不限于第五代移动通信(5th-generation,5G)系统以及后续演进通信系统,以及不限于LTE/LTE的演进(LTE-Advanced,LTE-A)系统,并且也可用于各种无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency-Division Multiple Access,SC-FDMA)和其他系统。
术语“系统”和“网络”常被可互换地使用。CDMA系统可实现诸如CDMA2000、通用地面无线电接入(Universal Terrestrial Radio Access,UTRA)等无线电技术。UTRA包括宽带CDMA(Wideband Code Division Multiple Access,WCDMA)和其他CDMA变体。TDMA系统可实现诸如全球移动通信系统(Global System for Mobile Communication,GSM)之类的无线电技术。OFDMA系统可实现诸如超移动宽带(Ultra Mobile Broadband,UMB)、演进型UTRA((Evolution-UTRA,E-UTRA))、IEEE 802.11((Wi-Fi))、IEEE802.16((WiMAX))、IEEE 802.20、Flash-OFDM等无线电技术。UTRA和E-UTRA是通用移动电信系统(Universal Mobile Telecommunications System,UMTS)的部分。LTE和更高级的LTE(如LTE-A)是使用E-UTRA的新UMTS版本。UTRA、E-UTRA、UMTS、LTE、LTE-A以及GSM在来自名为“第三代伙伴项目”(3rd Generation Partnership Project,3GPP)的组织的文献中描述。CDMA2000和UMB在来自名为“第三代伙伴项目2”(3GPP2)的组织的文献 中描述。本文所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。
参见图2,本公开实施例提供一种DRX通信方法,该方法包括如下步骤:
步骤201:终端从网络设备接收配置信息;
步骤202:终端根据配置信息进行WUS监听,并根据监听结果唤醒或不唤醒目标DRX激活期。
上述配置信息用于终端根据多个WUS确定一个DRX周期内的一个或多个目标DRX激活期。
进一步地,上述配置信息用于终端确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,多个候选DRX激活期的起始位置根据多个WUS监听位置或多个WUS监听时间段确定;
在本公开实施例中,可以包含两种方式,方式一是由网络设备配置多个WUS监听位置或多个WUS监听时间段,每个WUS的监听窗口内有多个监听机会,相比于相关技术中只有一个WUS监听位置的机制,终端能够在多个监听位置进行灵活的WUS监听,方式二是由网络设备配置多个WUS监听位置或多个WUS监听时间段,以及与该多个WUS监听位置或多个WUS监听时间段相关联的一个DRX周期内的一个或多个候选DRX激活期,即实现了DRX激活期的起始位置可以通过WUS监听位置或WUS监听时间段确定,也就是说终端能够通过检测到的WUS来确定候选DRX激活期,这样终端能够基于监听到的WUS所指示的信息,动态灵活地开启与该监听到的WUS相对应的DRX激活期,即目标DRX激活期。
本公开实施例中,网络设备为终端配置多个WUS监听位置或多个WUS监听时间段,以及由多个WUS监听位置或多个WUS监听时间段确定一个DRX周期内的一个或多个候选DRX激活期,一方面可以增加更多的WUS的监听机会,另一方面可以通过WUS动态灵活指示开启DRX激活期。通过该方法实现WUS与数据包时间匹配,有效减少数据传输的等待时延。
在一种可能的实施方式中,上述WUS是基于DCI的物理层信号,例如基于特定格式(如DCI格式2_6),或者所述WUS是基于序列的物理层信号。
需要说明的是,针对WUS是基于DCI的物理层信号的情况,上述唤醒或不唤醒目标DRX激活期指的是,终端根据根据DCI中具体的指示信息来确定是否开启DRX激活期定时器;针对WUS是基于序列的物理层信号的情况,WUS对DRX激活期的指示,而非唤醒或不唤醒,也可以是检测到WUS信号即在其关联的激活期进行PDCCH监听,即通过是否检测到WUS来确定是否开启相关联的DRX激活期。
在一种可能的实施方式中,根据前述的两种方式,终端从网络设备接收的配置信息如下:
对应方式一,配置信息,包括:WUS监听位置或WUS监听时间段的配置信息;
上述WUS监听位置或WUS监听时间段的配置信息,用于终端确定多个WUS监听位置或WUS监听时间段。
即网络侧为终端配置多个WUS监听位置或监听时间段。
对应方式二,配置信息,包括:WUS监听位置或WUS监听时间段的配置信息,以及与WUS监听位置或WUS监听时间段关联的候选DRX激活期配置信息;
上述WUS监听位置或WUS监听时间段的配置信息,用于终端确定多个唤醒信号WUS监听位置或多个WUS监听时间段;
上述与WUS监听位置或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置或WUS监听时间段确定所述DRX激活期的起始位置。
即网络侧为终端配置多个WUS监听位置或监听时间段,以及一个或多个候选DRX激活期,其中候选DRX激活期的位置与WUS信号监听位置或监听时间段具有一定关联关系。
进一步地,上述WUS监听位置或WUS监听时间段的配置信息中至少包含以下一项或者多项:
(1)一个或多个WUS监听位置的起始位置;
(2)持续监听的时间段。
在一些可能的实施方式中,WUS监听位置或WUS监听时间段的配置信息中包括以下一项或者多项:
(1)首个WUS监听时间段的起始位置;
(2)多个WUS的监听偏移值;
(3)终止监听的时间偏移值;
(4)WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值;
(5)多个WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值;
(6)WUS监听时间段的个数;
(7)WUS监听时间段;
(8)多个WUS监听时间段。
进一步地,上述候选DRX激活期的配置信息中至少包括一个或多个候选DRX激活期的起始位置与与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
在一些可能的实施方式中,DRX激活期的配置信息中包括以下一项或者多项:
(1)WUS监听时间段的结束位置与DRX激活期的起始位置的偏移值;
(2)WUS监听时间段的起始位置与DRX激活期的起始位置的偏移值;
(3)WUS监听位置与DRX激活期的起始位置的偏移值;
(4)高层信令配置的候选起始位置集合,需要说明的是,终端从该候选起始位置集合中选取与检测到的WUS最近的一个候选起始位置。
在一种可能的实施方式中,对应于方式一,终端根据配置信息进行WUS 监听,并根据监听结果唤醒或不唤醒一个或多个候选DRX激活期中的目标DRX激活期,包括:
终端根据配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,第一规则用于终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
需要说明的是,在方式一应用的场景中,DRX的周期配置可以采用相关技术中配置方式,即DRX参数为固定值,本方式是通过配置多个WUS监听位置实现WUS与数据包时间匹配的。
具体地,终端根据配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期,包括以下一项或者多项:
(1)在多个WUS监听时间段中的每个WUS监听时间段内,终端监听到WUS的情况下,终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
(2)在多个WUS监听时间段中的每个WUS监听时间段内,终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
(3)在终端监听到WUS的情况下,终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。具体地,终端是正对多个WUS监听时间段进行WUS监听。
可选的,对于WUS指示的信息,可以通过1比特指示,“0”值表示不开启(关闭)DRX激活期定时器,不唤醒终端进行相关PDCCH监听,“1”值表示开启DRX激活期定时器,唤醒终端进行相关PDCCH监听。本公开实施例对WUS指示的具体方式不做限定。
需要说明的是,上述(1)-(3)的具体处理方式可以组合使用,例如:在实际应用场景中,可能在当前DRX周期会有一个WUS,在下一个DRX周期中则会有多个WUS,每个DRX周期所使用的处理方式可能是上述(1)-(3)中某一种,因此对于终端而言,上述(1)-(3)的具体处理方式可以组合使用。
在一种可能的实施方式中,对应于方式二,终端根据配置信息进行WUS监听,并根据监听结果唤醒或不唤醒一个或多个候选DRX激活期中的目标DRX激活期,包括:
终端根据配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与监听到的WUS关联的候选DRX激活期的起始位置,根据监听到的WUS中的指示信息确定唤醒或不唤醒关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,第二规则用于终端确定唤醒或不唤醒关联的候选DRX激活期的WUS中的指示信息。
需要说明的是,上述进行多个WUS监听,可以是对一个监听窗内的多个WUS监听,也可以是对来自不同监听窗的多个WUS监听。
需要说明的是,在方式二应用的场景中,DRX激活期可以在一个DRX周期内进行动态调整,即在一个DRX周期内配置多个WUS监听位置,根据该多个WUS监听位置确定出多个候选DRX激活期的起始位置,然后基于监听到的WUS的位置动态调整对应的目标DRX激活期的起始位置。
具体地,终端根据配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与监听到的WUS关联的候选DRX激活期的起始位置,根据监听到的WUS中的指示信息确定唤醒或不唤醒关联的候选DRX激活期,包括以下一项或者多项:
(1)在一个DRX周期中的每个WUS监听时间段内,终端监听到WUS的情况下,终端停止监听WUS监听时间段内的其他WUS,终端根据监听到 的WUS中的指示信息唤醒或不唤醒关联的候选DRX激活期;
(2)在一个DRX周期中的每个WUS监听时间段内,终端对所有监听机会进行监听,若监听到多个WUS且多个WUS中的指示信息不同,终端根据最新监听到的WUS中的指示信息唤醒或不唤醒关联的候选DRX激活期。
进一步地,配置信息中还包括预设数量,本方法还包括:
在终端唤醒的目标DRX激活期的数量达到预设数量的情况下,终端停止WUS监听,以及终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在本公开实施例中,网络侧还可以对终端配置一个预设数量,该预设数量可以是一个或者多个,当终端采用上述唤醒DRX激活期的方法在一个DRX周期内唤醒了预设数量的目标DRX激活期时,终端停止WUS监听行为,以及停止后续对剩余的候选DRX激活期的唤醒或不唤醒。这样,通过配置预设数量的方式,确定出在根据多个WUS监听位置和/或多个WUS监听时间段所确定出的多个候选DRX激活期中,终端具体能够唤醒多少个目标DRX激活期。设置预设数量值,当达到预设数量值时停止后续WUS监听行为,可以在一定程度上减少终端进行不必要的监听行为,满足DRX激活期灵活性的情况下实现终端节电。对于一个DRX周期内有多个数据包到达的情况,可以通过配置大于一的预设数量值,可以增加数据包传输概率,缩短数据包的传输等待时延。
在一种可能的实施方式中,在WUS监听位置或监听时间段与目标格式的DCI(例如DCI格式2_6)的监听窗口重叠或不重叠的情况下,方法包括以下一项或者多项:
(1)终端对WUS进行监听;即终端只对WUS信号进行监听。例如:DRX激活期是可以动态调整时,如果配置了本方案的WUS,在监听窗口重叠的情况下,则仅对WUS信号进行监听。
(2)终端对目标格式的DCI进行监听;即终端只对DCI格式2_6进行监听。例如:DRX激活期是基于高层信令配置,即固定的起始位置,当WUS的监听时间段与DCI格式2_6监听窗口重叠时,只对DCI格式2_6进行监听。
(3)终端对WUS和所述目标格式的DCI均进行监听。即终端对WUS信号以及DCI格式2_6均进行监听。例如:WUS信号是基于DCI的信号,DCI格式2_6的监听窗口可以是WUS监听时间段的一个子集,或DCI格式2_6是配置多个WUS的一个子集,或DCI格式2_6与WUS的监听位置不完全重合。
实施例一:
参见图3a,如果DRX周期配置采用相关技术中,即DRX参数为固定值,在DRX激活期前配置多个WUS信号的监听偏移值{WUS-offset_1,WUS-offset_2,……,WUS-offset_N},以及WUS信号的监听时间段{WUS-duration_1,WUS-duration_2,……,WUS-duration_N},这里,WUS-duration_i和WUS-duration_j,1≤i,j≤N,可以是相同值也可以是不同值。WUS信号是基于DCI的WUS信号,如,DCI格式2_6,每个WUS监听时间段内可以基于WUS的搜索空间配置,配置多个监听机会。在每个监听时间段,终端可以有以下行为的一种或几种组合:
行为一:对于每个监听时间段,只要监听到WUS信号,则不再在本监听时间段内的其他监听机会进行WUS信号监听,终端按最新的WUS信号指示的信息进行唤醒或不唤醒DRX激活期定时器。
行为二:每个监听时间段内的每个WUS监听机会均进行监听,当检测到多个WUS信号,按最新的WUS信号指示的信息进行唤醒或不唤醒DRX激活期定时器。
行为三:对于多个WUS监听时间段,一旦监听到WUS信号指示的信息,则不再进行其他WUS监听时间段的监听,则终端按检测到的WUS信号指示的信息进行开启或关闭DRX激活期定时器。
对于WUS信号指示的信息,以1比特指示为例,“0”值表示不开启(关闭)DRX激活期定时器,“1”值表示开启DRX激活期定时器。
对于WUS监听时间段还可以扩展为以下方法中一种或几种参数的组合:
参数一:首个WUS信号监听时间段的起始位置WUS-offset_1;
参数二:多个WUS信号的监听偏移值{WUS-offset_1,WUS-offset_2,……,WUS-offset_N};
参数三:终止监听的时间偏移值{WUS-end-offset_1,WUS-end-offset_2,……,WUS-end-offset_N};
参数四:WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值WUS-offset-delta;
参数五:WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值{WUS-offset-delta_2,……,WUS-offset-delta_N};
参数六:WUS监听时间段的个数N;
参数七:WUS信号的监听时间段WUS-duration;
参数八:WUS信号的监听时间段{WUS-duration_1,WUS-duration_2,……,WUS-duration_N},这里,WUS-duration_i和WUS-duration_j,1≤i,j≤N,可以是相同值也可以是不同值;
针对上述参数进行举例说明,如下:
方法一:在DRX周期前配置多个WUS信号的监听偏移值{WUS-offset_1,WUS-offset_2,……,WUS-offset_N},以及终止监听的时间偏移值{WUS-end-offset_1,WUS-end-offset_2,……,WUS-end-offset_N}。
方法二:在DRX周期前配置首个WUS信号监听时间段的起始位置WUS-offset_1,后续WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值WUS-offset-delta,以及WUS监听时间段的个数N。
方法三:在DRX周期前配置首个WUS信号的起始位置WUS-offset_1,后续WUS监听时间段起始位置相对于前一个WUS监听时间段起始位置的时间差值{WUS-offset-delta_2,……,WUS-offset-delta_N},以及WUS监听时间段的个数。这里,WUS-offset-delta_i和WUS-offset-delta_j,2≤i,j≤N,可以是相同值也可以是不同值。
实施例二:
参见图3b和图3c,如果DRX激活期偏移值可以一个DRX周期内进行动态调整,在DRX周期内配置多个WUS监听位置,本实施例中WUS的监听位置由搜索空间配置进行配置,例如:较稀疏的WUS监听周期,且WUS仅在DRX非激活期进行监听。基站侧为终端配置多个WUS信号与DRX激活期的起始位置的偏移值,即DRX-to-WUS。通过该偏移值可以获得动态调整的DRX激活期的起始时间。对于多个WUS监听机会,可以只有一个DRX激活期,也可以有多个可用的DRX激活期。对于终端对WUS信号的监听,可以有以下几种行为的一种或几种的组合:
行为一:在一个DRX周期中的每个WUS监听时间段内,当终端监听到WUS信号的指示信息时,则不再监听本DRX周期内的其他WUS信号,如果WUS信号指示唤醒DRX激活期,则终端根据偏移值DRX-to-WUS,在预配置的时间开启DRX激活期定时器。
行为二:在一个DRX周期内的每个WUS监听时间段内,对多个WUS信号均进行监听。当多个WUS信号指示不同的信息,以最新的指示信息为主。
可扩展地,基站侧为终端配置DRX激活期的起始位置还可以是通过以下几种方式的一种或几种组合来获得:
方式一:WUS的监听时间段结束位置与DRX激活期的起始位置的偏移值,即DRX-to-WUSend。
方式二:WUS的监听时间段起始位置与DRX激活期的起始位置的偏移值,即DRX-to-WUSstart。
方式三:WUS的监听位置与DRX激活期的起始位置的偏移值,即DRX-to-WUS。
方式四:高层信令配置的候选起始位置集合,选择检测到的WUS信号最近的一个候选起始位置。
实施例三:
如果DRX激活期偏移值可以一个DRX周期内进行动态调整,在一个DRX周期内配置多个WUS监听位置或监听时间段(即,配置WUS的监听的起始位置及监听时间段,配置方法同实施例一,不再赘述),与搜索空间配置不同,可以单独配置WUS的监听位置。基站还为终端配置DRX激活期的可能的起始位置。这里,DRX激活期的可能的起始位置,可以是相对WUS信号的监听位置或WUS信号监听时间段的偏移值,也可以是相对于WUS的起始位置的偏移值,也可以是相对于WUS监听窗口的结束位置的偏移值,也可以是高层配置的候选值等,具体配置方法与实施例二相似,不再赘述。
后续终端侧监听行为同实施例二。
实施例四:
如果DRX周期配置采用相关技术中,即DRX参数为固定值,WUS信号是基于序列的WUS信号,例如:Gold序列、Hadmand序列、相关技术中参考信号的序列等一种或几种的组合(这里仅进行举例说明)。在DRX激活期前配置多个WUS信号的监听位置或者多个监听时间段(具体的配置方法同实施例一),这里不作赘述。这里简单举例说明,在DRX激活期前配置多个WUS信号的监听偏移值{WUS-offset_1,WUS-offset_2,……,WUS-offset_N},以及WUS信号的监听时间段{WUS-duration_1,WUS-duration_2,……,WUS-duration_N},这里,WUS-duration_i和WUS-duration_j,1≤i,j≤N,可以是相同值也可以是不同值。每个WUS监听时间段内可以配置多个监听位置。基于序列的WUS信号的指示信息,如果终端检测到基于序列的WUS信号,则开启接下来的DRX激活期定时器;否则,不开启接下来的DRX激活期定时器。
在每个监听时间段,终端可以有以下行为的一种或几种组合:
行为一:对于每个监听时间段,只要监听到WUS信号,则不再在本监听时间段内的其他监听机会进行WUS信号监听,终端按最新的WUS信号指示的信息进行唤醒或不唤醒DRX激活期定时器。
行为二:每个监听时间段内的每个WUS监听机会均进行监听,当检测到多个WUS信号,按最新的WUS信号指示的信息进行唤醒或不唤醒DRX激活期定时器。
行为三:对于多个WUS监听时间段,一旦监听到WUS信号指示的信息,则不再进行其他WUS监听时间段的监听,则终端按检测到的WUS信号指示的信息进行开启或关闭DRX激活期定时器。
实施例五:
如果DRX激活期偏移值可以一个DRX周期内进行动态调整,在DRX周期内配置多个WUS监听位置或监听时间段,这里,WUS信号是基于序列的WUS信号。对于WUS的监听时间段的配置可以参见实施例一,这里不作赘述。每个WUS监听位置或监听时间段对应一个候选的DRX激活期。对于DRX的激活期起始位置,可以通过以下几种方式的一种或几种组合来获得,具体同实施例二:
方式一:WUS的监听时间段结束位置与DRX激活期的起始位置的偏移值,即DRX-to-WUSend。
方式二:WUS的监听时间段起始位置与DRX激活期的起始位置的偏移值,即DRX-to-WUSstart。
方式三:WUS的监听位置与DRX激活期的起始位置的偏移值,即DRX-to-WUS。
方式四:高层信令配置了DRX激活期的候选起始位置集合,选择检测到的WUS信号最近的一个候选起始位置。
后续终端侧监听行为同实施例二。
当终端检测到多个WUS时,在一个DRX周期可以只有一个DRX激活期,也可以有多个DRX激活期。
实施例六:
基站侧配置的WUS信号的监听位置或监听时间段可能会与Rel-16的节能信号DCI格式2_6的监听窗口重叠,对于这种情况,终端行为有以下方式的一种或几种组合:
方式一:终端只对WUS信号进行监听。例如:DRX激活期是可以动态调整时,如果配置了本方案所述的WUS信号,在监听窗口重叠的情况下,则仅对WUS信号进行监听。
方式二:终端只对DCI格式2_6进行监听。例如:DRX激活期是基于高层信令配置,即固定的起始位置,当WUS的监听时间段与DCI格式2_6监听窗口重叠时,只对DCI格式2_6进行监听。
方式三:终端对WUS信号以及DCI格式2_6均进行监听。例如:WUS信号是基于DCI的信号,DCI格式2_6的监听窗口可以是WUS监听时间段的一个子集,或DCI格式2_6是配置多个WUS的一个子集,或DCI格式2_6与WUS的监听位置不完全重合。
对于WUS信号的监听位置或监听时间段可能会与Rel-16的节能信号DCI格式2_6的监听窗口不重叠的情况,可以同时对两者进行监听,也可以只对WUS进行监听,也可以有条件的进行二者选其一的监听。
参见图4,本公开实施例提供一种终端,包括存储器401,收发机402,处理器403,用户接口404:
收发机402,用于在处理器403的控制下接收和发送数据。
其中,在图4中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器403代表的一个或多个处理器和存储器401代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机402可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元,这些传输介质包括,这些传输介质包括无线信道、有线信道、光缆等传输介质。针对不同的用户设备,用户接口404还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆 等。
处理器403负责管理总线架构和通常的处理,存储器401可以存储处理器403在执行操作时所使用的数据。
可选的,处理器403可以是CPU(中央处埋器)、ASIC(Application Specific Integrated Circuit,专用集成电路)、FPGA(Field-Programmable Gate Array,现场可编程门阵列)或CPLD(Complex Programmable Logic Device,复杂可编程逻辑器件),处理器也可以采用多核架构。
处理器403,用于读取存储器401中的计算机程序并执行:
终端从网络设备接收配置信息,所述配置信息用于所述终端根据多个唤醒信号WUS确定一个DRX周期内的一个或多个目标DRX激活期;所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期。
可选地,所述配置信息用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
可选地,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段。
可选地,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个唤醒信号WUS监听位置和/或WUS监听时间段;
所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置和/或WUS监听时间段确定 所述候选DRX激活期的起始位置。
可选地,所述WUS监听位置和/或WUS监听时间段的配置信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
可选地,所述候选DRX激活期配置信息中至少包括一个或多个候选DRX激活期的起始位置与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
可选地,处理器403,用于所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,所述第一规则用于所述终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
可选地,处理器403,用于以下一项或者多项:
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
可选地,处理器403,用于:
所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选 DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端确定唤醒或不唤醒所述关联的候选DRX激活期的WUS中的指示信息。
可选地,处理器403,用于以下一项或者多项:
在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
可选地,所述配置信息中还包括预设数量,处理器403,用于:
在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
可选地,处理器403在所述WUS监听位置或监听时间段与目标格式的DCI的监听窗口重叠或不重叠的情况下,用于以下一项或者多项:
所述终端对WUS进行监听;
所述终端对所述目标格式的DCI进行监听;
所述终端对WUS和所述目标格式的DCI均进行监听。
可选地,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
参见图5,本公开实施例提供一种终端500,所述终端500包括:
接收单元501,用于终端从网络设备接收配置信息,所述配置信息用于 所述终端根据多个唤醒信号WUS确定一个DRX周期内的一个或多个目标DRX激活期;
处理单元502,用于所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期。
在一种可能的实施方式中,所述配置信息用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个唤醒信号WUS监听位置和/或WUS监听时间段;
所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置和/或WUS监听时间段确定所述候选DRX激活期的起始位置。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的配置信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期配置信息中至少包括一个或多个候选DRX激活期的起始位置与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,所述第一规则用于所述终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多项:
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端确定唤醒或不唤醒所述关联的候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多 项:
在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
在一种可能的实施方式中,所述配置信息中还包括预设数量,所述处理单元,还用于:
在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述处理单元在所述WUS监听位置或监听时间段与目标格式的DCI的监听窗口重叠或不重叠的情况下,进一步用于以下一项或者多项:
所述终端对WUS进行监听;
所述终端对所述目标格式的DCI进行监听;
所述终端对WUS和所述目标格式的DCI均进行监听。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
参见图5,本公开实施例提供一种终端,所述终端包括:
接收单元,用于终端从网络设备接收配置信息,所述配置信息用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定;
处理单元,用于所述终端根据所述配置信息进行WUS监听,并根据监听结果唤醒或不唤醒所述一个或多个候选DRX激活期中的目标DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个WUS监听位置和/或多个WUS监听时间段。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的配置信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息;
所述WUS监听位置和/或WUS监听时间段的配置信息,用于所述终端确定多个唤醒信号WUS监听位置和/或WUS监听时间段;
所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期配置信息,用于所述终端根据所述WUS监听位置和/或WUS监听时间段确定所述候选DRX激活期的起始位置。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的配置信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期配置信息中至少包括一个或多个候选DRX激活期的起始位置与WUS监听位置和/或WUS监听时间段之间的偏移值,和/或,高层信令配置。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在监听到的WUS满足第一规则的情况下,根据所述监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
其中,所述第一规则用于所述终端确定唤醒或不唤醒候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多项:
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述多个WUS监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
在所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
在一种可能的实施方式中,所述处理单元,进一步用于:
所述终端根据所述配置信息进行多个WUS监听,在一个DRX周期内监听到的WUS满足第二规则的情况下,确定与所述监听到的WUS关联的候选DRX激活期的起始位置,根据所述监听到的WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端确定唤醒或不唤醒所述关联的候选DRX激活期的WUS中的指示信息。
在一种可能的实施方式中,所述处理单元,进一步用于以下一项或者多项:
在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机 会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
在一种可能的实施方式中,所述配置信息中还包括预设数量,所述处理单元,还用于:
在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述处理单元在所述WUS监听位置或监听时间段与目标格式的DCI的监听窗口重叠或不重叠的情况下,进一步用于以下一项或者多项:
所述终端对WUS进行监听;
所述终端对所述目标格式的DCI进行监听;
所述终端对WUS和所述目标格式的DCI均进行监听。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
本公开实施例提供一种网络设备,所述网络设备包括:
发送单元,用于所述网络设备向终端发送配置信息;
其中,所述配置信息用于所述终端根据所述配置信息确定基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期;所述终端进行WUS监听,根据监听结果唤醒或不唤醒所述一个或多个目标DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,和/或,一个DRX周期内的多个候选DRX激活期。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息。
在一种可能的实施方式中,所述配置信息,包括:所述WUS监听位置 和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息。
在一种可能的实施方式中,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
一个或多个WUS监听位置的起始位置;
持续监听的时间段。
在一种可能的实施方式中,所述候选DRX激活期相关信息包括以下至少一项:
一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
高层信令配置。
在一种可能的实施方式中,所述配置信息中还包括预设数量;
其中,所述预设数量用于在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
在一种可能的实施方式中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
本公开实施例还提供一种计算机可读存储介质,所述可读存储介质上存储有计算机程序或指令,该计算机程序或指令被处理器执行时实现上述DRX通信方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的电子设备中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本公开实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所 述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现上述DRX通信方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本公开实施例提到的芯片还可以称为系统级芯片、系统芯片、芯片系统或片上系统芯片等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本公开实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对相关技术中技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例所述的方法。
需要说明的是,应理解以上各个模块的划分仅仅是一种逻辑功能的划分,实际实现时可以全部或部分集成到一个物理实体上,也可以物理上分开。且这些模块可以全部以软件通过处理元件调用的形式实现;也可以全部以硬件的形式实现;还可以部分模块通过处理元件调用软件的形式实现,部分模块通过硬件的形式实现。例如,确定模块可以为单独设立的处理元件,也可以 集成在上述装置的某一个芯片中实现,此外,也可以以程序代码的形式存储于上述装置的存储器中,由上述装置的某一个处理元件调用并执行以上确定模块的功能。其它模块的实现与之类似。此外这些模块全部或部分可以集成在一起,也可以独立实现。这里所述的处理元件可以是一种集成电路,具有信号的处理能力。在实现过程中,上述方法的各步骤或以上各个模块可以通过处理器元件中的硬件的集成逻辑电路或者软件形式的指令完成。
例如,各个模块、单元、子单元或子模块可以是被配置成实施以上方法的一个或多个集成电路,例如:一个或多个特定集成电路(Application Specific Integrated Circuit,ASIC),或,一个或多个微处理器(digital signal processor,DSP),或,一个或者多个现场可编程门阵列(Field Programmable Gate Array,FPGA)等。再如,当以上某个模块通过处理元件调度程序代码的形式实现时,该处理元件可以是通用处理器,例如中央处理器(Central Processing Unit,CPU)或其它可以调用程序代码的处理器。再如,这些模块可以集成在一起,以片上系统(system-on-a-chip,SOC)的形式实现。
本公开的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本公开的实施例,例如除了在这里图示或描述的那些以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,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、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。此外,说明书以及权利要求中使用“和/或”表示所连接对象的至少其中之一,例如A和/或B和/或C,表示包含单独A,单独B,单独C,以及A和B都存在,B和C都存在,A和C都存在,以及A、B和C都存在的7种情况。类似地,本说明书以及权利要求中使用“A和B中的至少一个”应理解为“单独A,单独B,或A和B都存在”。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的, 本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。

Claims (45)

  1. 一种非连续接收DRX通信方法,所述方法包括:
    终端从网络设备接收配置信息;
    所述终端根据所述配置信息确定基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期;
    所述终端进行WUS监听,根据监听结果唤醒或不唤醒所述目标DRX激活期。
  2. 根据权利要求1所述的方法,其中,所述终端根据所述配置信息确定基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期,包括:
    所述终端根据所述配置信息,确定多个唤醒信号WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
  3. 根据权利要求2所述的方法,其中,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息;
    所述终端根据所述配置信息,确定多个唤醒信号WUS监听位置和/或多个WUS监听时间段,包括:
    所述终端根据所述WUS监听位置和/或WUS监听时间段的相关信息,确定多个WUS监听位置和/或多个WUS监听时间段。
  4. 根据权利要求2所述的方法,其中,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息;
    所述终端根据所述配置信息,确定多个唤醒信号WUS的监听位置和/或 多个WUS监听时间段,和,一个DRX周期内的多个候选DRX激活期,包括:
    所述终端根据所述WUS监听位置和/或WUS监听时间段的相关信息,确定多个唤醒信号WUS监听位置和/或WUS监听时间段;和/或
    所述终端根据所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息,确定所述候选DRX激活期的起始位置。
  5. 根据权利要求3或4所述的方法,其中,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
    一个或多个WUS监听位置的起始位置;
    持续监听的时间段。
  6. 根据权利要求4所述的方法,其中,所述候选DRX激活期相关信息包括如下至少一项:
    一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
    一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
    高层信令配置。
  7. 根据权利要求1所述的方法,其中,所述终端进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期,包括:
    所述终端进行多个WUS监听,根据第一规则确定监听到的目标WUS,并根据所述监听到的目标WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    其中,所述第一规则用于所述终端在所述多个WUS的监听时间段中确定所述目标WUS。
  8. 根据权利要求7所述的方法,其中,所述终端进行多个WUS监听,根据第一规则确定监听到的目标WUS,并根据所述监听到的目标WUS中的指示信息唤醒或不唤醒候选DRX激活期,包括以下一项或者多项:
    在所述多个WUS的监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听 机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    在所述多个WUS的监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    在所述多个WUS的监听时间段中,所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
  9. 根据权利要求4所述的方法,其中,所述终端进行WUS监听,并根据监听结果唤醒或不唤醒所述目标DRX激活期,包括:
    所述终端进行多个WUS监听,根据第二规则确定在一个DRX周期内监听到的目标WUS,并确定与所述监听到的目标WUS关联的候选DRX激活期的起始位置,根据所述监听到的目标WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
    其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端在DRX周期内中确定所述目标WUS。
  10. 根据权利要求9所述的方法,其中,所述终端进行多个WUS监听,根据第二规则确定在一个DRX周期内监听到的目标WUS,并确定与所述监听到的目标WUS关联的候选DRX激活期的起始位置,根据所述监听到的目标WUS中的指示信息确定唤醒或不唤醒所述关联的候选DRX激活期,包括以下一项或者多项:
    在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
    在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机 会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
  11. 根据权利要求4所述的方法,其中,所述配置信息中还包括预设数量,所述方法还包括:
    在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
  12. 根据权利要求2所述的方法,其中,
    在所述WUS监听位置或监听时间段与目标格式的下行控制信息DCI的监听窗口重叠或不重叠的情况下,所述方法,包括以下一项或者多项:
    所述终端对WUS进行监听;
    所述终端对所述目标格式的DCI进行监听;
    所述终端对WUS和所述目标格式的DCI均进行监听。
  13. 根据权利要求2所述的方法,其中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
  14. 一种终端,所述终端包括:
    接收单元,用于从网络设备接收配置信息;
    处理单元,用于根据所述配置信息确定基于多个WUS确定的DRX周期内的一个或多个目标DRX激活期;所述终端进行WUS监听,并根据监听结果唤醒或不唤醒所述一个或多个目标DRX激活期。
  15. 根据权利要求14所述的终端,其中,所述处理单元,进一步用于:
    根据所述配置信息确定多个WUS监听位置和/或多个WUS监听时间段,和/或,一个DRX周期内的多个候选DRX激活期,所述多个候选DRX激活期的起始位置根据所述多个WUS监听位置或多个WUS监听时间段确定。
  16. 根据权利要求15所述的终端,其中,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相 关信息;
    所述处理单元,进一步用于根据所述WUS监听位置和/或WUS监听时间段的相关信息,确定多个WUS的监听位置和/或多个WUS的监听时间段。
  17. 根据权利要求15所述的终端,其中,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息;
    所述处理单元,进一步用于所述终端根据所述WUS监听位置和/或WUS监听时间段的相关信息,确定多个WUS的监听位置和/或WUS的监听时间段;和/或
    所述终端根据所述与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息,确定所述候选DRX激活期的起始位置。
  18. 根据权利要求16或17所述的终端,其中,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
    一个或多个WUS监听位置的起始位置;
    持续监听的时间段。
  19. 根据权利要求17所述的终端,其中,所述候选DRX激活期相关信息包括如下至少一项:
    一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
    一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
    高层信令配置。
  20. 根据权利要求14所述的终端,其中,所述处理单元,进一步用于:
    所述终端进行多个WUS监听,根据第一规则确定监听到的目标WUS,并根据所述监听到的目标WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    其中,所述第一规则用于所述终端在所述多个WUS的监听时间段中确定所述目标WUS。
  21. 根据权利要求20所述的终端,其中,所述处理单元,进一步用于以下一项或者多项:
    在所述多个WUS的监听时间段中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止在当前WUS监听时间段内的其他监听机会的WUS监听,根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    在所述多个WUS的监听时间段中的每个WUS监听时间段内,所述终端对每个WUS监听机会进行WUS监听,且监听到多个WUS的情况下,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期;
    在所述多个WUS的监听时间段中,所述终端监听到WUS的情况下,所述终端停止在其他WUS监听时间段内的WUS监听,根据监听到的WUS中的指示信息唤醒或不唤醒候选DRX激活期。
  22. 根据权利要求17所述的终端,其中,所述处理单元,进一步用于:
    所述终端进行多个WUS监听,根据第二规则确定在一个DRX周期内监听到的目标WUS,并确定与所述监听到的目标WUS关联的候选DRX激活期的起始位置,根据所述监听到的目标WUS中的指示信息确定唤醒或不唤醒所述关联的DRX激活期;
    其中,在一个DRX周期内多个WUS监听位置和/或WUS监听时间段对应多个候选DRX激活期的起始位置,所述第二规则用于所述终端在DRX周期内中确定所述目标WUS。
  23. 根据权利要求22所述的终端,其中,所述处理单元,进一步用于以下一项或者多项:
    在一个DRX周期中的每个WUS监听时间段内,所述终端监听到WUS的情况下,所述终端停止监听所述WUS监听时间段内的其他WUS,所述终端根据监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期;
    在一个DRX周期中的每个WUS监听时间段内,所述终端对所有监听机 会进行监听,若监听到多个WUS且所述多个WUS中的指示信息不同,所述终端根据最新监听到的WUS中的指示信息唤醒或不唤醒所述关联的候选DRX激活期。
  24. 根据权利要求17所述的终端,其中,所述配置信息中还包括预设数量,所述处理单元,还用于:
    在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
  25. 根据权利要求15所述的终端,其中,
    所述处理单元在所述WUS监听位置或监听时间段与目标格式的DCI的监听窗口重叠或不重叠的情况下,进一步用于以下一项或者多项:
    所述终端对WUS进行监听;
    所述终端对所述目标格式的DCI进行监听;
    所述终端对WUS和所述目标格式的DCI均进行监听。
  26. 根据权利要求15所述的终端,其中,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
  27. 一种非连续接收DRX通信方法,所述方法包括:
    网络设备向终端发送配置信息,所述配置信息用于所述终端基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期。
  28. 根据权利要求27所述的方法,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,和/或,一个DRX周期内的多个候选DRX激活期。
  29. 根据权利要求28所述的方法,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息。
  30. 根据权利要求28所述的方法,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相 关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息。
  31. 根据权利要求29或30所述的方法,其特征在于,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
    一个或多个WUS监听位置的起始位置;
    持续监听的时间段。
  32. 根据权利要求30所述的方法,其特征在于,所述候选DRX激活期相关信息包括以下至少一项:
    一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
    一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
    高层信令配置。
  33. 根据权利要求30所述的方法,其特征在于,所述配置信息中还包括预设数量;
    其中,所述预设数量用于在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
  34. 根据权利要求30所述的方法,其特征在于,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
  35. 一种网络设备,其特征在于,所述网络设备包括:
    发送单元,用于所述网络设备向终端发送配置信息;
    其中,所述配置信息用于所述终端根据所述配置信息确定基于多个唤醒信号WUS确定的DRX周期内的一个或多个目标DRX激活期;所述终端进行WUS监听,根据监听结果唤醒或不唤醒所述一个或多个目标DRX激活期。
  36. 根据权利要求35所述的网络设备,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,和/或,一个DRX周期内的多个候选DRX激活期。
  37. 根据权利要求36所述的网络设备,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息。
  38. 根据权利要求36所述的网络设备,其特征在于,
    所述配置信息,包括:所述WUS监听位置和/或WUS监听时间段的相关信息,以及与WUS监听位置和/或WUS监听时间段关联的候选DRX激活期相关信息。
  39. 根据权利要求37或38所述的网络设备,其特征在于,所述WUS监听位置和/或WUS监听时间段的相关信息中至少包含以下一项或者多项:
    一个或多个WUS监听位置的起始位置;
    持续监听的时间段。
  40. 根据权利要求38所述的网络设备,其特征在于,所述候选DRX激活期相关信息包括以下至少一项:
    一个或多个候选DRX激活期的起始位置与WUS监听位置之间的偏移值;
    一个或多个候选DRX激活期的起始位置与WUS监听时间段之间的偏移值;
    高层信令配置。
  41. 根据权利要求38所述的网络设备,其特征在于,所述配置信息中还包括预设数量;
    其中,所述预设数量用于在所述终端唤醒的所述目标DRX激活期的数量达到所述预设数量的情况下,所述终端停止WUS监听,以及所述终端停止对剩余候选DRX激活期的唤醒或不唤醒。
  42. 根据权利要求38所述的网络设备,其特征在于,所述WUS是基于DCI的物理层信号,或者所述WUS是基于序列的物理层信号。
  43. 一种终端,包括存储器,收发机,处理器:
    所述存储器,用于存储计算机程序;所述收发机,用于在所述处理器的控制下收发数据;所述处理器,用于读取所述存储器中的计算机程序并执行 如权利要求1至13中任一项所述的DRX通信方法。
  44. 一种网络设备,包括存储器,收发机,处理器:
    所述存储器,用于存储计算机程序;所述收发机,用于在所述处理器的控制下收发数据;所述处理器,用于读取所述存储器中的计算机程序并执行如权利要求27至34中任一项所述的DRX通信方法。
  45. 计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序用于使计算机执行权利要求1至13中任一项所述的DRX通信方法,或者,所述计算机程序用于使计算机执行权利要求27至34中任一项所述的DRX通信方法。
PCT/CN2022/107915 2021-08-06 2022-07-26 Drx通信方法、终端及计算机可读存储介质 WO2023011252A1 (zh)

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