Power-saving processing method, power-saving processing device, terminal, and readable storage medium

The power-saving method and device address unnecessary power consumption in terminals by adjusting their states based on predefined conditions, optimizing power usage and reducing energy waste.

JP7752182B2Active Publication Date: 2025-10-09VIVO MOBILE COMM CO LTD

Patent Information

Application Number
JP2023540138
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-01-13
Filing Date
2022-01-07
Publication Date
2025-10-09
Estimated Expiration
2042-01-07

AI Technical Summary

Technical Problem

Unnecessary power consumption occurs in terminals due to the SL terminal remaining awake without valid data transmission in the DRX activation time, especially in LTE and NR systems.

Method used

A power-saving processing method and device that determine when to transmit power-saving information to adjust the state of terminals based on predefined conditions, allowing them to sleep, wake up, deactivate, or activate, thereby optimizing power usage.

Benefits of technology

This method effectively reduces unnecessary power consumption by controlling the state of terminals based on predefined conditions, ensuring efficient power management and reducing energy waste.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application discloses a power saving processing method, apparatus and terminal, the method including determining to transmit power saving information and / or determining to sleep or wake up or to be inactive or active of a target terminal based on a first terminal target condition or first information, where the power saving information indicates whether the target terminal is sleep or wake up or inactive or active, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.
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Description

[Technical Field]

[0001] The present application belongs to the field of communication technology, and specifically relates to a power-saving processing method, device and terminal. [Background technology]

[0002] Both Long Term Evolution (LTE) and New Radio (NR) introduce a discontinuous reception (DRX) mechanism to achieve power savings for terminals by arranging the DRX on and off times.

[0003] The LTE system supports sidelink (SL) transmission, i.e., data transmission directly between terminals (User Equipment, UE) at the physical layer. LTE sidelink is broadcast-based and can be used to support basic security-based communications for Vehicle-to-Everything (V2X), but does not apply to other more advanced V2X services. The 5th Generation Mobile Communication Technology (5G) NR system will support more advanced sidelink transmission designs, such as unicast, multicast, or groupcast, enabling it to support a more comprehensive range of service types.

[0004] The SL terminal must remain in the activated state, ie receive and / or transmit the target channel / signal, eg receive data, within the SL DRX activation time or duration.

[0005] However, in some conditions, the receiving terminal may be awake but without valid SL data transmission, leading to unnecessary power consumption in the receiving terminal. Summary of the Invention [Problem to be solved by the invention]

[0006] The embodiments of the present application provide a power-saving processing method, device, and terminal that can solve the problem in the conventional power-saving mechanism that unnecessary power consumption exists in the terminal. [Means for solving the problem]

[0007] According to a first aspect, an embodiment of the present application provides a power saving processing method, the method comprising: First terminal target condition and / or determining to transmit power saving information and / or determining to put the target terminal to sleep, wake up, deactivate or activate the target terminal based on the first information; Here, the power saving information indicates whether the target terminal is asleep or awake or inactive or activated, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.

[0008] According to a second aspect, an embodiment of the present application provides a power saving processing method, the method comprising: The second terminal determines whether the target terminal is to be asleep, woken up, inactive, or activated based on the power saving information transmitted by the first terminal; Here, the target terminal includes a second terminal and / or a first terminal that performs sidelink communication with the second terminal.

[0009] According to a third aspect, an embodiment of the present application provides a power saving processing method, the method comprising: The third terminal performs a power saving process on at least one of the third terminal and the fourth terminal based on a predefined action.

[0010] According to a fourth aspect, an embodiment of the present application provides a power-saving processing device, the device comprising: Target Condition and / or a first determination module for determining transmission of power saving information and / or determining sleep, wake-up, inactivation, or activation of the target terminal based on the first information; Here, the power saving information indicates whether the target terminal is asleep or awake or inactive or activated, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.

[0011] According to a fifth aspect, an embodiment of the present application provides a power saving processing device, the device comprising: A second determination module is provided for determining whether the target terminal is to sleep or wake up or to be inactive or activated based on the power saving information transmitted by the first terminal; Here, the target terminal includes a second terminal and / or a first terminal that performs sidelink communication with the second terminal.

[0012] According to a sixth aspect, an embodiment of the present application provides a power-saving processing device, the device comprising: A processing module is included for performing a power saving process on at least one of the third terminal and the fourth terminal based on a predefined behavior.

[0013] According to a seventh aspect, an embodiment of the present application provides a terminal, the terminal including a processor, a memory, and a program or instruction stored in the memory and operable to run on the processor, the program or instruction being operable, when executed by the processor, to implement steps of the method according to the first aspect, or to implement steps of the method according to the second aspect, or to implement steps of the method according to the third aspect.

[0014] According to an eighth aspect, an embodiment of the present application provides a readable storage medium having a program or instructions stored thereon, the program or instructions, when executed by a processor, performing steps of the method according to the first aspect, or performing steps of the method according to the second aspect, or performing steps of the method according to the third aspect.

[0015] According to a ninth aspect, an embodiment of the present application provides a chip, the chip including a processor and a communication interface, the communication interface being coupled to the processor, the processor running a program or instruction of a network side device, and being used to implement the method according to the first aspect, or to implement the method according to the second aspect, or to implement the method according to the third aspect.

[0016] According to a tenth aspect, an embodiment of the present application provides a computer program product, the computer program product being stored in a non-transitory storage medium, the computer program product being executed by at least one processor to implement the method according to the first aspect, or to implement the method according to the second aspect, or to implement the method according to the third aspect. [Effects of the Invention]

[0017] In the embodiments of the present application, the control node controls whether to transmit power saving information, or controls whether to transmit power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink, and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal. [Brief explanation of the drawings]

[0018] [Figure 1] 1 illustrates a block diagram of a wireless communication system to which an embodiment of the present application can be applied. [Figure 2] 1 illustrates a first step flowchart of a power saving processing method according to an embodiment of the present application. [Figure 3] 3 illustrates a second step flowchart of a power saving processing method according to an embodiment of the present application. [Figure 4] 3 illustrates a third step flowchart of a power saving processing method according to an embodiment of the present application. [Figure 5] 1 illustrates a structural schematic diagram of a power-saving processing device according to an embodiment of the present application; [Figure 6] 2 illustrates a second structural schematic diagram of a power-saving processing device according to an embodiment of the present application. [Figure 7] 3 illustrates a third structural schematic diagram of a power-saving processing device according to an embodiment of the present application. [Figure 8] 1 illustrates a schematic structural diagram of a terminal according to an embodiment of the present application; [Figure 9] 2 illustrates a second structural schematic diagram of a terminal according to an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION

[0019] The following clearly and completely describes the technical solutions in the embodiments of the present application, in conjunction with the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only some of the embodiments of the present application, and not all of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without any creative efforts fall within the scope of protection of the present application.

[0020] The terms "first," "second," etc. in the specification and claims of this application are intended to distinguish between similar objects and are not intended to describe a particular order or sequence. It should be understood that such terms are interchangeable where appropriate, so that embodiments of this application may be performed in orders other than those illustrated or described herein, and that objects distinguished by "first," "second," etc. are generally of the same type and do not limit the number of objects; for example, a first object may be one or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates an "or" relationship between the related objects.

[0021] It should be noted that the techniques described in the embodiments of the present application are not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be applied to other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA), and other systems. The terms "system" and "network" in the embodiments of the present application are always used interchangeably, and the described techniques may be used in the above-mentioned systems and radio technologies as well as other systems and radio technologies. The following description describes a New Radio (NR) system for illustrative purposes, and uses NR terminology in most of the description below; these techniques may also be applied to applications other than NR system applications, such as 6th Generation (6G) communication systems.

[0022] 1 shows a block diagram of a wireless communication system to which the embodiments of the present application can be applied. The wireless communication system includes a terminal 11 and a control node 12. Here, the terminal 11 may be referred to as a terminal device or a user equipment (UE), and may be a terminal-side device such as a mobile phone, a tablet personal computer (PDA), a laptop computer (also called a notebook computer), a personal digital assistant (PDA), a palmtop computer, a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), a wearable device, a vehicle user equipment (VUE), a pedestrian user equipment (PUE), etc., and wearable devices include a bracelet, an earphone, glasses, etc. It should be noted that the specific type of the terminal 11 in the embodiments of the present application is not limited.The control node 12 may be a base station or a core network, where the base station may be called a Node B, an evolved Node B, an access point, a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a B node, an evolved B node (eNB), a home B node, a home evolved B node, a wireless local area network (WLAN) access point, a WiFi node, a transmitting receiving point (TRP), or any other suitable term in the art, as long as the same technical effect is achieved. The base station is not limited to a specific technical term. For illustrative purposes, the embodiments of this application only take base stations in an NR system as examples, but do not limit the specific type of base station.

[0023] Hereinafter, the power saving processing method, device and terminal according to the embodiments of the present application will be described in detail with reference to specific embodiments and application scenarios in conjunction with the drawings.

[0024] The first terminal, second terminal, third terminal and fourth terminal according to the embodiments of the present application are all terminals that support sidelink SL, and the SL terminal includes two resource allocation mechanisms as follows:

[0025] Mode 1 (Mode 1): The control node schedules resources for transmission to a terminal, and the receiving terminal may be a Mode 1 terminal or a Mode 2 terminal. In this application, a Mode 1 terminal is a terminal to which SL resources are scheduled or provided by the control node, and its name may be called Mode 1 or other modes, such as Mode 3, Mode 4, etc., and is not specifically limited here.

[0026] Mode 2: The terminal determines the resources for its own transmission by sensing.

[0027] It should be noted that the power saving processing method according to the embodiment of the present application is applicable to power saving in SL scenarios in licensed frequency bands and / or power saving in SL scenarios in unlicensed frequency bands, or to scenarios requiring energy saving at either end of transmission and reception (e.g., vehicle-to-pedestrian V2P), or scenarios requiring energy saving at both ends (e.g., communication via SL or other interfaces, such as peer-to-peer (P2P) or personal internet of things (or passive internet of things, PIOT)). A terminal may perform SL reception or transmission at different times, i.e., it may be a transmitting terminal and a receiving terminal, respectively.

[0028] As shown in FIG. 2, an embodiment of the present application provides a power-saving processing method, Step 201 includes a first terminal determining to transmit power saving information and / or determining to put the target terminal to sleep, wake up, inactivate or activate based on the target condition and / or the first information; Here, the power saving information indicates whether the target terminal is asleep or awake or inactive or activated, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.

[0029] Optionally, determining to put the target terminal to sleep or wake up or deactivate or activate includes determining that the target terminal is to sleep or wake up or deactivate or activate on a target link, where the target link includes a side link SL and / or Uu.

[0030] It should be noted that step 201 in the embodiment of the present application includes: The first terminal determines transmission of power saving information based on the target condition; Determining that the first terminal is to sleep, wake up, deactivate, or activate on the SL based on a target condition; determining that the first terminal is to sleep or wake up or be inactive or activated on Uu based on a target condition; determining that the first terminal is to sleep or wake up or be deactivated or activated on the SL and Uu based on a target condition; The first terminal determines to transmit power saving information based on the first information; determining that a first terminal is to sleep, wake up, deactivate, or activate on a SL based on first information; determining that the first terminal is to sleep or wake up or be deactivated or activated on the SL and Uu based on the first information; The first terminal determines transmission of power saving information based on the target condition and the first information; determining that the first terminal is to sleep, wake up, deactivate, or activate on the SL based on the target condition and the first information; determining that the first terminal is to sleep, wake up, deactivate, or activate on Uu based on the target condition and the first information; determining that the first terminal is to sleep, wake up, deactivate, or activate on the SL and Uu based on the target condition and the first information; The first terminal determines whether to be asleep, woken up, inactive, or activated on the SL based on the target condition and the power saving information transmission; determining whether the first terminal is to transmit power saving information and be asleep, woken up, inactive, or activated on Uu based on a target condition; The first terminal determines whether to transmit power saving information and whether to sleep, wake up, deactivate, or activate on the SL and Uu based on a target condition; The first terminal determines whether to be asleep, woken up, inactive, or activated on the SL in response to the transmission of power saving information based on the first information; The first terminal determines, based on the first information, whether to transmit power saving information and whether to be asleep, woken up, inactive, or activated on Uu; The first terminal determines, based on the first information, whether to transmit power saving information and whether to sleep, wake up, deactivate, or activate on the SL and Uu; The first terminal determines whether to be asleep, woken up, inactive, or activated on the SL based on the target condition and the first information, and transmits power saving information; determining whether the first terminal is to transmit power saving information and be asleep, woken up, inactive, or activated on Uu based on the target condition and the first information; The first terminal includes at least a plurality of situations including transmitting power saving information and deciding to be asleep, woken up, inactive or activated on the SL and Uu based on the target condition and the first information.

[0031] In the embodiments of the present application, "transmission" refers to sending or receiving, i.e., the transmission of the power saving information of the first terminal includes at least one of the following: the first terminal sending the power saving information; the first terminal receiving the power saving information; the first terminal not sending the power saving information; and the first terminal not receiving the power saving information.

[0032] It should be noted that the sleep or wake-up or inactivation or activation of the first terminal (or the second terminal) mentioned in the embodiments of the present application may be 1. relates to an SL power saving mechanism and may be interpreted as sleep or waking up or deactivating or activating an SL power saving mechanism of a first terminal, or sleep or waking up or deactivating or activating an SL power saving mechanism of a second terminal; 2. Distinguishing whether some actions of a terminal can be performed normally regardless of whether an SL power saving mechanism exists, including, for example, when a first terminal is activated or woken up, the corresponding actions can be performed, and when a first terminal is asleep or deactivated, the corresponding actions cannot be performed.

[0033] In other words, activation or wake-up may be interpreted as entering the SL power saving mechanism activation time or activating or waking up within the activation time or activation time of the SL power saving mechanism, and may refer to the ability to perform a certain action, such as being able to measure, receive data, receive control, receive a synchronization signal, be able to sense, be able to provide feedback, etc.

[0034] Deactivation or sleep may be interpreted as the SL power saving mechanism entering an inactive time, or deactivating or sleeping during the activation time of the SL power saving mechanism or within the activation time, and may refer to non-performance of an action, such as at least one of non-measurement, non-reception of data, non-reception of control, non-reception of synchronization signals, non-sensing, non-feedback, etc.

[0035] Here, the SL power saving mechanism may be SL DRX or SL power saving sensing, and the power saving sensing may be partial sensing, or may be some simplified or short or aperiodic or triggered sensing.

[0036] SL DRX may be used to control sensing, measurement, monitoring and / or transmission (transmission referred to in this application is reception or transmission) of a terminal to a target object, which includes at least one of a control channel, a control signal, a data channel, a data signal, a reference signal, a feedback signal, a feedback channel, a request message and a response message.

[0037] Power-saving sensing may be understood as a partial sensing mechanism that includes a monitoring window and a selection window.

[0038] It should be noted that the "power saving information" referred to in the embodiments of the present application may be an SL wake-up signal (Wake Up Single, WUS), and may also be referred to as status notification information, sleep notification information, off notification information, wake notification information, or on notification information, and is not specifically limited herein.

[0039] It should be noted that in the embodiments of the present application, when determining to sleep or wake up or to be inactive or activated based on the target condition, the first terminal is within the coverage of the control node (the first terminal may be a mode1 terminal, a connected state mode2 terminal or an idle state mode2 terminal), or the control node may be the first configuration / scheduling SL resource, where the control node is a base station or a terminal, and the scenarios corresponding to the target condition mainly include the following scenarios:

[0040] Scenario 1: Intra-Radio Access Technology (RAT) (there is one radio access technology), for example, in the case of at least one of the following conditions: the control node is an NR control node, the Uu of the first terminal is an NR Uu, and there is an NR Uu DRX corresponding to the Uu interface of the first terminal, the target condition in this scenario is a condition related to the NR Uu interface among the following conditions: Scenario 2: In the case of inter-RAT (there are at least two radio access technologies), for example, the control node is an LTE control node, the Uu of the first terminal is an LTE Uu, and there is at least one LTE Uu DRX corresponding to the Uu interface of the first terminal, the target condition in this scenario is a condition related to the LTE Uu interface among the following conditions: Scenario 3: When both intra-RAT and / or inter-RAT are considered, the target conditions are conditions that apply to both the NR Uu interface and the LTE Uu interface; Scenario 4, some conditions unrelated to Uu.

[0041] In one alternative embodiment, the target condition includes a first condition, and in step 201, the first terminal determines to transmit power saving information based on the target condition: When a first condition is met, the first terminal transmits the power saving information to instruct the target terminal to be asleep or inactive, for example, the power saving information instructs the first terminal to be in a sleep state or an inactive state, and / or the power saving information instructs the second terminal to enter a sleep state or an inactive state.

[0042] For example, if the power saving information is configured to be able to indicate sleep or inactivity, and / or wakeup or activation, the first terminal needs to transmit the power saving information to indicate sleep or inactivity. If the SL is configured so that an indication "1" indicates wakeup or activation and an indication "0" indicates sleep or inactivity, then the first terminal transmits power saving information with an indication "0" to the second terminal.

[0043] Alternatively, the target condition includes a first condition, and in step 201, the first terminal determines to transmit power saving information based on the target condition; The method includes determining not to transmit the power saving information if the first condition is met, where not transmitting the power saving information is used to indirectly indicate dormancy or inactivity of the target terminal. For example, if the behavior is defined as not transmitting power saving information, the target terminal will be dormant or inactive by default, and there is no need to transmit power saving information if the first condition is met at this time. For further example, if the behavior is defined as not transmitting power saving information, the DRX configuration will be enabled or used by default, and there is no need to transmit power saving information if the first condition is met at this time. For example, if the behavior is defined as not receiving power saving information, the target terminal will be dormant / inactive by default, and there is also, for example, if the behavior is defined as not receiving power saving information, the DRX configuration will be enabled / used by default.

[0044] In another alternative embodiment, the target condition includes a first condition, and determining whether the target terminal is dormant or awake or inactive or active in step 201 includes: It includes determining that the target terminal is dormant or inactive if the first condition is met.

[0045] Optionally, the first terminal is the receiving terminal, i.e. determines the receiving terminal to be dormant or inactive if the first condition is met.

[0046] Optionally, the second terminal is a Mode 1 terminal.

[0047] Optionally, the first terminal is a Mode 1 terminal or a Mode 2 terminal, which is not specifically limited here.

[0048] In at least one embodiment of the present application, the first condition includes at least one of the following:

[0049] 1) There are no resources available for SL transmission within a first preset time (which may also be referred to as no resources available for SL transmission within a first preset time), for example, the no resources available for SL transmission within the first preset time may be notified by a control node or determined by the first terminal itself by some prior information, specifically, there are no resources available for SL transmission in the first terminal or the second terminal within the first preset time; 2) There is no resource that satisfies the first preset requirement available for SL transmission within the second preset time (which may also be referred to as there being no resource that satisfies the first preset requirement and is available for SL transmission within the second preset time), for example, the absence of a resource that satisfies the first preset requirement available for SL transmission within the second preset time may be notified by the control node or determined by the first terminal itself by some prior information, specifically, there may be no resource that satisfies the first preset condition in the first terminal or the second terminal for SL transmission within the second preset time, Optionally, the first preset requirement is that the number of resources available for SL transmission is greater than a certain threshold.

[0050] Optionally, the first preset time and / or the second preset time are One or more activation times of the power saving mechanism; one or more power saving mechanism periods of the power saving mechanism; One or more reservation periods.

[0051] For example, the power saving mechanism is any one of Uu DRX (e.g., NR Uu DRX and / or LTE Uu DRX) of the first terminal, SL DRX of the first terminal, SL DRX of the second terminal, power saving monitoring configuration of the first terminal, power saving monitoring configuration of the second terminal, random resource selection of the first terminal, and random resource selection of the second terminal.

[0052] 3) The timer or monitoring window for monitoring SL Downlink Control Information (DCI) has timed out or is invalid; 4) A timer or a monitoring window for monitoring the SL DCI is not obtained, for example, the control node does not configure a timer or a monitoring window for monitoring the SL DCI; 5) The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism, for example, NR Uu DRX enters an inactive time and / or LTE Uu DRX enters an inactive time; 6) The time interval between the current time of the first terminal and the inactive time corresponding to the Uu power saving mechanism is smaller than a first threshold, in other words, the Uu interface of the first terminal will soon enter the inactive time corresponding to the Uu power saving mechanism, for example, the NR Uu DRX will soon enter the inactive time and / or the LTE Uu DRX will soon enter the inactive time; 7) The Uu interface of the first terminal is dormant or is instructed to be dormant, where the dormancy of the Uu interface is dormancy, deactivation, idle, inactive, or power saving mode, for example, the NR Uu WUS (for example, DCI format 2 to 6) indicates that the first terminal should be dormant on the Uu or does not need to wake up, for example, the NR DCI indicates that a certain bandwidth part (BWP) on the Uu is dormant; 8) The Uu interface of the first terminal goes into dormancy after a third preset time or is instructed to go into dormancy after a third preset time, in other words, the Uu interface of the first terminal will soon go into dormancy or is instructed to go into dormancy soon, where the dormancy of the Uu interface is dormancy, deactivation, idle, inactive, or power saving mode, and the third preset time is less than a certain threshold, for example, the NR Uu interface is instructed to go into dormancy or is instructed to go into dormancy soon, and further, for example, the LTE Uu interface is instructed to go into dormancy or is instructed to go into dormancy soon; 9) The cell or carrier or bandwidth portion BWP in which the SL DCI (which may be issued by the control node to the first terminal and may also be issued to the second terminal) is located is in a dormant state or is indicated as being in a dormant state, for example, the control node indicates to the first terminal and / or the second terminal that the cell or carrier or bandwidth portion BWP in which the SL DCI is located is in a dormant state; Optionally, the first terminal and / or the second terminal are Mode 1 terminals; Alternatively, the control node may be a base station, a terminal capable of scheduling, a header terminal (header UE, for example, a header terminal in a terminal group), or a terminal that provides auxiliary information, and is not specifically limited here.

[0053] 10) The cell or carrier in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located or the cell group (e.g., secondary cell group Scell ​​group) to which the BWP belongs is in a dormant state or is indicated as a dormant state; Optionally, the first terminal and / or the second terminal are Mode 1 terminals; 11) The cell, carrier, or BWP in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located is deactivated; Optionally, the first terminal and / or the second terminal are Mode 1 terminals; 12) The cell, carrier, or BWP in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located is deactivated after a fourth preset time or is instructed to be deactivated after a fourth preset time, in other words, the cell, carrier, or BWP in which the SL DCI is located is soon deactivated or is instructed to be deactivated soon, and the fourth preset time is less than a certain threshold; Optionally, the first terminal and / or the second terminal are Mode 1 terminals; 13) The target terminal switches to the first target controlled resource; 14) the target terminal switches to the first target controlled resource after a fifth preset time; In other words, for 13) and 14), the target terminal performs or is about to perform a control resource switch and may be referred to as switching to a first target control resource, where the first target control resource is not used to transmit SL DCI, or is not used to monitor SL DCI, or does not support SL DCI, or does not include SL DCI; Alternatively, the control resource may be a search space, i.e., performing search space switching; a control resource set (CORESET), i.e., performing CORESET switching; a control channel unit (Control Channel Element, CCE), i.e., performing CCE switching; or a physical downlink control channel (PDCCH) candidate, i.e., performing PDCCH candidate switching.

[0054] Optionally, in such a case, the first terminal and / or the second terminal are Mode 1 terminals; 15) The target terminal switches to the first target BWP or the first target cell or the first target carrier; 16) The target terminal switches to the first target BWP or the first target cell or the first target carrier after a sixth preset time; In other words, for 15) and 16), the target terminal performs or is about to perform a BWP or cell or carrier switch, which may also be referred to as switching to a first BWP or first target cell or first target carrier, where the first target BWP or first target cell or first target carrier is unavailable for SL transmission, or is not reusable for SL transmission, or does not include SL resources, or does not support SL, or is not associated with a second target BWP or second target cell or second target carrier, and the second target BWP or second target cell or second target carrier is available for SL transmission, or is reusable for SL transmission, or includes SL resources, or supports SL; For example, an uplink UL BWP1 is associated with an SL BWP, and the target terminal switches to a downlink DL BWP2, and its uplink also automatically switches to UL BWP2, which is unrelated to the SL BWP.

[0055] 17) The first terminal has not detected a paging wake-up signal on a resource or candidate resource of a paging wake-up signal (e.g., a paging WUS, a mechanical communication physical downlink control channel MPDCCH, or an enhanced physical downlink control channel EPDCCH). For example, the first terminal has acquired a paging wake-up signal configuration but has not monitored a paging wake-up signal on a candidate resource of the paging wake-up signal. In this case, the first terminal does not need to detect a future paging occasion (PO); 18) The cell, carrier, or BWP where the SL resource is located is deactivated, and optionally, the cell, carrier, or BWP where the SL resource acquired by the first terminal and / or the second terminal is located is deactivated; For example, the cell, carrier, or BWP on which the SL CG (location grant) type 1 resource obtained by the first terminal is located is deactivated, and further, for example, the control node may schedule resources on cell 1 for the SL transmission of the first terminal, but cell 1 is deactivated; 19) The cell or carrier or BWP where the SL resource is located is deactivated after a seventh preset time, optionally, the cell or carrier or BWP where the SL resource acquired by the first terminal and / or the second terminal is located is deactivated soon, where the seventh preset time is less than a certain threshold; 20) During an eighth preset time period, the number of target SL resources is less than a second threshold, and the second threshold is greater than or equal to 0. Optionally, the eighth preset time period is one or more activation times; Alternatively, the target SL resources may be resources in the target resource pool, or resources in any resource pool, or available SL resources, or resources available for SL, or resources with resources corresponding to Hybrid Automatic Repeat Request Acknowledgement (HARQ-ACK); For example, the Uu resources indicated by the uplink / downlink configuration or slot format indication (SFI) include resources within a certain On duration, and the overlapping resources are indicated as downlink or flexible, which may trigger the determination of transmitting power saving information at this time; Furthermore, for example, the transmitting terminal may determine in advance whether to trigger a decision to transmit power saving information based on an overlap situation between DRX and (e.g., semi-static or dynamic) Uu resources, and may trigger a decision to transmit power saving information when, for example, a certain on duration is canceled out by a Physical Random Access Channel (PRACH), or a UL CG, or a Reference Signal (RS), or a Physical Uplink Shared Channel (PUSCH), or a Physical Uplink Control Channel (PUCCH), or there are too few SL resources in a certain on duration, or there are too few SL resources belonging to a target resource pool in a certain on duration; Furthermore, for example, the time unit of the DRX period is physical time, global logic time, or logic time, and when there are too few SL resources within a certain on duration or there are too few SL resources belonging to a target resource pool within a certain on duration, triggering to determine transmission of power saving information; Furthermore, for example, if a certain on duration does not include a resource pool for PSFCH, but only transport blocks (TBs) that require / enable HARQ-ACK feedback are temporarily transmitted between a transmitting terminal and a receiving terminal, a determination to transmit power saving information is triggered.

[0056] 21) When a first preset communication condition is satisfied, which may be referred to as a condition unrelated to Uu, and two terminals do not need to communicate with each other or do not care much about communication quality, triggering a decision to transmit power saving information, thereby indicating DRX sleep or inactivity; For example, satisfying the first preset communication condition may be the buffer of the first terminal and / or the second terminal is empty; The distance between the first terminal and the second terminal is greater than a preset distance 1; The distance between the first terminal and the second terminal is smaller than a preset distance 2; The first terminal needs to periodically transmit a SL WUS; A failure to establish a connection between the first terminal and the second terminal; A connection between the first terminal and the second terminal is established; and a failure of feedback or response between the first terminal and the second terminal; successful feedback or response between the first terminal and the second terminal; The first terminal does not have available resources to transmit feedback information to the second terminal; and The resources acquired by the first terminal and / or the second terminal do not meet the preset requirements; and the first terminal does not have a transmission associated with the second terminal; The remaining power of the first terminal and / or the second terminal is lower than a threshold A; the first terminal and / or the second terminal being in a power saving mode.

[0057] Optionally, the first terminal and / or the second terminal are Mode 1 terminals; Optionally, the first terminal and / or the second terminal are Mode 2 terminals; 22) The resource selection mechanism of the target terminal is full sensing, and full sensing may be interpreted as sensing being performed continuously or sensing being performed continuously over a certain time window; 23) The SL power saving mechanism of the target terminal is dormant or inactive; 24) The SL power saving mechanism configuration of the target terminal is enabled or in use; 25) The target terminal disables power-saving sensing or resource random selection; Here, in 22) to 25), the target terminal is the first terminal and / or the second terminal, and the possible combination conditions in 22) to 25) include at least one of the following: a1) When the resource selection mechanism (such as switching / using / activating) of UE A is full sensing, and / or the DRX of UE B is dormant / deactivated, at this time, the first terminal determines to transmit power saving information and instructs the DRX of UE B to dormant / deactivated, and / or UE A (such as switching / using / activating) is full sensing; b1) When the resource selection mechanism (for example, switching / using / activating) of UE A is full sensing, and / or the DRX configuration of UE B is enabled / used, at this time, the first terminal decides to transmit power saving information and indicates that the DRX configuration of UE B is enabled / used (it is understood that the start of transmission of the terminal is subject to the DRX configuration restriction at this time), and / or UE A (for example, switching / using / activating) is full sensing, c1) When UE A disables power saving sensing or resource random selection, and / or UE B's DRX is in sleep / deactivation, at this time, the first terminal determines to transmit power saving information and instructs UE B's DRX to sleep / deactivate, and / or UE A disables power saving sensing or resource random selection; d1) When UE A disables power saving sensing or resource random selection, and / or when UE B's DRX configuration is enabled / used, at this time the first terminal decides to transmit an SL WUS and indicates that UE B's DRX configuration is enabled / used (it is understood that at this time the start of transmission of the terminal is subject to the restrictions of the DRX configuration), and / or UE A disables power saving sensing or resource random selection.

[0058] It should be noted that the first terminal may be UE A or UE B.

[0059] It should be noted that the above conditions 1) to 17) relate to the NR Uu interface or the LTE Uu interface, respectively.

[0060] For example, if the Uu of the first terminal is an NR Uu and the Uu interface of the first terminal has a corresponding NR Uu DRX, the NR Uu interface of the first terminal needs to remain dormant so that the control node does not schedule the first terminal for SL transmission, or the NR control node does not have resources available to provide the first terminal for SL transmission for a certain period of time. Alternatively, in the above case, the first terminal is a transmitting terminal or a receiving terminal. Preferably, the first terminal is a transmitting terminal, e.g., a Mode 1 terminal, and at this time, the second terminal does not need to remain active at all times to attempt reception and monitoring. Therefore, the first terminal may notify the second terminal by triggering a decision to transmit power saving information so that the second terminal can sleep at a subsequent time. Alternatively, if the first terminal is a receiving terminal, e.g., a Mode 2 terminal in coverage, the first terminal may notify the second terminal that the first terminal will go dormant within the next period of time, and then the second terminal may avoid transmitting to the first terminal at the next activation time by triggering a decision to transmit power saving information.

[0061] Further, for example, the Uu of the first terminal is an LTE Uu, and the Uu interface of the first terminal has a corresponding LTE Uu DRX. In such a case, the LTE Uu interface of the first terminal may remain dormant. If the SL DRX of the first terminal is still in an activated state, better power saving cannot be guaranteed in such a case. A possible power saving method is to maintain alignment or overlap between the SL DRX activation time and the Uu DRX activation time of the first terminal to realize internal coordination, and to inform the second terminal that the first terminal will go dormant within the next time, and then the second terminal may avoid transmitting to the first terminal at the next activation time.

[0062] Regarding conditions 18) to 20), the SL resources of the first terminal may be deactivated (i.e., invalid), and the first terminal may no longer be able to continue transmission to the second terminal using these resources. Optionally, in the above cases, the first terminal may be a transmitting terminal or a receiving terminal. Preferably, since the first terminal is a transmitting terminal, e.g., a Mode 1 terminal, the first terminal may notify the second terminal that it can go to sleep in the following time by triggering a decision to transmit power saving information. Alternatively, if the first terminal is a receiving terminal, e.g., a Mode 2 terminal in coverage, the first terminal may notify the second terminal that it can go to sleep in the next time by triggering a decision to transmit new power saving information, and then the second terminal may avoid transmission to the first terminal in the next activation time.

[0063] In another alternative embodiment, the target condition includes a second condition, and the first terminal determines to transmit the power saving information based on the target condition in step 201: When a second condition is satisfied, the first terminal transmits the power saving information for instructing the target terminal to wake up or activate, for example, the power saving information instructs the first terminal to be in a wake-up state or an activation state, or the power saving information instructs the second terminal to enter a wake-up state or an activation state; For example, if the power saving information is configured to be able to indicate sleep or inactivity, and / or wakeup or activation, the first terminal needs to transmit the power saving information to indicate sleep or inactivity. If the SL is configured so that an indication "1" indicates wakeup or activation and an indication "0" indicates sleep or inactivity, then the first terminal transmits power saving information with an indication "1" to the second terminal.

[0064] Alternatively, the target condition includes a second condition, and in step 201, the first terminal determines to transmit the power saving information based on the target condition; and determining not to transmit the power saving information if a second condition is met, where not transmitting the power saving information is used to indirectly instruct the target terminal to wake up or activate. For example, if the action is defined to not transmit power saving information, the target terminal is woken up or activated by default, and there is no need to transmit power saving information if the first condition is met at this time. For further example, if the action is defined to not transmit power saving information, there is no DRX configuration, or the DRX configuration is disabled, or the DRX configuration is not used by default, and there is no need to transmit power saving information if the first condition is met at this time. For further example, if the action is defined to not receive power saving information, the target terminal is woken up or activated by default, and there is no DRX configuration, or the DRX configuration is disabled, or the DRX configuration is not used by default, and there is no DRX configuration.

[0065] In another alternative embodiment, the target condition includes a second condition, and determining whether the target terminal is asleep or awake or inactive or active in step 201 includes: and determining to wake up or activate the target terminal if a second condition is met.

[0066] Optionally, the first terminal is the receiving terminal, i.e. determines the receiving terminal to be dormant or inactive if the first condition is met.

[0067] Optionally, the second terminal is a Mode 1 terminal, and the first terminal is a Mode 1 terminal or a Mode 2 terminal, which are not specifically limited here.

[0068] In at least one embodiment of the present application, the second condition includes at least one of the following: 31) There are resources available for SL transmission within a tenth preset time (which may also be referred to as there being resources available for SL transmission within a tenth preset time), for example, the presence of resources available for SL transmission within a tenth preset time may be signaled by a control node or determined by the first terminal itself by some prior information, specifically, there are resources to the first terminal or the second terminal for SL transmission within a tenth preset time, 32) There are resources that satisfy the second preset requirements available for SL transmission within the eleventh preset time (this may also be referred to as there being resources that satisfy the second preset requirements and are available for SL transmission within the eleventh preset time), for example, the presence of resources that satisfy the second preset requirements available for SL transmission within the eleventh preset time may be signaled by a control node or determined by the first terminal itself by some prior information, specifically, there may be resources that satisfy the second preset conditions to the first terminal or the second terminal for SL transmission within the eleventh preset time, Optionally, the second preset requirement is that the number of resources available for SL transmission is greater than a certain threshold; Optionally, the tenth preset time and / or the eleventh preset time are One or more activation times of the power saving mechanism; one or more power saving mechanism periods of the power saving mechanism; One or more reservation periods.

[0069] For example, the power saving mechanism is any one of Uu DRX (e.g., NR Uu DRX and / or LTE Uu DRX) of the first terminal, SL DRX of the first terminal, SL DRX of the second terminal, power saving monitoring configuration of the first terminal, power saving monitoring configuration of the second terminal, random resource selection of the first terminal, and random resource selection of the second terminal.

[0070] 33) A timer or a monitoring window for monitoring SL DCI is on or restarted or running, for example, the control node configures a timer or a monitoring window for monitoring SL DCI; 34) A timer or monitoring window for monitoring SL DCI is acquired, 35) The Uu interface of the first terminal is in a wake-up time or an activation time corresponding to a Uu power saving mechanism, for example, NR Uu DRX enters an activation time or a wake-up time, and / or LTE Uu DRX enters an activation time or a wake-up time; 36) The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is smaller than a third threshold, in other words, the Uu interface of the first terminal will soon enter the wake-up time corresponding to the Uu power saving mechanism, for example, the NR Uu DRX will soon enter the wake-up time and / or the LTE Uu DRX will soon enter the wake-up time; 37) The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is smaller than a fourth threshold, in other words, the Uu interface of the first terminal will soon enter the activation time corresponding to the Uu power saving mechanism, for example, the NR Uu DRX will soon enter the activation time, and / or the LTE Uu DRX will soon enter the activation time; 38) The Uu interface of the first terminal is woken up or instructed to wake up, for example, the NR Uu interface is woken up or instructed to wake up, and further, for example, the LTE Uu interface is woken up or instructed to wake up; 39) The Uu interface of the first terminal is activated or instructed to be activated, for example, the NR Uu interface is activated or instructed to be activated, and further, for example, the LTE Uu interface is activated or instructed to be activated; 40) The Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time, for example, the NR Uu interface is about to wake up or is instructed to wake up soon, and for example, the LTE Uu interface is about to wake up or is instructed to wake up soon; 41) The Uu interface of the first terminal is activated or instructed to activate after a thirteenth preset time, for example, the NR Uu interface is activated soon or instructed to activate soon, and for example, the LTE Uu interface is activated soon or instructed to activate soon; For example, the WUS (e.g., DCI format 2 to 6) of the NR Uu indicates that the Uu DRX of the first terminal should be woken up or does not need to be dormant; 42) The cell, carrier or bandwidth portion BWP in which the SL DCI (which may be issued to the first terminal and may also be issued to the second terminal) is located is in a non-dormant state, for example, the control node instructs the first terminal and / or the second terminal that the cell, carrier or bandwidth portion BWP in which the SL DCI is located is in a non-dormant state; 43) The cell or carrier or bandwidth portion BWP in which the SL DCI (which may be issued to the first terminal and may also be issued to the second terminal) is located is not indicated as dormant, for example, the control node has not indicated to the first terminal and / or the second terminal that the cell or carrier or bandwidth portion BWP in which the SL DCI is located is dormant, 44) The cell or carrier or cell group (e.g., secondary cell group Scell ​​group) to which the BWP belongs, in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located, is in a non-dormant state, for example, the control node instructs the first terminal and / or the second terminal that the cell or carrier or cell group to which the BWP in which the SL DCI is located belongs, is in a non-dormant state; 45) The cell or carrier or cell group to which the BWP belongs, in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located, is not indicated as dormant, for example, the control node has not indicated to the first terminal and / or the second terminal that the cell or carrier or cell group to which the BWP belongs, in which the SL DCI is located, is dormant; 46) A cell or carrier or BWP in which an SL DCI (which may be issued to a first terminal and may be issued to a second terminal) is located is woken up; 47) The cell or carrier or BWP in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located is activated; 48) A cell, carrier, or BWP in which an SL DCI (which may be issued to a first terminal or a second terminal) is located is woken up or instructed to wake up after a fourteenth preset time; 49) The cell, carrier, or BWP in which the SL DCI (which may be issued to the first terminal and may be issued to the second terminal) is located is activated or instructed to be activated after the fifteenth preset time; Optionally, in the cases of 35) to 49), the first terminal and / or the second terminal is a Mode 1 terminal; 50) The target terminal switches to a second target-controlled resource; 51) the target terminal switches to the second target controlled resource after a sixteenth preset time; In other words, for 50) and 51), the target terminal performs or is about to perform a control resource switch and switches to a second target control resource, which may be referred to as being available for SL DCI transmission, or available for SL DCI monitoring, or capable of supporting SL DCI, or including SL DCI, where the target terminal is at least one of a first terminal and a second terminal; Alternatively, the control resource may be a search space, i.e., performing search space switching; a control resource set (CORESET), i.e., performing CORESET switching; a control channel unit (Control Channel Element, CCE), i.e., performing CCE switching; or a PDCCH candidate, i.e., performing PDCCH candidate switching.

[0071] Optionally, the first terminal and / or the second terminal are Mode 1 terminals; 52) The target terminal switches to a third target BWP or a third target cell or a third target carrier; 53) The target terminal switches to the third target BWP or the third target cell or the third target carrier after a seventeenth preset time; In other words, for 52) and 53), the target terminal may perform or soon perform a BWP or cell or carrier switch and may be referred to as switching to a third BWP or third target cell or third target carrier, where the third target BWP or third target cell or third target carrier is available for SL transmission or is reusable for SL transmission or includes SL resources or supports SL or is associated with a fourth target BWP or fourth target cell or fourth target carrier, and the fourth target BWP or fourth target cell or fourth target carrier is available for SL transmission or is reusable for SL transmission or includes SL resources or supports SL, where the target terminal is at least one of the first terminal and the second terminal; 54) The first terminal exits from a power saving mode, for example, exits from a power saving mode; 55) The first terminal exits the power saving mode after an eighteenth preset time, for example, leaving the power saving mode shortly; 56) The first terminal needs to transmit target uplink data, for example, the target uplink data is any uplink data or specific uplink data, for example, timing information and / or MO data and / or positioning information; 57) The first terminal needs to perform a location update, for example, a periodic location update; 58) The first terminal does not acquire a paging wake-up signal (paging WUS) configuration, 59) The first terminal detects at least one paging wake-up signal on the candidate resource of the paging wake-up signal, for example, the first terminal acquires the paging wake-up signal configuration and detects at least one paging wake-up signal on the candidate resource of the paging wake-up signal, in this case, the first terminal needs to detect the next paging time PO; 60) Activating a cell or carrier or BWP where SL resources are located, optionally activating a cell or carrier or BWP where SL resources acquired by the first terminal and / or the second terminal are located; For example, the cell or carrier or BWP where the SL CG type 1 resource acquired by the first terminal is located is activated, and further, for example, the control node may schedule resources on cell 1 for the SL transmission of the first terminal, and cell 1 is activated; 61) The cell or carrier or BWP where the SL resource is located is activated after a nineteenth preset time, optionally, the cell or carrier or BWP where the SL resource acquired by the first terminal and / or the second terminal is located is activated soon, where the nineteenth preset time is less than a certain threshold; 62) Within a twentieth preset time, the number of target SL resources is equal to or greater than a fifth threshold, and the fifth threshold is equal to or greater than 0. Optionally, the twentieth preset time is one or more activation times; Alternatively, the target SL resources may be resources in the target resource pool, or resources in any resource pool, or available SL resources, or resources available for SL, or resources with corresponding HARQ-ACK resources.

[0072] 63) When a second preset communication condition is met, which may be called a condition unrelated to Uu, and two terminals need to communicate with each other or need to guarantee communication quality, triggering a decision to transmit power saving information to indicate DRX wake-up or activation; For example, the satisfaction of the second predetermined communication condition is The buffer of the first terminal and / or the second terminal is not empty; The distance between the first terminal and the second terminal is less than a preset distance 3; The distance between the first terminal and the second terminal is greater than a preset distance 4; The first terminal and / or the second terminal do not need to periodically transmit the SL WUS; A connection between the first terminal and the second terminal is successfully established; and successful feedback or response between the first terminal and the second terminal; The first terminal has available resources for transmitting feedback information to the second terminal; The resources acquired by the first terminal and / or the second terminal satisfy the preset requirements; and the first terminal having a transmission associated with the second terminal.

[0073] Optionally, the first terminal and / or the second terminal are Mode 1 terminals; Optionally, the first terminal and / or the second terminal are Mode 2 terminals; 64) The resource selection mechanism of the target terminal is power-saving sensing or random resource selection; 65) The SL power saving mechanism of the target device is woken up or activated; 66) The target device has not acquired the SL power saving mechanism configuration, 67) The target terminal's SL power saving mechanism configuration is disabled or not in use; 68) The resource selection mechanism of the target terminal is a full sensing resource selection mechanism, Here, in 64) to 68), the target terminal is a first terminal and / or a second terminal, and the possible combination conditions in 64) to 68) include at least one of the following: a2) When the resource selection mechanism (switching / using / activation) of UE A is power-saving sensing or resource random selection, and / or when the DRX of UE B is woken up / activated, at this time, the first terminal decides to transmit power-saving information and indicates that the DRX of UE B is woken up / activated, and / or UE A (switching / using / activation) is power-saving sensing or resource random selection; b2) If the resource selection mechanism (switching / using / activation) of UE A is power-saving sensing or resource random selection, and / or UE B does not obtain DRX / the DRX configuration is invalid / not used, then the first terminal decides to transmit power-saving information and indicates that UE B does not obtain DRX / the DRX configuration is invalid / not used (it should be understood that the transmission of the terminal is not limited to the restriction of the DRX configuration at this time), and / or UE A (switching / using / activation) is power-saving sensing or resource random selection; c2) When UE A activates full sensing, and / or when UE B's DRX is woken up / activated, at this time, the first terminal determines to transmit power saving information, and indicates that UE B's DRX is woken up / activated, and / or UE A activates full sensing; d2) When UE A activates full sensing, and / or UE B does not acquire DRX / the DRX configuration is invalid / not used, at this time, the first terminal decides to transmit power saving information and indicates that UE B does not acquire DRX / the DRX configuration is invalid / not used (it is understood that the start of transmission of the terminal is subject to the DRX configuration restriction at this time), and / or UE A activates full sensing; It should be noted that the first terminal may be UE A or UE B.

[0074] It should be noted that the above conditions 31) to 59) relate to the NR Uu interface or the LTE Uu interface, respectively.

[0075] For example, if the Uu of the first terminal is an NR Uu, and the Uu interface of the first terminal has a corresponding NR Uu DRX, the NR Uu interface of the first terminal may need to remain activated so that the control node can schedule the first terminal for SL transmission, or the NR control node may have resources available to the first terminal for SL transmission over a certain period of time. Alternatively, in the above case, the first terminal may be a transmitting terminal or a receiving terminal. Preferably, the first terminal is a transmitting terminal, e.g., a Mode 1 terminal, and the second terminal needs to remain activated to attempt reception and monitoring. Therefore, the first terminal may trigger a decision to transmit power saving information to inform the second terminal so that the second terminal can activate at a later time. Alternatively, if the first terminal is a receiving terminal, e.g., a Mode 2 terminal in coverage, the first terminal may trigger a decision to transmit power saving information to inform the second terminal that the first terminal will be activated within the next period of time, and then the second terminal can transmit to the first terminal at the next activation time.

[0076] Further, for example, the Uu of the first terminal is an LTE Uu, and the Uu interface of the first terminal has a corresponding LTE Uu DRX. In such a case, the LTE Uu interface of the first terminal may need to be kept activated. A possible power-saving method is to maintain alignment or overlap between the SL DRX activation time and the Uu DRX activation time of the first terminal, to achieve internal coordination, and to inform the second terminal that the first terminal will be activated within the next time, and then the second terminal can transmit to the first terminal at the next activation time.

[0077] For conditions 60) to 62), the SL resources of the first terminal may be activated, and at this time, the first terminal may continue transmitting to the second terminal using these resources. Optionally, in the above cases, the first terminal is a transmitting terminal or a receiving terminal. Preferably, the first terminal is a transmitting terminal, for example, a Mode 1 terminal. Therefore, by triggering the first terminal to determine the transmission of power saving information, the second terminal may be informed that it can be activated at a later time. Alternatively, if the first terminal is a receiving terminal, for example, a Mode 2 terminal in coverage, by triggering the transmission of power saving information, the second terminal may be informed that the first terminal will be activated within the next time, and then the second terminal may transmit to the first terminal at the next activation time.

[0078] It should be further explained that any of the methods for obtaining information mentioned in the examples of the present application include: Obtaining information in at least one of the following ways: predefined by a protocol / pre-arranged / arranged by a base station / instructed by other users / recommended by other users / scheduled by other users / arranged by other users, etc.; The rule may be obtained based on at least one of the following methods: predefined by a protocol / pre-deployed / deployed by a base station / instructed by another user / recommended by another user / scheduled by another user / deployed by another user, and the like; and information may be obtained based on the rule.

[0079] Continuing with the above example, in at least one alternative embodiment of the present application, the method comprises: The method further includes the first terminal transmitting second information to the control node, the second information being used to indicate at least one of: Indicating that the first terminal has satisfied the target condition, for example, the second information is 1 bit, and when it is 1, it indicates that the UE1 has satisfied the target condition, and further, for example, the transmission of the second information indicates that the first terminal has satisfied the target condition; Indicating information related to a target condition satisfied by the first terminal, for example, if the first terminal finds a target SL resource shortage, the second information indicates the target SL resource shortage; A transmission resource request for power saving information; A Scheduling Request (SR), Buffer Status Report (BSR), When the first terminal transmits the SR / BSR, the base station may schedule new resources to the terminal, and the terminal may transmit power saving information on the new resources. The power saving information may be transmitted on the sidelink control information SCI and / or the physical sidelink shared channel PSSCH. In this case, the target condition may be considered as a condition that triggers the first terminal to transmit the SR / BSR, or may be considered as a condition that triggers the base station to allocate power saving information resources by the SR / BSR.

[0080] Optionally, the BSR indication buffer is empty at this time.

[0081] It should be noted that in the embodiment of the present application, the order of the first terminal transmitting the power-saving information and the first terminal transmitting the second information to the control node is not limited. For example, after the control node obtains the second information, the control node allocates the power-saving information resource to the first terminal.

[0082] In one alternative embodiment, the first information is: First instruction information for instructing the first terminal to transmit power saving information for instructing the target terminal to sleep or be inactive; second instruction information for instructing the first terminal to transmit power saving information for instructing the target terminal to wake up or activate; third instruction information indicating resources for transmitting the power saving information (for example, the third instruction information indicates resources for scheduling the transmission of the power saving information indicated by the first instruction information, and further, for example, the third instruction information indicates resources for scheduling the transmission of the power saving information indicated by the second instruction information); and fourth instruction information for instructing the first terminal not to transmit power saving information; Fifth instruction information instructing the first terminal to wake up or activate; and sixth indication information indicating that the first terminal is dormant or inactive.

[0083] In an embodiment of the present application, the control node explicitly controls the first terminal SL DRX or power saving information, for example, the control node directly schedules the first terminal to transmit power saving information and instructs the receiving terminal to wake up or sleep.

[0084] Alternatively, the first information may be a terminal-dedicated PDCCH, a group-common PDCCH, or higher layer signaling (e.g., a Radio Resource Control (RRC) or Medium Access Control (MAC) control element (CE)).

[0085] For example, the method by which the first terminal determines to transmit the power saving information based on the first information of the control node specifically includes: The control node transmits first information to the first terminal, and the first terminal determines to transmit power saving information based on the first information; and the control node directly schedules, activates, or deactivates the power saving information or the power saving information resource according to the first information.

[0086] In another alternative embodiment, the first information is: SL DCI (which may be understood as the control node scheduling the first terminal to transmit power saving information); SL Configuration Grant (CG) (which may be understood as the control node scheduling the first terminal to transmit power saving information); Uu interface power saving information (it may be understood that the Uu power saving information may trigger the first terminal to decide to transmit the power saving information); signaling carrying a dormancy indication (Uu signaling carrying a dormancy indication may be understood as triggering the first terminal to decide to transmit power saving information); signaling to activate or deactivate BWP; signaling to activate or deactivate a cell; and signaling to activate or deactivate the carrier.

[0087] Specifically, the first terminal determines to transmit power-saving information based on the first information, and the first terminal determines to transmit power-saving information based on the first information. Specifically, the first terminal determines to transmit power-saving information based on the first information. The ... A. The first information indicates that power saving information is transmitted, For example, if the power saving information is designed to indicate when to sleep / inactive and / or when to wake up / activate, the first terminal needs to transmit the power saving information and indicate when to sleep / inactive; For example, if the power saving information is designed to be able to instruct reception / monitoring / activation, the first terminal needs to transmit the power saving information and instruct reception / monitoring / activation.

[0088] B. The first information indicates that power saving information is not to be transmitted, For example, if the behavior is defined to not send power saving information, and the device defaults to sleep / inactive, there is no need to send power saving information at this time. For example, if an action is defined not to send power saving information, then when receiving / monitoring / activating by default, there is no need to send power saving information at this time.

[0089] In another alternative embodiment, determining to transmit power saving information of the first terminal comprises: determining transmission of the power saving information on a first resource, the first resource comprising: a resource randomly selected by the first device; A resource acquired by the first terminal through sensing; Resources recommended or indicated by the other terminal to the first terminal; The resource of the power saving information that the first terminal requests from the control node (e.g., the resource requested after transmitting the second information); A resource scheduled by the SL DCI acquired by the first terminal; The SL allocation permission resource acquired by the first terminal (for example, if the transmitting terminal issues power saving information in the resource of the conventional SL allocation permission CG or the SL dynamic permission DG, the power saving information may be transmitted in the SCI and / or PSSCH at this time); A resource for transmitting power-saving information allocated by a control node for the first terminal; and resources of periodic or semi-static power saving information configured by the control node.

[0090] It should be mentioned that the resource of the power saving information may be before, during or after the activation time of the power saving mechanism, and is not specifically limited here.

[0091] It is further to be explained that the power saving information includes at least one of the following: First type: The transmission of power saving information may not be directly controlled by the control node; Similar to the physical sidelink feedback channel PSFCH, the base station does not need to specifically reschedule resources, but may use periodic or semi-static resources previously configured by the control node at this time. Second type: The transmission of power saving information may be controlled by a control node, For example, if the power saving information uses the sidelink control information SCI, the control node needs to allocate SCI resources each time the power saving information is transmitted so that the user can transmit the power saving information.

[0092] In at least one embodiment of the present application, the SL power saving mechanism includes at least one of the following: SL DRX of the first terminal, optionally, the transmission of power saving information of the first terminal at this time is intended to inform other terminals of the DRX state of the first terminal; SL DRX of a second terminal, optionally, the transmission of power saving information of the first terminal at this time is for controlling the DRX state of the second terminal, and optionally, the second terminal is (one, several, or all) the opposite terminal of the first terminal, where the opposite terminal refers to a terminal that communicates with the first terminal, or a terminal that receives a signal / channel of the first terminal, or a terminal that transmits a signal / channel to the first terminal, or a terminal that establishes a connection or group with the first terminal; The first terminal is in power-saving sensing (partial sensing), and the first terminal transmits power-saving information to inform other terminals of the sensing state of the first terminal. Here, the activation / disabling of power-saving sensing may be understood as whether to use power-saving sensing. For example, after the disabling, it is necessary to change to full sensing, and after the activation, it is necessary to use power-saving sensing. The power-saving sensing of the second terminal, at this time, the transmission of the power-saving information of the first terminal is intended to control the sensing state of the second terminal, where the activation / disabling of the power-saving sensing may be understood as whether to use the power-saving sensing, for example, after the disabling, change to full sensing, and after the activation, need to use the power-saving sensing; The random resource selection of the first terminal, in which the activation / deactivation of the random resource selection may be understood as whether to use the random resource selection, for example, after deactivation, change to full sensing or power saving sensing, and after activation, need to use the random resource selection; In the random resource selection of the second terminal, the activation / deactivation of random resource selection may be understood as whether to use random resource selection, for example, after deactivation, it changes to full sensing or power-saving sensing, and after activation, it needs to use random resource selection.

[0093] It should be noted that the BWP referred to in the embodiments of the present application may be an uplink BWP, a downlink BWP, or an SL BWP. The SL DCI referred to in the embodiments of the present application is a DCI for scheduling, activating, or deactivating SL resources or SL configuration, and may be, for example, DCI format 3-0 and / or DCI format 3-1, or a DCI scrambled by a Radio Network Temporary Identity (RNTI) associated with the SL, for example, SL RNTI, SL-CS-RNTI.

[0094] Example 1, when the resource selection mechanism triggers the SL WUS When UE A (e.g., a transmitting UE) switches to / uses power saving monitoring (partial sensing) or resource random selection, UE B (e.g., a receiving UE) remains in an activated state, or the DRX configuration of UE B is invalid, or UE B has not acquired a DRX configuration.

[0095] and / or If UE B uses a DRX mechanism or DRX configuration is enabled, UE A uses full sensing.

[0096] Specifically, selectively, when UE A switches to / uses / activates partial sensing or random selection, UE A decides to transmit SL WUS, indicating that UE A uses / activates partial sensing, or indicating that UE B needs to maintain the activation state or that DRX is disabled; Specifically, optionally, if UE B maintains an activated state or does not obtain a DRX configuration or the DRX configuration is invalid, UE B decides to transmit an SL WUS, and instructs UE A to use / activate partial sensing or resource random selection, or indicates that UE B maintains an activated state or does not obtain a DRX configuration or the DRX configuration is invalid; Specifically, optionally, when UE A switches to / uses / activates full sensing, UE A determines to transmit SL WUS and instructs UE A to use / activate full sensing, or instructs UE B to use DRX or enable DRX; Specifically, optionally, if UE B uses DRX or DRX is enabled, UE B determines to transmit SL WUS, and instructs UE A to use / activate full sensing, or instructs UE B to use DRX or DRX is enabled; Specifically, optionally, if UE A does not use / deactivate partial sensing or resource random selection, UE A decides to transmit SL WUS and instructs UE A not to use / deactivate partial sensing or resource random selection, or instructs UE B to use DRX or that DRX is enabled.

[0097] Specifically, optionally, if UE B uses DRX or DRX is enabled, UE B decides to transmit SL WUS and instructs UE A not to use / deactivate partial sensing or resource random selection, or instructs UE B to use DRX or DRX is enabled.

[0098] Here, the first terminal may be UE A or UE B.

[0099] Example 2: When the base station directly controls SL DRX Given that UE1 and UE2 are within base station coverage and the base station does not schedule UE1 to transmit (e.g., to UE2) within a certain time, selectively send first information to UE1 to instruct UE1 to go to sleep / deactivation at the next time, thereby achieving power saving; selectively send first information to UE2 to instruct UE2 to go to sleep / deactivation at the next time, thereby achieving power saving; Assuming that UE1 and UE2 are within base station coverage and the base station schedules UE1 to transmit (e.g., to UE2) within a certain time, first information may be selectively sent to UE1 to instruct UE1 to wake up / activate at the next time, thereby ensuring performance, and first information may be selectively sent to UE2 to instruct UE2 to wake up / activate at the next time, thereby ensuring performance.

[0100] In an embodiment of the present application, the control node indirectly controls the transmission of power saving information or adjusts the transmission of power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal.

[0101] As shown in FIG. 3 , an embodiment of the present application further provides a power-saving processing method, The method includes step 301 in which the second terminal determines whether to put the target terminal to sleep, wake it up, or deactivate or activate it based on the power saving information transmitted by the first terminal, where the target terminal includes the second terminal and / or the first terminal that performs sidelink communication with the second terminal.

[0102] In the embodiments of the present application, "transmission" refers to sending or receiving, i.e., the transmission of the power saving information of the first terminal includes at least one of the following: the first terminal sending the power saving information; the first terminal receiving the power saving information; the first terminal not sending the power saving information; and the first terminal not receiving the power saving information.

[0103] It should be explained that the sleep or wake-up or inactivation or activation of the first terminal (or the second terminal) mentioned in the embodiments of the present application includes:

[0104] 1. relating to an SL power saving mechanism, which may be interpreted as sleep or waking up or deactivating or activating an SL power saving mechanism of a first terminal, or sleep or waking up or deactivating or activating an SL power saving mechanism of a second terminal; 2. Distinguish whether some actions of a terminal can be performed normally regardless of whether an SL power saving mechanism exists, for example, when a first terminal is activated or woken up, the corresponding actions can be performed, and when the first terminal is asleep or deactivated, the corresponding actions cannot be performed.

[0105] Here, the SL power saving mechanism may be SL DRX or SL power saving sensing, and the power saving sensing may be partial sensing, or may be some simplified or short or aperiodic or triggered sensing.

[0106] SL DRX may be used to control sensing, measurement, monitoring and / or transmission (transmission referred to in this application is reception or transmission) of a terminal to a target object, which includes at least one of a control channel, a control signal, a data channel, a data signal, a reference signal, a feedback signal, a feedback channel, a request message and a response message.

[0107] Power-saving sensing may be understood as a partial sensing mechanism that includes a monitoring window and a selection window.

[0108] It should be noted that the "power saving information" referred to in the embodiments of the present application may be an SL wake-up signal (Wake Up Single, WUS), and may also be referred to as status notification information, sleep notification information, off notification information, wake notification information, or on notification information, and is not specifically limited herein.

[0109] In one alternative embodiment, step 301 includes: The second terminal receives power saving information transmitted by the first terminal and determines whether the target terminal is dormant or inactive; Here, the power saving information is used to indicate sleep or inactivity of the target terminal, for example, the power saving information indicates that a first terminal is in a sleep or inactive state, and further, for example, the power saving information indicates that a second terminal enters a sleep or inactive state.

[0110] For example, if the power saving information is configured to be able to indicate sleep or inactivity, and / or wakeup or activation, the first terminal needs to transmit the power saving information to indicate sleep or inactivity. If the SL is configured so that an indication "1" indicates wakeup or activation and an indication "0" indicates sleep or inactivity, then the first terminal transmits power saving information with an indication "0" to the second terminal.

[0111] In another alternative embodiment, step 301 includes: The second terminal does not receive the power saving information transmitted by the first terminal and determines the target terminal to be dormant or inactive based on a predefined rule.

[0112] Here, not transmitting the power saving information is used to indirectly indicate the dormancy or inactivity of the target terminal. For example, if it is defined by a predefined rule that power saving information is not to be transmitted, the target terminal will be dormant or inactive by default, and at this time, if a first condition is met, there is no need to transmit power saving information. Furthermore, for example, if it is defined by a predefined rule that power saving information is not to be transmitted, then DRX configuration will be enabled or not used by default, and there is no need to transmit power saving information at this time if a first condition is met. Furthermore, for example, if it is defined by a predefined rule that power saving information is not received, then the target terminal will be dormant or inactive by default, and for example, if it is defined by a predefined rule that power saving information is not received, then DRX configuration will be enabled or used by default.

[0113] In another alternative embodiment, step 301 includes: The second terminal receives the power saving information transmitted by the first terminal and determines to wake up or activate the target terminal; Here, the power saving information is used to instruct the wake-up or activation of the target terminal, for example, the power saving information instructs the first terminal to be in a wake-up state or an activation state, or the power saving information instructs the second terminal to enter a wake-up state or an activation state.

[0114] For example, if the power saving information is configured to be able to indicate sleep or inactivity, and / or wakeup or activation, the first terminal needs to transmit the power saving information to indicate sleep or inactivity. If the SL is configured so that an indication "1" indicates wakeup or activation and an indication "0" indicates sleep or inactivity, then the first terminal transmits power saving information with an indication "1" to the second terminal.

[0115] In another alternative embodiment, step 301 includes: The second terminal does not receive the power saving information transmitted by the first terminal and determines to wake up or activate the target terminal based on a predefined rule.

[0116] For example, if it is defined by a predefined rule that power saving information will not be transmitted, the device will be woken up or activated by default, and there is no need to transmit power saving information if a first condition is met at this time.Further, for example, if it is defined by a predefined rule that power saving information will not be transmitted, there is no DRX configuration, or the DRX configuration is disabled, or the DRX configuration is not used by default, and there is no need to transmit power saving information if a first condition is met at this time.Further, for example, if it is defined by a predefined rule that power saving information will not be received, the device will be woken up or activated by default, and there is also, for example, if it is defined by a predefined rule that power saving information will not be received, there is no DRX configuration, or the DRX configuration is disabled, or the DRX configuration is used by default.

[0117] In an embodiment of the present application, the control node controls the transmission of power saving information or adjusts the transmission of power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal.

[0118] As shown in FIG. 4, an embodiment of the present application further provides a power-saving processing method, The method includes step 401 in which a third terminal performs a power saving process on at least one of the third terminal and the fourth terminal based on a predefined behavior.

[0119] In one alternative embodiment, the predefined behavior is: Not transmitting the first behavior of the power saving information within the first target time period; not receiving the second action of the power saving information within the second target time period; Not receiving a third action of the first information transmitted by the control node, wherein the first information is used to instruct the third terminal to sleep or be inactive, or the first information is used to instruct the third terminal to wake up or be activated; receiving a fourth action of the first information transmitted by the control node, wherein the first information is used to instruct the third terminal to sleep or be inactive, or the first information is used to instruct the third terminal to wake up or be activated.

[0120] Correspondingly, step 401 is determining that the third terminal is dormant or inactive if the predefined behavior is met; and / or and indicating sleep or inactivity of the fourth terminal if the predefined behavior is met.

[0121] Alternatively, step 401 may be If the predefined behavior is satisfied, determining to wake up or activate the third terminal; and / or and instructing a fourth terminal to wake up or activate if the predefined behavior is met.

[0122] For example, if it is defined by a predefined rule that power saving information is not to be transmitted, the device will be dormant or inactive by default, and there is no need to transmit power saving information at this time.Furthermore, if it is defined by a predefined rule that power saving information is not to be transmitted, the DRX configuration will be enabled or not used by default, and there is no need to transmit power saving information at this time.

[0123] For example, if it is defined by a predefined rule that power saving information is not to be transmitted, the device is woken up or activated by default, and there is no need to transmit power saving information at this time.Furthermore, if it is defined by a predefined rule that power saving information is not to be transmitted, there is no DRX configuration by default, or the DRX configuration is disabled or not used, and there is no need to transmit power saving information at this time.

[0124] To summarize, in the embodiment of the present application, by setting predefined rules, it is possible to activate, deactivate, sleep or wake up an SL terminal without transmitting power saving information, thereby realizing power saving of the terminal.

[0125] It should be noted that in the power-saving processing method according to the embodiment of the present application, the execution body may be a power-saving processing device or a control module for executing and loading the power-saving processing method in the power-saving processing device. In the embodiment of the present application, the power-saving processing device according to the embodiment of the present application will be described by taking the power-saving processing device executing the power-saving processing method as an example.

[0126] As shown in FIG. 5 , an embodiment of the present application provides a power-saving processing device 500, Target Condition and / Or a first determination module 501 for determining to transmit power saving information and / or determining to put the target terminal to sleep or wake up or to deactivate or activate the target terminal based on the first information; Here, the power saving information indicates whether the target terminal is asleep or awake or inactive or activated, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.

[0127] In one alternative embodiment, the target condition includes a first condition, and the first determination module: a first transmission sub-module for transmitting the power saving information to indicate sleep or inactivity of the target terminal when a first condition is met; Or, it includes a first decision sub-module for deciding not to transmit the power saving information when the first condition is met, where not transmitting the power saving information is used to indirectly indicate sleep or inactivity of the target terminal.

[0128] In one alternative embodiment, the target condition includes a first condition, and the first determination module: A second determining sub-module for determining that the target terminal is dormant or inactive if the first condition is met.

[0129] In one alternative embodiment, the first condition is: no resources available for SL transmission within a first preset time; no resources meeting the first preset request are available for SL transmission within a second preset time; and A timer or a monitoring window for monitoring SL downlink control information (DCI) has timed out or is invalid; Not obtaining a timer or monitoring window for monitoring the SL DCI; The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the inactivity time corresponding to the Uu power saving mechanism is less than a first threshold; the Uu interface of the first terminal being dormant or instructed to be dormant; the Uu interface of the first terminal going to sleep after a third preset time or being instructed to go to sleep after a third preset time; The cell or carrier or bandwidth portion BWP in which the SL DCI is located is in a dormant state or is indicated as dormant; The cell or carrier in which the SL DCI is located or the cell group to which the BWP belongs is in a dormant state or is indicated as being in a dormant state; The cell, carrier or BWP in which the SL DCI is located is deactivated; The cell, carrier, or BWP where the SL DCI is located is deactivated after a fourth preset time or is instructed to be deactivated after a fourth preset time; The target terminal switches to a first target controlled resource; the target terminal switching to the first target controlled resource after a fifth preset time; The target terminal switches to a first target BWP or a first target cell or a first target carrier; The target terminal switches to the first target BWP or the first target cell or the first target carrier after a sixth preset time; and The first terminal does not detect a paging wake-up signal on a candidate resource for the paging wake-up signal; The cell, carrier, or BWP in which the SL resource is located is deactivated; The cell, carrier, or BWP where the SL resource is located is deactivated after a seventh preset time; Within an eighth preset time period, the number of target SL resources is less than a second threshold; and A first preset communication condition is satisfied; and The resource selection mechanism of the target terminal is full-sensing; The SL power saving mechanism of the target device is dormant or inactive; and The target device's SL power saving mechanism configuration is enabled or in use; and and the target terminal disabling power-saving sensing or resource random selection; wherein the first target control resource is not used to transmit a SL DCI, or is not used to monitor a SL DCI, or does not support a SL DCI, or does not include a SL DCI, and wherein the target terminal is at least one of a first terminal and a second terminal; Here, the first target BWP or first target cell or first target carrier is not available for SL transmission, or is not reusable for SL transmission, or does not include SL resources, or does not support SL, or has no association with the second target BWP or second target cell or second target carrier, and the second target BWP or second target cell or second target carrier is available for SL transmission, or is reusable for SL transmission, or includes SL resources, or supports SL.

[0130] In one alternative embodiment, the target condition includes a second condition, and the first determination module: a second transmission sub-module for transmitting the power saving information to instruct the target terminal to wake up or activate when a second condition is met; Or, it includes a second decision sub-module for deciding not to transmit the power saving information when a second condition is met, where not transmitting the power saving information is used to indirectly instruct the target terminal to wake up or activate.

[0131] In one alternative embodiment, the target condition includes a second condition, and the first determination module: and a fourth determination sub-module for determining to wake up or activate the target terminal if the second condition is met.

[0132] In one alternative embodiment, the second condition is: there are resources available for SL transmission within a tenth preset time period; and there are resources meeting the second preset requirement available for SL transmission within an eleventh preset time period; and The timer or monitoring window for monitoring SL DCI is on or restarted or running; Obtaining a timer or monitoring window for monitoring SL DCI; The Uu interface of the first terminal is at a wake-up time or activation time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is less than a third threshold; The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is less than a fourth threshold; the Uu interface of the first terminal is woken up or instructed to wake up; a Uu interface of the first terminal is activated or instructed to be activated; the Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time; the Uu interface of the first terminal activates after a thirteenth preset time or is instructed to activate after a thirteenth preset time; The cell or carrier or bandwidth portion BWP in which the SL DCI is located is in a non-dormant state; The cell or carrier or bandwidth portion BWP in which the SL DCI is located is not indicated as dormant; and The cell or carrier in which the SL DCI is located or the cell group to which the BWP belongs is in a non-dormant state; The cell or carrier in which the SL DCI is located or the cell group to which the BWP belongs is not designated as dormant; The cell or carrier or BWP in which the SL DCI is located is woken up; The cell or carrier or BWP in which the SL DCI is located is activated; The cell or carrier or BWP in which the SL DCI is located is woken up after a fourteenth preset time or is instructed to wake up after a fourteenth preset time; The cell or carrier or BWP in which the SL DCI is located is activated after a fifteenth preset time or is instructed to activate after a fifteenth preset time; the target terminal switching to a second target controlled resource; the target terminal switching to the second target controlled resource after a sixteenth preset time; The target terminal switches to a third target BWP, a third target cell, or a third target carrier; and The target terminal switches to a third target BWP, a third target cell, or a third target carrier after a seventeenth preset time; and the first terminal exiting an energy saving mode; the first terminal exiting the energy saving mode after an eighteenth preset time; The first terminal needs to transmit target uplink data; and the first terminal needs to perform periodic location updates; The first terminal does not acquire a paging wake-up signal configuration; and the first terminal detects at least one paging wake-up signal on a candidate resource for the paging wake-up signal; The cell or carrier or BWP in which the SL resource is located is activated; The cell or carrier or BWP where the SL resource is located is activated after a nineteenth preset time; Within a twentieth preset time period, the number of target SL resources is equal to or greater than a fifth threshold; A second predetermined communication condition is satisfied; and The resource selection mechanism of the target terminal is power-saving sensing or resource random selection; The SL power saving mechanism of the target terminal is woken up or activated; The target device has not acquired the SL power saving mechanism configuration; and The SL power saving mechanism configuration of the target terminal is disabled or not in use; the resource selection mechanism of the target terminal is a full-sensing resource selection mechanism; wherein the second target control resource is available for SL DCI transmission, or is available for SL DCI monitoring, or is capable of supporting SL DCI, or includes SL DCI, and wherein the target terminal is at least one of a first terminal and a second terminal; Here, the third target BWP or the third target cell or the third target carrier is available for SL transmission, or is reusable for SL transmission, or includes SL resources, or supports SL, or is associated with the fourth target BWP or the fourth target cell or the fourth target carrier, and the fourth target BWP or the fourth target cell or the fourth target carrier is available for SL transmission, or is reusable for SL transmission, or includes SL resources, or supports SL.

[0133] In one alternative embodiment, the device comprises: The first terminal further includes a transmitting module for transmitting second information to the control node, the second information comprising: indicating that the first terminal has met the target condition; Indicating information related to target conditions satisfied by the first terminal; a transmission resource request for power saving information; a scheduling request SR; It is used to indicate at least one of the following: Buffer Status Report (BSR)

[0134] In one alternative embodiment, the first information is: First instruction information for instructing the first terminal to transmit power saving information for instructing the target terminal to sleep or be inactive; second instruction information for instructing the first terminal to transmit power saving information for instructing the target terminal to wake up or activate; third instruction information indicating a resource for transmitting the power saving information; fourth instruction information for instructing the first terminal not to transmit power saving information; Fifth instruction information instructing the first terminal to wake up or activate; and sixth indication information indicating that the first terminal is dormant or inactive.

[0135] In one alternative embodiment, the first information is: SL DCI and SL placement permission, Uu interface power saving information, signaling carrying dormancy instructions; signaling to activate or deactivate BWP; signaling to activate or deactivate a cell; and signaling to activate or deactivate the carrier.

[0136] In one alternative embodiment, the first determination module and / or the second determination module further comprise: used to determine transmission of the power saving information on a first resource, the first resource comprising: a resource randomly selected by the first device; A resource acquired by the first terminal through sensing; Resources recommended or indicated by the other terminal to the first terminal; a resource of power saving information requested by the first terminal from the control node; A resource scheduled by the SL DCI acquired by the first terminal; The SL allocation permission resource acquired by the first terminal; A resource for transmitting power-saving information allocated by a control node for the first terminal; and resources of periodic or semi-static power saving information configured by the control node.

[0137] In an embodiment of the present application, the control node controls the transmission of power saving information or adjusts the transmission of power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal.

[0138] It should be noted that the power-saving processing device according to the embodiments of the present application is a device that can execute the above-mentioned power-saving processing method, and all embodiments of the above-mentioned power-saving processing method can be applied to this device, and all can achieve the same or similar beneficial effects.

[0139] As shown in FIG. 6 , an embodiment of the present application further provides a power-saving processing device 600, A second determination module 601 is configured to determine whether the target terminal is to sleep or wake up or to be inactive or activated based on the power saving information transmitted by the first terminal; Here, the target terminal includes a second terminal and / or a first terminal that performs sidelink communication with the second terminal.

[0140] In one alternative embodiment, the second decision module: a fifth determination sub-module for receiving power saving information transmitted by the first terminal and determining whether the target terminal is dormant or inactive; Here, the power saving information is used to indicate sleep or inactivity of the target terminal.

[0141] In one alternative embodiment, the second decision module: and a sixth determining sub-module for determining whether the target terminal is dormant or inactive based on a predefined rule when the target terminal has not received the power saving information transmitted by the first terminal.

[0142] In one alternative embodiment, the second decision module: a seventh determination sub-module for receiving power saving information transmitted by the first terminal and determining to wake up or activate the target terminal; Here, the power saving information is used to instruct the target terminal to wake up or activate.

[0143] In one alternative embodiment, the second decision module: an eighth determination sub-module for determining whether to wake up or activate the target terminal when the power saving information transmitted by the first terminal is not received and based on a predefined rule;

[0144] In an embodiment of the present application, the control node indirectly controls the transmission of power saving information or adjusts the transmission of power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal.

[0145] It should be noted that the power-saving processing device according to the embodiments of the present application is a device that can execute the above-mentioned power-saving processing method, and all embodiments of the above-mentioned power-saving processing method can be applied to this device, and all can achieve the same or similar beneficial effects.

[0146] As shown in FIG. 7 , an embodiment of the present application further provides a power-saving processing device 700, The device includes a processing module 701 for performing a power saving process on at least one of the third terminal and the fourth terminal based on a predefined behavior.

[0147] In one alternative embodiment, the predefined behavior is: Not transmitting the first behavior of the power saving information within the first target time period; not receiving the second action of the power saving information within the second target time period; Not receiving a third action of the first information transmitted by the control node, wherein the first information is used to instruct the third terminal to sleep or be inactive, or the first information is used to instruct the third terminal to wake up or be activated; receiving a fourth action of the first information transmitted by the control node, wherein the first information is used to instruct the third terminal to sleep or be inactive, or the first information is used to instruct the third terminal to wake up or be activated.

[0148] In one alternative embodiment, the processing module comprises: used to determine the third terminal as dormant or inactive when the predefined behavior is met; and / or a first processing sub-module for instructing the fourth terminal to be dormant or inactive if the predefined behavior is met.

[0149] In one alternative embodiment, the processing module comprises: used to determine the wake-up or activation of the third terminal when the predefined behavior is met; and / or a second processing sub-module for instructing a fourth terminal to wake up or activate when the predefined behavior is met.

[0150] In the embodiment of the present application, by setting predefined rules, it is possible to realize activation, inactivity, sleep or wake-up of the SL terminal without transmitting power saving information, thereby realizing power saving of the terminal.

[0151] It should be noted that the power-saving processing device according to the embodiments of the present application is a device that can execute the above-mentioned power-saving processing method, and all embodiments of the above-mentioned power-saving processing method can be applied to this device, and all can achieve the same or similar beneficial effects.

[0152] The power-saving processing device in the embodiments of the present application may be a device, such as a component, integrated circuit, or chip in a terminal. The device may be a mobile electronic device or a non-mobile electronic device. For example, the mobile electronic device may be a mobile phone, a tablet PC, a laptop, a palmtop computer, an in-vehicle electronic device, a wearable device, an ultra-mobile personal computer (UMPC), a netbook, or a personal digital assistant (PDA), and the non-mobile electronic device may be a server, a network-attached storage (NAS), a personal computer (PC), a television (TV), a teller machine, or a self-service machine, but the embodiments of the present application are not specifically limited.

[0153] The power-saving processing device in the embodiment of the present application may be a device having an operating system, which may be the Android operating system, the iOS operating system, or other possible operating systems, and the embodiment of the present application is not specifically limited.

[0154] The power-saving processing device according to the embodiment of the present application can implement each process implemented by the method embodiment of FIGS. 1 to 4, and will not be further described here to avoid repetition of description.

[0155] Optionally, as shown in Figure 8, an embodiment of the present application further provides a terminal 800, which includes a processor 801, a memory 802, and a program or instruction stored in the memory 802 and operable on the processor 801, which, when executed by the processor 801, can realize each process of the embodiment of the above-mentioned power-saving processing method and achieve the same technical effect. To avoid repetition, no further description will be given here.

[0156] FIG. 9 is a hardware structural schematic diagram of a terminal implementing an embodiment of the present application.

[0157] The terminal 900 includes components such as, but not limited to, a radio frequency unit 901, a network module 902, an audio output unit 903, an input unit 904, a sensor 905, a display unit 906, a user input unit 907, an interface unit 908, a memory 909, and a processor 910.

[0158] As will be understood by those skilled in the art, the terminal 900 may further include a power source (e.g., a battery) for powering each component, and the power source may be logically connected to the processor 910 by a power management system, thereby enabling the power management system to realize functions such as charge / discharge management and power consumption management. The terminal structure shown in Figure 9 does not constitute a limitation on the terminal, and the terminal may include more or fewer components than those shown, or a combination of some components, or a different arrangement of components, which will not be further described here.

[0159] It should be understood that in the embodiment of the present application, the input unit 904 may include a graphics processing unit (GPU) 9041 and a microphone 9042, and the graphics processor 9041 processes image data of still or video images captured by an image capture device (e.g., a camera) in a video capture mode or an image capture mode. The display unit 906 may include a display panel 9061, and the display panel 9061 may be arranged in the form of a liquid crystal display, an organic light emitting diode, or the like. The user input unit 907 includes a touch panel 9071 and other input devices 9072. The touch panel 9071 is also called a touch screen. The touch panel 9071 may include two parts: a touch detection device and a touch controller. The other input devices 9072 may include, but are not limited to, a physical keyboard, function keys (e.g., volume control buttons, switch buttons, etc.), a trackball, a mouse, and a control lever, which will not be further described herein.

[0160] In the embodiment of the present application, the radio frequency unit 901 receives downlink data from the network side device, and then processes the data in the processor 910, and transmits uplink data to the network side device. Generally, the radio frequency unit 901 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low-noise amplifier, a duplexer, etc.

[0161] The memory 909 may be used to store software programs or instructions and various data. The memory 909 may primarily include a program or instruction storage area and a data storage area, where the program or instruction storage area can store an operating system, an application program or instructions required for at least one function (e.g., audio playback function, image playback function, etc.), etc. The memory 909 may include high-speed random access memory or nonvolatile memory, where the nonvolatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. For example, the memory 909 may be at least one magnetic disk memory device, flash memory device, or other nonvolatile solid-state memory device.

[0162] The processor 910 may include one or more processing units. Optionally, the processor 910 may integrate an application processor and a modem processor. Here, the application processor mainly processes an operating system, a user interface, and application programs or instructions, and the modem processor mainly processes wireless communication, such as a baseband processor. As can be appreciated, the modem processor does not have to be integrated into the processor 910.

[0163] Wherein, the processor 910 is used to determine transmission of power saving information and / or determine sleep, wake-up, inactivation, or activation of the target terminal based on the target condition and / or the first information; Here, the power saving information indicates whether the target terminal is asleep or awake or inactive or activated, and the target terminal includes a first terminal and / or a second terminal that performs sidelink communication with the first terminal.

[0164] Alternatively, the processor 910 may be used to determine sleep or wake-up or inactivation or activation of a target terminal based on the transmission of power saving information of the first terminal, the target terminal including a second terminal and / or a first terminal performing sidelink communication with the second terminal.

[0165] Alternatively, the processor 910 is used to perform a power saving process on at least one of the third terminal and the fourth terminal based on a predefined behavior.

[0166] In an embodiment of the present application, the control node controls the transmission of power saving information or adjusts the transmission of power saving information based on a predefined target condition, thereby adjusting the state of the first terminal and / or the second terminal on the sidelink and avoiding unnecessary power consumption of the terminal, thereby achieving the purpose of power saving of the terminal.

[0167] It should be noted that the power-saving processing device according to the embodiments of the present application is a device that can execute the above-mentioned power-saving processing method, and all embodiments of the above-mentioned power-saving processing method can be applied to this device, and all can achieve the same or similar beneficial effects.

[0168] The embodiments of the present application further provide a readable storage medium, on which a program or instruction is stored, and when the program or instruction is executed by a processor, the respective processes of the embodiments of the above-mentioned power-saving processing method can be realized and the same technical effects can be achieved. In order to avoid repetition, no further description will be given here.

[0169] The processor may be the processor in the electronic device described in the above embodiment. The readable storage medium may include a computer-readable storage medium, such as a computer read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.

[0170] The embodiments of the present application further provide a chip, the chip including a processor and a communication interface, the communication interface is coupled to the processor, the processor runs a program or instruction, and is used to realize each process of the embodiments of the above-mentioned power-saving processing method, and can achieve the same technical effect. In order to avoid repetition, no further description will be given here.

[0171] The embodiments of the present application further provide a computer program product, wherein the computer program product is stored in a non-transitory readable storage medium, and the computer program product can be executed by at least one processor to realize each process of the above-mentioned power-saving processing method embodiments and achieve the same technical effects. In order to avoid repetition, no further description will be given here.

[0172] It should be understood that the chips referred to in the embodiments of this application may be referred to as system level chips, system chips, chip systems, or system-on-chips.

[0173] It should be noted that, in this specification, the terms "comprise," "include," "includes," or any other variations thereof are intended to cover the non-exclusive "comprise," whereby a process, method, article, or apparatus comprising a set of elements not only includes those elements, but also other elements not expressly listed or inherent in such process, method, article, or apparatus. Absent further limitations, an element defined by the phrase "comprises one of" does not preclude the presence of other identical elements in the process, method, article, or apparatus comprising that element. It should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may include performing functions in an essentially simultaneous manner or in the reverse order based on the functions involved. For example, the described method may be performed in a different order than described, and various steps may be added, omitted, or combined. Furthermore, features described with reference to some examples may be combined in other examples.

[0174] As will be apparent to those skilled in the art from the above description of the embodiments, the methods of the above embodiments can be realized in the form of software and a necessary general-purpose hardware platform. Of course, they can also be realized in hardware, but in many cases the former is a more preferred embodiment. Based on this understanding, the technical solution of the present application, in substance or in part contributing to the prior art, may be embodied in the form of a software product. This computer software product is stored in a storage medium (e.g., ROM / RAM, magnetic disk, optical disk) and includes some instructions for causing a terminal (which may be a mobile phone, computer, server, air conditioner, network device, etc.) to execute the methods described in each embodiment of the present application.

[0175] Although the embodiments of the present application have been described above in conjunction with the drawings, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not limiting. Those skilled in the art can take the teachings of the present application into account and implement many forms without departing from the spirit and scope of the claims, all of which fall within the scope of protection of the present application.

[0176] As mentioned above, the above are merely specific embodiments of the present application, and the scope of protection of the present application is not limited thereto. Any modifications or replacements that can be easily conceived by anyone skilled in the art within the technical scope disclosed in the present application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be equivalent to the scope of protection of the claims.

[0177] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority to Chinese Patent Application No. 202110044778.2 filed in China on January 13, 2021, the entire contents of which are incorporated herein by reference.

Claims

1. A power saving processing method, comprising: The first terminal determines, based on the target condition, to transmit power-saving information and / or determines to put the target terminal to sleep, wake up, inactivate, or activate; wherein the power saving information indicates whether the target terminal is dormant, awake, inactive, or activated, and the target terminal includes the first terminal and / or a second terminal performing sidelink communication with the first terminal; the target condition includes a first condition or a second condition; The first terminal determines, based on a target condition, to transmit power saving information and / or determines to put the target terminal to sleep, wake up, inactivate, or activate; When the first condition is satisfied, the first terminal determines that the target terminal is dormant or inactive, or the first terminal determines to transmit the power saving information, where the power saving information indicates that the target terminal is dormant or inactive; When the second condition is satisfied, the first terminal determines to wake up or activate the target terminal, or the first terminal determines to transmit the power saving information, where the power saving information indicates that the target terminal is woken up or activated; The first condition is: The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism or is asleep or is instructed to be asleep; The time interval between the current time of the first terminal and the inactivity time corresponding to the Uu power saving mechanism is less than a first threshold; the Uu interface of the first terminal going to sleep after a third preset time or being instructed to go to sleep after a third preset time; The second condition is: the Uu interface of said first terminal is woken up or instructed to wake up or activated or instructed to activate; The Uu interface of the first terminal is at a wake-up time or activation time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is less than a third threshold; The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is less than a fourth threshold; the Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time; the Uu interface of the first terminal activating after a thirteenth preset time or being instructed to activate after a thirteenth preset time; Power saving processing method.

2. When the first condition is satisfied, the first terminal determines to transmit the power saving information. The first terminal transmits the power saving information for instructing the target terminal to be dormant or inactive. The power saving processing method according to claim 1 .

3. When the first condition is satisfied, the first terminal determines to transmit the power saving information. The first terminal determines not to transmit the power saving information, where not transmitting the power saving information is used to indirectly indicate dormancy or inactivity of the target terminal. The power saving processing method according to claim 1 .

4. When the second condition is satisfied, the first terminal determines to transmit the power saving information. The first terminal transmits the power saving information for instructing the target terminal to wake up or activate. The power saving processing method according to claim 1 .

5. When the second condition is satisfied, the first terminal determines to transmit the power saving information. The first terminal determines not to transmit the power saving information, where the not transmitting the power saving information is used to indirectly instruct the target terminal to wake up or activate. The power saving processing method according to claim 1 .

6. The power saving processing method includes: The method further includes the first terminal transmitting second information to a control node, the second information comprising: used to indicate information related to the target condition satisfied by the first terminal; The power saving processing method according to claim 1 .

7. determining to transmit the power saving information includes: determining transmission of the power saving information on a first resource, the first resource comprising: The power-saving processing method according to claim 1 , wherein the first terminal acquires resources through sensing.

8. A power saving processing method, comprising: The second terminal determines whether the target terminal is dormant, awake, inactive, or activated based on the power saving information transmitted by the first terminal; wherein the target terminal includes the second terminal and / or the first terminal performing sidelink communication with the second terminal; The transmission of the power saving information of the first terminal is determined based on a target condition; the target condition includes a first condition or a second condition; The first condition is used to determine whether the target terminal is dormant or inactive, or to determine transmission of power saving information, the power saving information indicating that the target terminal is dormant or inactive; The second condition is used to determine whether the target terminal is woken up or active, or to determine whether power saving information is transmitted, and the power saving information indicates that the target terminal is woken up or active; The first condition is: The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism or is asleep or is instructed to be asleep; The time interval between the current time of the first terminal and the inactivity time corresponding to the Uu power saving mechanism is less than a first threshold; the Uu interface of the first terminal going to sleep after a third preset time or being instructed to go to sleep after a third preset time; The second condition is: the Uu interface of said first terminal is woken up or instructed to wake up or activated or instructed to activate; The Uu interface of the first terminal is at a wake-up time or activation time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is less than a third threshold; The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is less than a fourth threshold; the Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time; the Uu interface of the first terminal activating after a thirteenth preset time or being instructed to activate after a thirteenth preset time; Power saving processing method.

9. The second terminal determines whether the target terminal is to be asleep, woken up, inactive, or activated based on the transmission of the power saving information of the first terminal; The second terminal receives power saving information transmitted by the first terminal, and the second terminal determines whether the target terminal is dormant, inactive, woken up, or activated; wherein the power saving information is used to instruct the target terminal to sleep, be inactive, wake up, or be activated; The power saving processing method according to claim 8.

10. The second terminal determines whether the target terminal is to be asleep, woken up, inactive, or activated based on the transmission of the power saving information of the first terminal; The second terminal does not receive the power saving information transmitted by the first terminal, and the second terminal determines the sleep, inactivity, wake-up, or activation of the target terminal based on a predefined rule. The power saving processing method according to claim 8.

11. A power-saving processing device, A first determination module is provided for determining, based on a target condition, whether to transmit power saving information and / or whether to put the target terminal to sleep, wake it up, or deactivate or activate it; wherein the power saving information indicates whether the target terminal is dormant, awake, inactive, or activated, and the target terminal includes a first terminal and / or a second terminal performing sidelink communication with the first terminal; the target condition includes a first condition or a second condition; The first determination module further comprises: When the first condition is satisfied, the first determination module determines that the target terminal is dormant or inactive, or the first determination module determines to transmit the power saving information, where the power saving information indicates that the target terminal is dormant or inactive; When the second condition is satisfied, the first determination module determines to wake up or activate the target terminal, or the first determination module determines to transmit the power saving information, where the power saving information indicates that the target terminal is woken up or activated; The first condition is: The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism or is asleep or is instructed to be asleep; The time interval between the current time of the first terminal and the inactivity time corresponding to the Uu power saving mechanism is less than a first threshold; the Uu interface of the first terminal going to sleep after a third preset time or being instructed to go to sleep after a third preset time; The second condition is: the Uu interface of said first terminal is woken up or instructed to wake up or activated or instructed to activate; The Uu interface of the first terminal is at a wake-up time or activation time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is less than a third threshold; The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is less than a fourth threshold; the Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time; the Uu interface of the first terminal activating after a thirteenth preset time or being instructed to activate after a thirteenth preset time; Low power processing unit.

12. A power-saving processing device for use in a second terminal, A second determination module is provided for determining whether the target terminal is to sleep or wake up or to be inactive or activated based on the power saving information transmitted by the first terminal; wherein the target terminal includes the second terminal and / or a first terminal performing sidelink communication with the second terminal; The transmission of the power saving information of the first terminal is determined based on a target condition; the target condition includes a first condition or a second condition; The first condition is used to determine whether the target terminal is dormant or inactive, or to determine transmission of power saving information, the power saving information indicating that the target terminal is dormant or inactive; The second condition is used to determine whether the target terminal is woken up or active, or to determine whether power saving information is transmitted, and the power saving information indicates that the target terminal is woken up or active; The first condition is: The Uu interface of the first terminal is in an inactive time corresponding to a Uu power saving mechanism or is asleep or is instructed to be asleep; The time interval between the current time of the first terminal and the inactivity time corresponding to the Uu power saving mechanism is less than a first threshold; the Uu interface of the first terminal going to sleep after a third preset time or being instructed to go to sleep after a third preset time; The second condition is: the Uu interface of said first terminal is woken up or instructed to wake up or activated or instructed to activate; The Uu interface of the first terminal is at a wake-up time or activation time corresponding to a Uu power saving mechanism; The time interval between the current time of the first terminal and the wake-up time corresponding to the Uu power saving mechanism is less than a third threshold; The time interval between the current time of the first terminal and the activation time corresponding to the Uu power saving mechanism is less than a fourth threshold; the Uu interface of the first terminal wakes up after a twelfth preset time or is instructed to wake up after a twelfth preset time; the Uu interface of the first terminal activating after a thirteenth preset time or being instructed to activate after a thirteenth preset time; Low power processing unit.

13. A terminal including a processor, a memory, and a program or instructions stored in the memory and operable on the processor, wherein the program or instructions, when executed by the processor, implement the steps of the power saving processing method of any one of claims 1 to 7, or the program or instructions, when executed by the processor, implement the steps of the power saving processing method of any one of claims 8 to 10.

14. A readable storage medium on which a program or instruction is stored, the program or instruction being, when executed by a processor, capable of realizing the steps of a power-saving processing method according to any one of claims 1 to 7, or the program or instruction being, when executed by a processor, capable of realizing the steps of a power-saving processing method according to any one of claims 8 to 10.

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