Direct link resource scheduling method, terminal and base station
By instructing the transmitting and receiving terminals on the direct link SL transmission resources from the base station, the problem of the receiving terminal not knowing the location of the transmission resources is solved, thus realizing reliable communication in the FR2 band.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2026-03-10
AI Technical Summary
In the FR2 band, the receiving terminal cannot communicate normally with the sending terminal because it does not know the time and location of the transmission resources allocated by the base station to the sending terminal.
The base station determines the scheduling information of the direct link SL transmission resources and sends the scheduling information to the first and second terminals, indicating the target SL transmission resources to be used by the sending terminal and the receiving terminal.
To ensure reliable communication between the sending terminal and the receiving terminal, explicit resource scheduling information is used to ensure that the sending terminal transmits information on the target SL transmission resource and the receiving terminal receives information on the target SL transmission resource.
Smart Images

Figure CN121645531A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of communication, and particularly relates to a resource scheduling method for a sidelink, a terminal and a base station. BACKGROUND
[0002] The current New Radio (NR) sidelink (SL) support mode mode1 is based on a resource allocation mode of base station scheduling and a mode2 autonomous resource selection mode. Regardless of which resource selection method, the SL terminal (User Experience, UE) works in the frequency range 1 (Frequency Range 1, FR1) frequency band, and the SL UE transmission and sensing reception are omnidirectional. Therefore, under the mode1 mechanism, the base station allocates transmission resources to the sending UE, the sending UE uses an omnidirectional beam to send on the transmission resources, and the receiving UE can receive using an omnidirectional beam, and the receiving UE does not need to know the sending time of the sending UE in advance. However, in the FR2 frequency band, due to the millimeter wave channel characteristics of high frequency carriers, the signal transmission loss is large, and the penetration ability is poor. In order to improve the signal transmission distance, beamforming technology needs to be used, that is, the UE can only perform sensing reception and sending in a specific beam direction, and can only use a specific beam for sensing reception or sending at the same time. However, based on beamforming, if the receiving UE does not know the location of the transmission resource allocated by the base station to the sending UE, the receiving UE does not know which transmission resource to use for receiving, and cannot normally communicate with the sending UE. SUMMARY
[0003] The embodiments of the present application provide a resource scheduling method for a sidelink, a terminal and a base station, which can solve the problem that the receiving terminal cannot normally communicate with the sending terminal due to the fact that the receiving terminal does not know the time position of the transmission resource allocated by the base station to the sending terminal.
[0004] In a first aspect, a resource scheduling method for a sidelink is provided, applied to a base station, and includes:
[0005] determining scheduling information of a sidelink (SL) transmission resource, and sending the scheduling information to a first terminal and a second terminal;
[0006] The scheduling information includes first scheduling information, the first scheduling information is sent to the first terminal and the second terminal, and the first scheduling information is used to indicate a target SL transmission resource allocated to the first terminal and to indicate the target SL transmission resource used by the first terminal to send target information to the second terminal.
[0007] Alternatively, the scheduling information includes the first scheduling information and second scheduling information, the first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal, the first scheduling information is used to indicate the target SL transmission resource allocated to the first terminal, and the second scheduling information is used to indicate the target SL transmission resource used by the target information sent by the first terminal to the second terminal.
[0008] In a second aspect, a resource scheduling method of a sidelink is provided, applied to a first terminal, including:
[0009] receiving first scheduling information sent by a base station;
[0010] determining a target SL transmission resource according to the first scheduling information, and sending target information on the target SL transmission resource; or
[0011] determining a target SL transmission resource in each configured grant period according to the first scheduling information, and sending the target information on the target SL transmission resource in each configured grant period.
[0012] In a third aspect, a resource scheduling method of a sidelink is provided, applied to a second terminal, including:
[0013] receiving scheduling information sent by a base station, the scheduling information including first scheduling information and / or second scheduling information;
[0014] determining a target SL transmission resource according to the scheduling information, and receiving target information sent by a first terminal on the target SL transmission resource; or
[0015] determining a target SL transmission resource in each configured grant period according to the scheduling information, and receiving the target information sent by the first terminal on the target SL transmission resource in each configured grant period.
[0016] In a fourth aspect, a resource scheduling device of a sidelink is provided, applied to a base station, including:
[0017] a first processing module configured to determine scheduling information of a sidelink (SL) transmission resource, and send the scheduling information to a first terminal and a second terminal;
[0018] wherein the scheduling information includes first scheduling information, the first scheduling information is sent to the first terminal and the second terminal, and the first scheduling information is used to indicate a target SL transmission resource allocated to the first terminal, and indicate the target SL transmission resource used by target information sent by the first terminal to the second terminal;
[0019] Alternatively, the scheduling information includes the first scheduling information and second scheduling information, the first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal, the first scheduling information is used to indicate the target SL transmission resource allocated to the first terminal, and the second scheduling information is used to indicate the target SL transmission resource used by the target information sent by the first terminal to the second terminal.
[0020] In a fifth aspect, a resource scheduling apparatus for sidelink is provided, which is applied to a first terminal and includes:
[0021] A first receiving module, configured to receive first scheduling information sent by a base station;
[0022] A second processing module, configured to determine a target SL transmission resource according to the first scheduling information, and send target information on the target SL transmission resource; or
[0023] determine the target SL transmission resource in each configured grant period according to the first scheduling information, and send the target information on the target SL transmission resource in each configured grant period.
[0024] In a sixth aspect, a resource scheduling apparatus for sidelink is provided, which is applied to a second terminal and includes:
[0025] A third receiving module, configured to receive scheduling information sent by a base station, the scheduling information including first scheduling information and / or second scheduling information;
[0026] A third processing module, configured to determine a target SL transmission resource according to the scheduling information, and receive target information sent by a first terminal on the target SL transmission resource; or
[0027] determine the target SL transmission resource in each configured grant period according to the scheduling information, and receive the target information sent by the first terminal on the target SL transmission resource in each configured grant period.
[0028] In a seventh aspect, a base station is provided, which includes a processor and a memory, the memory stores programs or instructions executable on the processor, and the programs or instructions are executed by the processor to implement the steps of the method according to the first aspect.
[0029] In an eighth aspect, a terminal is provided, which includes a processor and a memory, the memory stores programs or instructions executable on the processor, and the programs or instructions are executed by the processor to implement the steps of the method according to the second aspect or the third aspect.
[0030] In a ninth aspect, a readable storage medium is provided, and the readable storage medium stores a program or instructions, and the program or instructions are executed by a processor to implement the steps of the method in the first aspect, or implement the steps of the method in the second aspect, or implement the steps of the method in the third aspect.
[0031] In a tenth aspect, a chip is provided, and the chip includes a processor and a communication interface, the communication interface is coupled with the processor, and the processor is configured to run a program or instructions to implement the method in the first aspect, or implement the method in the second aspect, or implement the method in the third aspect.
[0032] In an eleventh aspect, a computer program / program product is provided, and the computer program / program product is stored in a storage medium, and the program / program product is executed by at least one processor to implement the steps of the method in the first aspect, or implement the steps of the method in the second aspect, or implement the steps of the method in the third aspect.
[0033] In the embodiments of the present application, a base station determines scheduling information of a sidelink (SL) transmission resource, and the scheduling information includes first scheduling information. The base station sends the first scheduling information to a first terminal and a second terminal, and the first scheduling information is used to indicate a target SL transmission resource allocated to the first terminal and to indicate the target SL transmission resource used by the first terminal to send target information. That is, the first terminal is a sending terminal, the second terminal is a receiving terminal, the base station sends the first scheduling information of the SL transmission resource to the sending terminal and the receiving terminal. Thus, the sending terminal knows the target SL transmission resource allocated by the base station to send the target information, the receiving terminal knows the target SL transmission resource used by the sending terminal to transmit the target information, the sending terminal transmits the target information on the target SL transmission resource, and the receiving terminal receives the target information on the target SL transmission resource. The communication reliability between the sending terminal and the receiving terminal is ensured.
[0034] Alternatively, the base station determines the scheduling information for the direct link SL transmission resources. This scheduling information includes the first scheduling information and the second scheduling information. The base station then sends the first scheduling information to the first terminal and the second scheduling information to the second terminal. The first scheduling information indicates the target SL transmission resource allocated to the first terminal, and the second scheduling information indicates to the second terminal the target SL transmission resource used by the target information sent by the first terminal. That is, the first terminal acts as the sending terminal, and the second terminal acts as the receiving terminal. The base station sends the first scheduling information for the SL transmission resources to the sending terminal and the second scheduling information to the receiving terminal. Thus, the sending terminal learns about the target SL transmission resource allocated by the base station for sending target information through the first scheduling information, and the receiving terminal learns about the target SL transmission resource for transmitting target information through the second scheduling information. The sending terminal transmits target information on the target SL transmission resource, and the receiving terminal receives target information on the target SL transmission resource, ensuring the reliability of communication between the sending terminal and the receiving terminal. Attached Figure Description
[0035] Figure 1 This is a block diagram of a wireless communication system applicable to embodiments of this application;
[0036] Figure 2 This is a flowchart of a resource scheduling method for a direct link applied to a base station according to an embodiment of this application;
[0037] Figure 3 This is a schematic diagram of SL transmission resources during multiple configuration authorization periods according to embodiments of this application;
[0038] Figure 4 This is a structural block diagram of a resource scheduling device for a direct link applied to a base station according to an embodiment of this application;
[0039] Figure 5 This is a flowchart of a resource scheduling method for a direct link applied to a first terminal according to an embodiment of this application;
[0040] Figure 6 This is a structural block diagram of a resource scheduling device applied to a direct link of a first terminal according to an embodiment of this application;
[0041] Figure 7 This is a flowchart of a resource scheduling method for a direct link applied to a second terminal according to an embodiment of this application;
[0042] Figure 8 This is a structural block diagram of a resource scheduling device for a direct link applied to a second terminal according to an embodiment of this application;
[0043] Figure 9 This is a structural block diagram of a terminal according to an embodiment of this application;
[0044] Figure 10 This is a structural block diagram of a base station according to an embodiment of this application. Detailed Implementation
[0045] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.
[0046] The terms "first," "second," etc., used in this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such terms can be used interchangeably where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first" and "second" are generally of the same class, without limiting the number of objects; for example, the first object can be one or more. Furthermore, "or" in this application indicates at least one of the connected objects. For example, "A or B" covers three scenarios: Scenario 1: including A but not B; Scenario 2: including B but not A; Scenario 3: including both A and B. The character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0047] The term "instruction" in this application can be either a direct instruction (or explicit instruction) or an indirect instruction (or implicit instruction). A direct instruction can be understood as one in which the sender explicitly informs the receiver of specific information, the operation to be performed, or the requested result, etc., in the instruction sent. An indirect instruction can be understood as one in which the receiver determines the corresponding information based on the instruction sent by the sender, or makes a judgment and determines the operation to be performed or the requested result, etc., based on the judgment result.
[0048] It is worth noting that the terms "system" and "network" in the embodiments of this application are often used interchangeably, and the described technologies can be used not only in the systems and radio technologies mentioned above, but also in other systems and radio technologies. The following description describes a New Radio (NR) system for illustrative purposes, and the term NR is used in most of the following description; however, these technologies can also be applied to systems other than NR systems, such as 6th generation (6G) systems. th Generation 6G communication system.
[0049] Figure 1This diagram illustrates a block diagram of a wireless communication system applicable to embodiments of this application. The wireless communication system includes a first terminal 11, a second terminal 12, and a base station 13. The first terminal 11 and the second terminal 12 can be mobile phones, tablet computers, laptop computers, notebook computers, personal digital assistants (PDAs), handheld computers, netbooks, ultra-mobile personal computers (UMPCs), mobile internet devices (MIDs), augmented reality (AR) devices, virtual reality (VR) devices, robots, wearable devices, flight vehicles, vehicle user equipment (VUEs), shipboard equipment, pedestrian user equipment (PUEs), smart home devices (home appliances with wireless communication capabilities, such as refrigerators, televisions, washing machines, or furniture), game consoles, personal computers (PCs), ATMs, or self-service machines, etc., etc. Wearable devices include: smartwatches, smart bracelets, smart earphones, smart glasses, smart jewelry (smart bracelets, smart chains, smart rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc. Among these, in-vehicle devices can also be referred to as in-vehicle terminals, in-vehicle controllers, in-vehicle modules, in-vehicle components, in-vehicle chips, or in-vehicle units, etc. It should be noted that the specific types of the first terminal 11 and the second terminal 12 are not limited in the embodiments of this application.Base station 13 may be referred to as a base station node (Node B, NB), an evolved base station node (eNB), a next-generation base station node (gNB), a new radio node node (NR Node B), an access point, a relay base station (RBS), a serving base station (SBS), a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a home base station node (HNB), a home evolved base station node (home ENB), a transmission reception point (TRP), or any other suitable term in the relevant field, as long as the same technical effect is achieved. The base station is not limited to specific technical terms. It should be noted that in this application embodiment, only the next-generation base station node gNB in the NR system is used as an example for introduction, and the specific type of base station is not limited.
[0050] The resource scheduling of the direct link provided in this application embodiment will be described in detail below with reference to the accompanying drawings and through some embodiments and application scenarios.
[0051] like Figure 2 As shown in the figure, this application provides a resource scheduling method for a direct link, applied to a base station. The method specifically includes the following steps:
[0052] Step 201: Determine the scheduling information of the direct link SL transmission resources, and send the scheduling information to the first terminal and the second terminal;
[0053] The scheduling information includes first scheduling information, which is sent to the first terminal and the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal and to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0054] Alternatively, the scheduling information includes the first scheduling information and the second scheduling information. The first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal, and the second scheduling information is used to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0055] It should be noted that both the first terminal and the second terminal are in Radio Resource Control (RRC) connection mode, and the first terminal and the second terminal have exchanged their respective terminal identification information. When the terminal identification information of one of them is updated, the first terminal and the second terminal need to exchange their respective terminal identification information again.
[0056] The target SL transport resource can be a one-time transport resource or a transport resource with multiple periods of configured authorization.
[0057] In this embodiment, the base station determines the scheduling information of the direct link SL transmission resources. The scheduling information includes first scheduling information. The base station then sends the first scheduling information to the first terminal and the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal and to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal. That is, the first terminal acts as the sending terminal and the second terminal acts as the receiving terminal. The base station sends the first scheduling information of the SL transmission resources to the sending terminal and the receiving terminal. Thus, the sending terminal knows the target SL transmission resources allocated by the base station for sending target information, and the receiving terminal knows the target SL transmission resources used by the sending terminal to transmit target information. The sending terminal transmits target information on the target SL transmission resources, and the receiving terminal receives target information on the target SL transmission resources, ensuring the reliability of communication between the sending terminal and the receiving terminal.
[0058] Alternatively, the base station determines the scheduling information for the direct link SL transmission resources. This scheduling information includes the first scheduling information and the second scheduling information. The base station then sends the first scheduling information to the first terminal and the second scheduling information to the second terminal. The first scheduling information indicates the target SL transmission resource allocated to the first terminal, and the second scheduling information indicates to the second terminal the target SL transmission resource used by the target information sent by the first terminal. That is, the first terminal acts as the sending terminal, and the second terminal acts as the receiving terminal. The base station sends the first scheduling information for the SL transmission resources to the sending terminal and the second scheduling information to the receiving terminal. Thus, the sending terminal learns about the target SL transmission resource allocated by the base station for sending target information through the first scheduling information, and the receiving terminal learns about the target SL transmission resource for transmitting target information through the second scheduling information. The sending terminal transmits target information on the target SL transmission resource, and the receiving terminal receives target information on the target SL transmission resource, ensuring the reliability of communication between the sending terminal and the receiving terminal.
[0059] The resource scheduling method for the above-mentioned direct link will be described in detail below through specific embodiments:
[0060] Example 1
[0061] Step 201, which determines the scheduling information for the direct link SL transmission resources and sends the scheduling information to the first terminal and the second terminal, specifically includes:
[0062] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information is determined based on the resource scheduling request and / or the cache status report;
[0063] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal and the second terminal.
[0064] Specifically, the first terminal sends a resource scheduling request and / or cache status report to the base station, requesting the scheduling of SL transmission resources through the resource scheduling request and / or cache status report. The base station determines the first scheduling information based on the received resource scheduling request and / or cache status report. Since both the first and second terminals are in RRC connected state, and the first and second terminals have exchanged their respective terminal identification information, the base station sends the first scheduling information to both the first and second terminals based on the first terminal's terminal identification information. Thus, the first terminal learns from the first scheduling information the target SL transmission resources allocated by the base station for transmitting target information, and the second terminal learns from the first scheduling information the target SL transmission resources for transmitting target information. The first terminal transmits the target information on the target SL transmission resources, and the second terminal receives the target information on the target SL transmission resources, ensuring the reliability of communication between the first and second terminals.
[0065] It should be noted that the first scheduling information can be carried through downlink control information (DCI) signaling.
[0066] Example 1: The first terminal sends a resource scheduling request to the base station, requesting the scheduling of SL transmission resources. The base station determines the first scheduling information based on the received resource scheduling request, and sends the first scheduling information to the first terminal and the second terminal based on the terminal identification information of the first terminal.
[0067] Example 2: The first terminal sends a resource scheduling request and a buffer status report to the base station. The first terminal requests the base station to schedule SL transmission resources based on the resource scheduling request and buffer status report. The base station determines the first scheduling information based on the received resource scheduling request and buffer status report, and then sends the first scheduling information to both the first terminal and the second terminal based on the terminal identification information of the first terminal.
[0068] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, Hybrid Automatic Repeat reQuest (HARQ) process number, new data indication, configuration index, and cumulative sideline authorization index.
[0069] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0070] The first PUCCH resource indication information is the PUCCH resource index.
[0071] Furthermore, the first scheduling information may also include: second PUCCH resource indication information and third PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an acknowledgment (ACK) feedback to the base station on the resource indicated by the second PUCCH resource indication information. After decoding the first scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0072] Example 2
[0073] Step 201, which determines the scheduling information for the direct link SL transmission resources and sends the scheduling information to the first terminal and the second terminal, specifically includes:
[0074] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information and the second scheduling information are determined based on the resource scheduling request and / or the cache status report.
[0075] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal;
[0076] The second scheduling information is sent to the second terminal based on the terminal identification information of the second terminal, where the terminal identification information of the second terminal is sent by the first terminal.
[0077] Specifically, the first terminal sends the resource scheduling request and / or the cache status report to the base station. The base station determines first scheduling information and second scheduling information based on the received resource scheduling request and / or cache status report. The base station sends the first scheduling information to the first terminal based on its terminal identification information, and the first terminal decodes the first scheduling information based on its terminal identification information. Furthermore, the first terminal also sends the terminal identification information of the second terminal to the base station. The base station sends the second scheduling information to the second terminal based on the received second terminal identification information, and the second terminal decodes the second scheduling information based on its terminal identification information. Thus, the first terminal learns the target SL transmission resource allocated by the base station for transmitting target information through the decoded first scheduling information, and the second terminal learns the target SL transmission resource for transmitting target information through the decoded second scheduling information. The first terminal transmits target information on the target SL transmission resource, and the second terminal receives target information on the target SL transmission resource, ensuring the reliability of communication between the first and second terminals.
[0078] It should be noted that the first and second scheduling information can be carried through DCI signaling.
[0079] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first PUCCH resource indication information, HARQ process number, new data indication, configuration index, and cumulative sideline authorization index.
[0080] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0081] The first PUCCH resource indication information is the PUCCH resource index.
[0082] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration index, and receive resource indication.
[0083] Furthermore, the first scheduling information may also include second PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an ACK feedback to the base station on the resource indicated by the second PUCCH resource indication information.
[0084] The second scheduling information may further include: third PUCCH resource indication information. After decoding the second scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0085] Example 3
[0086] After determining the scheduling information of the direct link SL transmission resources in step 201 and sending the scheduling information to the first terminal and the second terminal, the method further includes:
[0087] If a Transmission Configuration Indicator (TCI) status information sent by the first terminal is received before the first SL transmission resource, then the TCI status information and / or the terminal identification information of the first terminal are sent to the second terminal.
[0088] Specifically, based on the above embodiments one and two, after the first terminal decodes the first scheduling information, it sends TCI status information to the base station. If the base station receives the TCI status information sent by the first terminal before the first SL transmission resource, it sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal.
[0089] The TCI status information includes, but is not limited to: Quasi Co-Location (QCL) type configuration and reference signal resource indication.
[0090] Example 4
[0091] Step 201, which determines the scheduling information for the direct link SL transmission resources and sends the scheduling information to the first terminal and the second terminal, specifically includes:
[0092] Step 2011: Determine the first scheduling information and send the first scheduling information to the first terminal;
[0093] Step 2012: Upon receiving the configuration authorization index used by the first terminal for communication between the first terminal and the second terminal from the first terminal, determine the second scheduling information based on the configuration authorization index used by the first terminal for communication between the second terminal;
[0094] Based on the terminal identification information of the second terminal, the second scheduling information and / or the terminal identification information of the first terminal are sent to the second terminal, wherein the terminal identification information of the second terminal is sent by the first terminal.
[0095] Specifically, the base station determines first scheduling information and sends it to the first terminal. The first terminal then uses this information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. Upon receiving the first scheduling information, the first terminal sends the configuration authorization index used for communication between itself and the second terminal to the base station. The base station determines second scheduling information based on this index. Furthermore, the first terminal sends the terminal identification information of the second terminal to the base station. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the received terminal identification information. The second terminal decodes the second scheduling information based on its terminal identification information and determines the target SL transmission resources used by the first terminal to transmit target information within each configuration authorization period. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring reliable communication between the first and second terminals.
[0096] It should be noted that the first and second scheduling information can be carried through RRC signaling.
[0097] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration authorization, and second PUCCH resource indication information;
[0098] The second PUCCH resource indication information includes, but is not limited to, at least one of the following: PUCCH resource index, the time interval between the physical side link feedback channel PSFCH and PUCCH.
[0099] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0100] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0101] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0102] Example 5
[0103] Before determining the second scheduling information based on the configuration authorization index used for communication between the first terminal and the second terminal, upon receiving the configuration authorization index sent by the first terminal, step 2012 further includes:
[0104] Downlink Control Information (DCI) activation signaling is sent to the first terminal, and the DCI activation signaling is used to activate the target SL transmission resource.
[0105] Specifically, the base station determines first scheduling information and sends it to the first terminal. The first terminal then uses this first scheduling information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. After sending the first scheduling information to the first terminal, the base station sends a DCI activation signaling message to the first terminal. This DCI activation signaling message is used to activate the target SL transmission resources (i.e., target configuration authorization resources). After receiving the DCI activation signaling message, the first terminal sends the configuration authorization index used for communication between the first terminal and the second terminal to the base station. The base station determines second scheduling information based on the configuration authorization index used for communication between the first terminal and the second terminal. The first terminal also sends the terminal identification information of the second terminal to the base station. The base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the received terminal identification information of the second terminal. The second terminal decodes the second scheduling information based on its terminal identification information and determines the target SL transmission resources used by the first terminal for transmitting target information within each configuration authorization period based on the decoded second scheduling information. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring the reliability of communication between the first terminal and the second terminal.
[0106] It should be noted that the first and second scheduling information can be carried through RRC signaling.
[0107] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, and maximum number of transmissions using configuration authorization.
[0108] The second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0109] DCI activation signaling includes, but is not limited to: resource pool index, SL transport resource indication, second PUCCH resource indication information, HARQ process number, new data indication, configuration authorization index, and cumulative sideline authorization index.
[0110] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0111] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal, and after receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0112] Example 6
[0113] After determining the scheduling information of the direct link SL transmission resources in step 201 and sending the scheduling information to the first terminal and the second terminal, the method further includes:
[0114] If the TCI status information sent by the first terminal is received before the first SL transmission resource in each configuration authorization cycle, then the TCI status information and / or the terminal identification information of the first terminal are sent to the second terminal.
[0115] The TCI status information includes at least one of the following: quasi-co-address QCL type configuration and reference signal resource indication.
[0116] Specifically, based on the above embodiments four and five, before determining the target SL transmission resource in each configuration authorization period according to the first scheduling information, the first terminal sends TCI status information to the base station in each configuration authorization period. If the base station receives the TCI status information sent by the first terminal before the first SL transmission resource in each configuration authorization period, it sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal, so that the second terminal determines the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period according to the TCI status information.
[0117] The TCI status information includes, but is not limited to: QCL type configuration and reference signal resource indication.
[0118] Example: such as Figure 3 As shown, each configuration authorization period has configuration authorization resources (i.e., SL transmission resources) R1, R2, and R3. Before the first configuration authorization resource R1 in each configuration authorization period, the first terminal sends TCI status information to the base station through PUCCH1. Then, the base station sends TCI status information to the second terminal through the Physical Downlink Control Channel (PDCCH). For example, in the first configuration authorization period, the first terminal sends TCI status information to the base station through PUCCH1, and then the base station sends TCI status information to the second terminal through PDCCH1.
[0119] TCI status information can also be carried using other channels, and no specific restrictions are made here.
[0120] In summary, in this embodiment, the base station determines the scheduling information of the direct link (SL) transmission resources and sends the scheduling information to the first terminal and the second terminal. The first terminal learns from the scheduling information the target SL transmission resources allocated by the base station for transmitting target information, and the second terminal learns from the scheduling information the target SL transmission resources for transmitting target information by the first terminal. The first terminal transmits target information on the target SL transmission resources, and the second terminal receives target information on the target SL transmission resources, ensuring the communication reliability between the first and second terminals. In addition, the first terminal also sends beam-related TCI status information to the base station, and the base station forwards the TCI status information to the second terminal, so that the second terminal can determine the appropriate target beam to receive the target message based on the TCI status information, further improving the communication reliability between the first and second terminals.
[0121] The resource scheduling method for direct links in a base station provided in this application can be executed by a resource scheduling device for direct links in a base station. This application uses the execution of the direct link resource scheduling method by a direct link resource scheduling device as an example to illustrate the direct link resource scheduling device provided in this application.
[0122] like Figure 4 As shown in the figure, this application embodiment also provides a resource scheduling device 400 for a direct link, applied to a base station, including:
[0123] The first processing module 401 is used to determine the scheduling information of the direct link SL transmission resources and send the scheduling information to the first terminal and the second terminal.
[0124] The scheduling information includes first scheduling information, which is sent to the first terminal and the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal and to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0125] Alternatively, the scheduling information includes the first scheduling information and the second scheduling information. The first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal, and the second scheduling information is used to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0126] Optionally, the first processing module 401 is specifically used for:
[0127] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information is determined based on the resource scheduling request and / or the cache status report;
[0128] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal and the second terminal.
[0129] Optionally, the first processing module 401 is specifically used for:
[0130] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information and the second scheduling information are determined based on the resource scheduling request and / or the cache status report.
[0131] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal;
[0132] The second scheduling information is sent to the second terminal based on the terminal identification information of the second terminal, where the terminal identification information of the second terminal is sent by the first terminal.
[0133] Optionally, the first processing module 401 is specifically used for:
[0134] The first scheduling information is determined and sent to the first terminal;
[0135] Upon receiving the configuration authorization index used by the first terminal for communication between the first terminal and the second terminal, the second scheduling information is determined based on the configuration authorization index used by the first terminal for communication between the second terminal;
[0136] Based on the terminal identification information of the second terminal, the second scheduling information and / or the terminal identification information of the first terminal are sent to the second terminal, wherein the terminal identification information of the second terminal is sent by the first terminal.
[0137] Optionally, before the first processing module 401 determines the second scheduling information based on the configuration authorization index used for communication between the first terminal and the second terminal, upon receiving the configuration authorization index sent by the first terminal, it is further configured to:
[0138] Downlink Control Information (DCI) activation signaling is sent to the first terminal, and the DCI activation signaling is used to activate the target SL transmission resource.
[0139] Optionally, the device further includes:
[0140] The first sending module is configured to, if it receives Transmission Configuration Indication (TCI) status information from the first terminal before the first SL transmission resource, send the TCI status information and / or the terminal identification information of the first terminal to the second terminal; or,
[0141] If the TCI status information sent by the first terminal is received before the first SL transmission resource in each configuration authorization cycle, then the TCI status information and / or the terminal identification information of the first terminal are sent to the second terminal.
[0142] The TCI status information includes at least one of the following: quasi-co-address QCL type configuration and reference signal resource indication.
[0143] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0144] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0145] Optionally, the second scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, configuration index, receive resource indication, and configuration authorization period.
[0146] In summary, in this embodiment, the base station determines the scheduling information of the direct link (SL) transmission resources and sends the scheduling information to the first terminal and the second terminal. The first terminal learns from the scheduling information the target SL transmission resources allocated by the base station for transmitting target information, and the second terminal learns from the scheduling information the target SL transmission resources for transmitting target information by the first terminal. The first terminal transmits target information on the target SL transmission resources, and the second terminal receives target information on the target SL transmission resources, ensuring the communication reliability between the first and second terminals. In addition, the first terminal also sends beam-related TCI status information to the base station, and the base station forwards the TCI status information to the second terminal, so that the second terminal can determine the appropriate target beam to receive the target message based on the TCI status information, further improving the communication reliability between the first and second terminals.
[0147] The resource scheduling device for direct links in base stations provided in this application embodiment can achieve... Figures 1 to 3 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.
[0148] like Figure 5 As shown in the figure, this application embodiment also provides a resource scheduling method for a direct link, applied to a first terminal, the method specifically including the following steps:
[0149] Step 501: Receive the first scheduling information sent by the base station;
[0150] Step 502: Determine the target SL transmission resource based on the first scheduling information, and send the target information on the target SL transmission resource; or, determine the target SL transmission resource within each configuration authorization period based on the first scheduling information, and send the target information on the target SL transmission resource within each configuration authorization period.
[0151] In this embodiment of the application, the base station sends first scheduling information to the first terminal. The first scheduling information is used by the base station to allocate target SL transmission resources to the first terminal. The first terminal can know the target SL transmission resources allocated by the base station for sending target information according to the received first scheduling information. Then, the first terminal sends the target message on the target SL transmission resources to ensure the reliability of communication between the first terminal and other receiving terminals.
[0152] Alternatively, the base station sends first scheduling information to the first terminal. This first scheduling information is used by the base station to allocate target SL transmission resources to the first terminal within each configuration authorization period. The first terminal can know the target SL transmission resources allocated by the base station within each configuration authorization period based on the received first scheduling information. Then, the first terminal sends target messages on the target SL transmission resources within each configuration authorization period to ensure the reliability of communication between the first terminal and other receiving terminals.
[0153] The resource scheduling method for the above-mentioned direct link will be described in detail below through specific embodiments:
[0154] Example 1
[0155] Before receiving the first scheduling information sent by the base station in step 501, the method further includes:
[0156] Send resource scheduling requests and / or cache status reports to the base station.
[0157] Specifically, the first terminal sends a resource scheduling request and / or cache status report to the base station, requesting the scheduling of SL transmission resources through the resource scheduling request and / or cache status report. This allows the base station to determine first scheduling information based on the received resource scheduling request and / or cache status report. Since both the first and second terminals are in RRC connected state and have exchanged their respective terminal identification information, the base station sends the first scheduling information to the first terminal based on the first terminal's terminal identification information. The first terminal decodes the first scheduling information based on its own terminal identification information and determines the target SL transmission resource or the target SL transmission resource within each configuration authorization period based on the decoded first scheduling information.
[0158] It should be noted that the first scheduling information can be carried through DCI signaling.
[0159] Example 1: The first terminal sends a resource scheduling request to the base station. The first terminal requests the base station to schedule SL transmission resources through the resource scheduling request, so that the base station determines the first scheduling information based on the received resource scheduling request. The base station sends the first scheduling information to the first terminal based on the terminal identification information of the first terminal.
[0160] Example 2: The first terminal sends a resource scheduling request and a cache status report to the base station. The first terminal requests the base station to schedule SL transmission resources through the resource scheduling request and cache status report, so that the base station determines the first scheduling information based on the received resource scheduling request and cache status report. The base station sends the first scheduling information to the first terminal based on the terminal identification information of the first terminal.
[0161] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first PUCCH resource indication information, HARQ process number, new data indication, configuration index, and cumulative sideline authorization index.
[0162] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0163] The first PUCCH resource indication information is the PUCCH resource index.
[0164] Furthermore, the first scheduling information may also include: second PUCCH resource indication information and third PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an ACK feedback to the base station on the resource indicated by the second PUCCH resource indication information. After decoding the first scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0165] Example 2
[0166] The method further includes:
[0167] Send the terminal identification information of the second terminal to the base station, and send a resource scheduling request and / or a cache status report to the base station.
[0168] Specifically, the first terminal sends the terminal identification information of the second terminal to the base station, as well as the resource scheduling request and / or the cache status report, so that the base station determines the second scheduling information based on the received resource scheduling request and / or cache status report. The base station sends the second scheduling information to the second terminal based on the terminal identification information of the second terminal, and the second terminal decodes the second scheduling information based on the terminal identification information of the second terminal. Thus, the second terminal knows the target SL transmission resource for transmitting target information by the first terminal through the decoded second scheduling information. The first terminal transmits the target information on the target SL transmission resource, and the second terminal receives the target information on the target SL transmission resource, ensuring the reliability of communication between the first terminal and the second terminal.
[0169] It should be noted that before receiving the first scheduling information sent by the base station, the first terminal sends a resource scheduling request and a cache status report to the base station. Before or after receiving the first scheduling information sent by the base station, the second terminal sends its terminal identification information to the base station.
[0170] It should be noted that the first and second scheduling information can be carried through DCI signaling.
[0171] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first PUCCH resource indication information, HARQ process number, new data indication, configuration index, and cumulative sideline authorization index.
[0172] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0173] The first PUCCH resource indication information is the PUCCH resource index.
[0174] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration index, and receive resource indication.
[0175] Furthermore, the first scheduling information may also include second PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an ACK feedback to the base station on the resource indicated by the second PUCCH resource indication information.
[0176] The second scheduling information may further include: third PUCCH resource indication information. After decoding the second scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0177] Example 3
[0178] Before step 502, which determines the target SL transmission resource based on the first scheduling information and sends the target information on the target SL transmission resource, the method further includes:
[0179] Before the first SL transmission resource, TCI status information is sent to the base station, and the TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0180] Specifically, based on the above embodiments one and two, after the first terminal decodes the first scheduling information, the first terminal sends TCI status information to the base station before the first SL transmission resource. After the base station receives the TCI status information sent by the first terminal before the first SL transmission resource, the base station sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal.
[0181] The TCI status information includes, but is not limited to: QCL type configuration and reference signal resource indication.
[0182] Example 4
[0183] After receiving the first scheduling information sent by the base station in step 501, the method further includes:
[0184] Step 503: Send the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal to communicate with the second terminal to the base station.
[0185] Specifically, the base station determines first scheduling information and sends it to the first terminal. The first terminal then uses this information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. Upon receiving the first scheduling information, the first terminal sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal for communication with the second terminal to the base station. This allows the base station to determine second scheduling information based on the configuration authorization index used by the first terminal for communication with the second terminal. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the terminal identification information of the second terminal. This allows the second terminal to decode the second scheduling information based on its own terminal identification information and determine the target SL transmission resources used by the first terminal for transmitting target information within each configuration authorization period based on the decoded second scheduling information. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring reliable communication between the first and second terminals.
[0186] It should be noted that the first and second scheduling information can be carried through RRC signaling.
[0187] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration authorization, and second PUCCH resource indication information;
[0188] The second PUCCH resource indication information includes, but is not limited to, at least one of the following: PUCCH resource index, the time interval between the physical side link feedback channel PSFCH and PUCCH.
[0189] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0190] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0191] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal, and after receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0192] Example 5
[0193] Before step 503, which sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal to communicate with the second terminal to the base station, the method further includes:
[0194] The base station sends a DCI activation signaling message, which is used to activate the target SL transmission resource.
[0195] Specifically, the base station determines first scheduling information and sends it to the first terminal. The first terminal then uses this first scheduling information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. After sending the first scheduling information to the first terminal, the base station sends a DCI activation signaling message to the first terminal. This DCI activation signaling message is used to activate the target SL transmission resources (i.e., target configuration authorization resources). Upon receiving the DCI activation signaling message, the first terminal sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal for communication with the second terminal to the base station. This allows the base station to determine second scheduling information based on the configuration authorization index used by the first terminal for communication with the second terminal. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the terminal identification information of the second terminal. The second terminal decodes the second scheduling information based on its own terminal identification information and determines the target SL transmission resources used by the first terminal for transmitting target information within each configuration authorization period based on the decoded second scheduling information. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring the reliability of communication between the first terminal and the second terminal.
[0196] It should be noted that the first and second scheduling information can be carried through RRC signaling.
[0197] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, and maximum number of transmissions using configuration authorization.
[0198] The second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0199] DCI activation signaling includes, but is not limited to: resource pool index, SL transport resource indication, second PUCCH resource indication information, HARQ process number, new data indication, configuration authorization index, and cumulative sideline authorization index.
[0200] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0201] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal, and after receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0202] Example 6
[0203] Before step 502, which determines the target SL transmission resource for each configuration authorization period based on the first scheduling information, and before sending the target information on the target SL transmission resource for each configuration authorization period, the method further includes:
[0204] Before the first SL transmission resource in each configuration authorization period, TCI status information is sent to the base station, and the TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0205] Specifically, based on the above embodiments four and five, before determining the target SL transmission resource in each configuration authorization period according to the first scheduling information, the first terminal sends TCI status information to the base station in each configuration authorization period. If the base station receives the TCI status information sent by the first terminal before the first SL transmission resource in each configuration authorization period, it sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal, so that the second terminal determines the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period according to the TCI status information.
[0206] The TCI status information includes, but is not limited to: QCL type configuration and reference signal resource indication.
[0207] Example: such as Figure 3 As shown, each configuration authorization period has configuration authorization resources (i.e., SL transmission resources) R1, R2, and R3. Before the first configuration authorization resource R1 in each configuration authorization period, the first terminal sends TCI status information to the base station via PUCCH. Then, the base station sends TCI status information to the second terminal via PDCCH. For example, in the first configuration authorization period, the first terminal sends TCI status information to the base station via PUCCH1, and then the base station sends TCI status information to the second terminal via PDCCH1.
[0208] TCI status information can be carried using other channels, and no specific restrictions are made here.
[0209] In summary, in this embodiment, the base station sends first scheduling information to the first terminal. The first terminal can learn about the target SL transmission resources allocated by the base station for sending target information based on the received first scheduling information. Then, the first terminal sends the target message on the target SL transmission resources. In addition, the first terminal also sends the beam-related TCI status information to the base station. The base station forwards the TCI status information to the second terminal so that the second terminal can determine the appropriate target beam to receive the target message based on the TCI status information, thereby improving the communication reliability between the first terminal and the second terminal.
[0210] The resource scheduling method for a direct link applied to a first terminal provided in this application embodiment can be executed by a resource scheduling device for a direct link applied to a first terminal. This application embodiment uses the execution of the direct link resource scheduling method by a direct link resource scheduling device as an example to illustrate the direct link resource scheduling device provided in this application embodiment.
[0211] like Figure 6 As shown in the figure, this application embodiment also provides a resource scheduling device 600 for a direct link, applied to a first terminal, including:
[0212] The first receiving module 601 is used to receive the first scheduling information sent by the base station;
[0213] The second processing module 602 is configured to determine the target SL transmission resource based on the first scheduling information, and send the target information on the target SL transmission resource; or...
[0214] The target SL transmission resources for each configuration authorization period are determined based on the first scheduling information, and the target information is sent on the target SL transmission resources for each configuration authorization period.
[0215] Optionally, the device further includes:
[0216] The third sending module is used to send the terminal identification information of the second terminal to the base station, and to send a resource scheduling request and / or a cache status report to the base station.
[0217] Optionally, the device further includes:
[0218] The fourth sending module is used to send the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal and the second terminal for communication to the base station.
[0219] Optionally, the device further includes:
[0220] The second receiving module is used to receive the DCI activation signaling sent by the base station, the DCI activation signaling being used to activate the target SL transmission resource.
[0221] Optionally, the device further includes:
[0222] The fifth transmission module is used to send TCI status information to the base station before the first SL transmission resource. The TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0223] Optionally, the device further includes:
[0224] The sixth sending module is used to send TCI status information to the base station before the first SL transmission resource in each configuration authorization period. The TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0225] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0226] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0227] In summary, in this embodiment, the base station sends first scheduling information to the first terminal. The first terminal can learn about the target SL transmission resources allocated by the base station for sending target information based on the received first scheduling information. Then, the first terminal sends the target message on the target SL transmission resources. In addition, the first terminal also sends the beam-related TCI status information to the base station. The base station forwards the TCI status information to the second terminal so that the second terminal can determine the appropriate target beam to receive the target message based on the TCI status information, thereby improving the communication reliability between the first terminal and the second terminal.
[0228] The resource scheduling device for the direct link in this embodiment can be an electronic device, such as an electronic device with an operating system, or a component in an electronic device, such as an integrated circuit or a chip. The electronic device can be a terminal, or other devices besides a terminal.
[0229] The resource scheduling device for the direct link applied to the first terminal provided in this application embodiment can achieve... Figure 1 , Figure 3 and Figure 5 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.
[0230] like Figure 7 As shown in the figure, this application embodiment also provides a resource scheduling method for a direct link, applied to a second terminal. The method specifically includes the following steps:
[0231] Step 701: Receive scheduling information sent by the base station, the scheduling information including first scheduling information and / or second scheduling information;
[0232] Step 702: Determine the target SL transmission resource according to the scheduling information, and receive the target information sent by the first terminal on the target SL transmission resource; or, determine the target SL transmission resource within each configuration authorization period according to the scheduling information, and receive the target information sent by the first terminal on the target SL transmission resource within each configuration authorization period.
[0233] It should be noted that both the first terminal and the second terminal are in Radio Resource Control (RRC) connection mode, and the first terminal and the second terminal have exchanged their respective terminal identification information. When the terminal identification information of one of them is updated, the first terminal and the second terminal need to exchange their respective terminal identification information again.
[0234] In the above embodiments of this application, the base station determines the scheduling information of the direct link SL transmission resource. The scheduling information includes first scheduling information. The base station sends the first scheduling information to the second terminal. The second terminal decodes the first scheduling information according to the terminal identification information of the first terminal, and determines the target SL transmission resource used by the first terminal to transmit the target message according to the decoded first scheduling information. The second terminal receives the target message sent by the first terminal on the target SL transmission resource.
[0235] Alternatively, the base station determines the scheduling information of the direct link SL transmission resource, the scheduling information including the first scheduling information and the second scheduling information. Then, the base station sends the first scheduling information to the first terminal and the second scheduling information to the second terminal. The second terminal decodes the second scheduling information according to the terminal identification information of the second terminal, and determines the target SL transmission resource used by the target information sent by the first terminal according to the decoded second scheduling information. The second terminal receives the target message sent by the first terminal on the target SL transmission resource.
[0236] Alternatively, the base station determines scheduling information for the direct link SL transmission resources. This scheduling information includes first scheduling information, which the base station sends to the first terminal. The first terminal then uses this first scheduling information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for sending target information within each configuration authorization period. Upon receiving the first scheduling information, the first terminal sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal for communication with the second terminal to the base station. The base station determines second scheduling information based on the configuration authorization index used by the first terminal for communication with the second terminal. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the terminal identification information of the second terminal. The second terminal decodes the second scheduling information based on its own terminal identification information and determines the target SL transmission resources used by the first terminal for sending target information within each configuration authorization period based on the decoded second scheduling information. The second terminal then receives the target message sent by the first terminal on the target SL transmission resources within each configuration authorization period.
[0237] Alternatively, the base station determines the scheduling information of the direct link SL transmission resources, the scheduling information including the first scheduling information and the second scheduling information. Then, the base station sends the first scheduling information to the first terminal and the second scheduling information to the second terminal. The second terminal decodes the second scheduling information according to the terminal identification information of the second terminal, and determines the target SL transmission resources used by the target information sent by the first terminal in each configuration authorization period according to the decoded second scheduling information. The second terminal receives the target message sent by the first terminal on the target SL transmission resources in each configuration authorization period.
[0238] In summary, the first terminal acts as the transmitting terminal, and the second terminal acts as the receiving terminal. The base station sends scheduling information to the receiving terminal, thereby allowing the receiving terminal to determine the target SL transmission resource used by the transmitting terminal to transmit target information or the target SL transmission resource used by the transmitting terminal to transmit target information within each configuration authorization period. The transmitting terminal transmits target information on the target SL transmission resource or transmits target information on the target SL transmission resource within each configuration authorization period, and the receiving terminal transmits target information on the target SL transmission resource or receives target information on the target SL transmission resource within each configuration authorization period, thus ensuring the reliability of communication between the transmitting and receiving terminals.
[0239] The resource scheduling method for the above-mentioned direct link will be described in detail below through specific embodiments:
[0240] Example 1
[0241] The base station determines the scheduling information of the direct link SL transmission resources. This scheduling information includes first scheduling information. The base station then sends the first scheduling information to the second terminal. The second terminal decodes the first scheduling information based on the terminal identification information of the first terminal and determines the target SL transmission resource used by the first terminal to transmit the target message based on the decoded first scheduling information. That is, the first terminal acts as the sending terminal, and the second terminal acts as the receiving terminal. The base station sends the first scheduling information of the SL transmission resources to the receiving terminal, thereby informing the receiving terminal of the target SL transmission resource used by the sending terminal to transmit the target information. The sending terminal transmits the target information on the target SL transmission resource, and the receiving terminal receives the target information on the target SL transmission resource, ensuring the reliability of communication between the sending and receiving terminals.
[0242] It should be noted that the first scheduling information can be carried through DCI signaling.
[0243] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first PUCCH resource indication information, HARQ process number, new data indication, configuration index, and cumulative sideline authorization index.
[0244] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0245] The first PUCCH resource indication information is the PUCCH resource index.
[0246] Furthermore, the first scheduling information may also include: second PUCCH resource indication information and third PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an ACK feedback to the base station on the resource indicated by the second PUCCH resource indication information. After decoding the first scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0247] Example 2
[0248] The base station determines the scheduling information of the direct link SL transmission resource. The scheduling information includes the first scheduling information and the second scheduling information. The base station sends the first scheduling information to the first terminal and the second scheduling information to the second terminal. The second terminal decodes the second scheduling information according to its terminal identification information and determines the target SL transmission resource used by the target information sent by the first terminal based on the decoded second scheduling information. That is, the first terminal acts as the sending terminal and the second terminal acts as the receiving terminal. The base station sends the second scheduling information to the receiving terminal, thereby the receiving terminal learns the target SL transmission resource for the sending terminal to transmit the target information through the second scheduling information. The sending terminal transmits the target information on the target SL transmission resource, and the receiving terminal receives the target information on the target SL transmission resource, ensuring the reliability of communication between the sending terminal and the receiving terminal.
[0249] It should be noted that the first and second scheduling information can be carried through DCI signaling.
[0250] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, first PUCCH resource indication information, HARQ process number, new data indication, configuration index, and cumulative sideline authorization index.
[0251] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0252] The first PUCCH resource indication information is the PUCCH resource index.
[0253] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration index, and receive resource indication.
[0254] Furthermore, the first scheduling information may also include second PUCCH resource indication information. After decoding the first scheduling information, the first terminal sends an ACK feedback to the base station on the resource indicated by the second PUCCH resource indication information.
[0255] The second scheduling information may further include: third PUCCH resource indication information. After decoding the second scheduling information, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then, the base station sends an acknowledgment message to the first terminal. After receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource confirmed according to the decoded first scheduling information.
[0256] Example 3
[0257] Before step 702, which determines the target SL transmission resource based on the scheduling information and receives the target information sent by the first terminal on the target SL transmission resource, the method further includes:
[0258] If TCI status information is received before the first SL transmission resource, the target beam used to receive the target information on the target SL transmission resource is determined based on the TCI status information.
[0259] If the TCI status information is not received before the first configured authorized resource, the target beam is determined by the previously received TCI status information or beam pairing.
[0260] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0261] Specifically, based on Embodiments 1 and 2 above, after decoding the first scheduling information, the first terminal sends TCI status information to the base station. The base station then sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal. If the second terminal receives the TCI status information before the first SL transmission resource, it determines the target beam to use for receiving the target information sent by the first terminal on the target SL transmission resource based on the TCI status information. If the second terminal does not receive the TCI status information before the first SL transmission resource, it determines the target beam using the previously received TCI status information; or if the second terminal does not receive the TCI status information before the first SL transmission resource, it determines the target beam through beam pairing.
[0262] The TCI status information includes, but is not limited to: QCL type configuration and reference signal resource indication.
[0263] Example 4
[0264] The base station determines the scheduling information for the direct link (SL) transmission resources. This scheduling information includes first scheduling information, which the base station sends to the first terminal. The first terminal then uses this first scheduling information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. Upon receiving the first scheduling information, the first terminal sends the terminal identification information of the second terminal and the configuration authorization index used for communication between the first terminal and / or the second terminal to the base station. The base station determines second scheduling information based on the configuration authorization index used for communication between the first terminal and the second terminal. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the terminal identification information of the second terminal. The second terminal decodes the second scheduling information based on its own terminal identification information and determines the target SL transmission resources used by the first terminal for transmitting target information within each configuration authorization period based on the decoded second scheduling information. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring reliable communication between the first and second terminals.
[0265] The first and second scheduling information can be carried through RRC signaling.
[0266] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration authorization, and second PUCCH resource indication information;
[0267] The second PUCCH resource indication information includes, but is not limited to, at least one of the following: PUCCH resource index, the time interval between the physical side link feedback channel PSFCH and PUCCH.
[0268] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0269] Furthermore, the second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0270] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal, and after receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0271] Example 5
[0272] The base station determines first scheduling information and sends it to the first terminal. The first terminal then uses this information to determine the target SL transmission resources (i.e., target configuration authorization resources) allocated by the base station for transmitting target information within each configuration authorization period. After sending the first scheduling information to the first terminal, the base station sends a DCI activation signaling message to the first terminal. This DCI activation signaling message is used to activate the target SL transmission resources (i.e., target configuration authorization resources). Upon receiving the DCI activation signaling message, the first terminal sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal for communication with the second terminal to the base station. The base station determines second scheduling information based on the configuration authorization index used by the first terminal for communication with the second terminal. The base station then sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal based on the terminal identification information of the second terminal. The second terminal decodes the second scheduling information based on its own terminal identification information and determines the target SL transmission resources used by the first terminal for transmitting target information within each configuration authorization period based on the decoded second scheduling information. Thus, the first terminal transmits target information on the target SL transmission resources within each configuration authorization period, and the second terminal receives target information on the target SL transmission resources within each configuration authorization period, ensuring the reliability of communication between the first terminal and the second terminal.
[0273] It should be noted that the first and second scheduling information can be carried through RRC signaling.
[0274] Furthermore, the first scheduling information includes, but is not limited to, at least one of the following: resource pool index, configuration authorization index, configuration authorization period, number of HARQ processes, HARQ process number offset, and maximum number of transmissions using configuration authorization.
[0275] The second scheduling information includes, but is not limited to, at least one of the following: resource pool index, SL transmission resource indication, and configuration authorization period.
[0276] DCI activation signaling includes, but is not limited to: resource pool index, SL transport resource indication, second PUCCH resource indication information, HARQ process number, new data indication, configuration authorization index, and cumulative sideline authorization index.
[0277] The SL transmission resource indication includes, but is not limited to, at least one of the following: time-domain resource offset, time-domain resource allocation, frequency-domain resource allocation, and starting sub-channel index.
[0278] Furthermore, the second scheduling information may also include third PUCCH resource indication information. After the base station sends the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, the second terminal sends an ACK feedback to the base station on the resource indicated by the third PUCCH resource indication information. Then the base station sends an acknowledgment message to the first terminal, and after receiving the acknowledgment message, the first terminal sends the target information on the target SL transmission resource (i.e., the target configuration authorized resource) confirmed according to the first scheduling information.
[0279] Example 6
[0280] Before step 702 determines the target SL transmission resource for each configuration authorization period based on the scheduling information, and before receiving the target information sent by the first terminal on the target SL transmission resource for each configuration authorization period, the method further includes:
[0281] If TCI status information is received before the first SL transmission resource in each configuration authorization period, then the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period is determined based on the TCI status information.
[0282] If the TCI status information is not received before the first SL transmission resource in each configuration authorization cycle, the target beam is determined by the previously received TCI status information or beam pairing.
[0283] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0284] Specifically, based on the above embodiments four and five, the first terminal sends TCI status information to the base station in each configuration authorization period. The base station sends the TCI status information and / or the terminal identification information of the first terminal to the second terminal. If the second terminal receives the TCI status information before the first SL transmission resource in each configuration authorization period, it determines the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period according to the TCI status information, and uses the target beam to receive the target information sent by the first terminal on the target SL transmission resource in each configuration authorization period. If the second terminal has not received TCI status information before the first SL transmission resource in each configuration authorization period, the second terminal determines the target beam used to receive target information on the target SL transmission resource in each configuration authorization period based on the previously received TCI status information, and uses the target beam to receive the target information sent by the first terminal on the target SL transmission resource in each configuration authorization period; or, if the second terminal has not received TCI status information before the first SL transmission resource in each configuration authorization period, the second terminal determines the target beam used to receive target information on the target SL transmission resource in each configuration authorization period through beam pairing, and uses the target beam to receive the target information sent by the first terminal on the target SL transmission resource in each configuration authorization period.
[0285] The TCI status information includes, but is not limited to: QCL type configuration and reference signal resource indication.
[0286] Example: such as Figure 3 As shown, each configuration authorization period has configuration authorization resources (i.e., SL transmission resources) R1, R2, and R3. Before the first configuration authorization resource R1 in each configuration authorization period, the first terminal sends TCI status information to the base station via PUCCH. Then, the base station sends TCI status information to the second terminal via PDCCH1. For example, in the first configuration authorization period, the first terminal sends TCI status information to the base station via PUCCH, and then the base station sends TCI status information to the second terminal via PDCCH1.
[0287] If the second terminal has not received TCI status information before the configuration authorization resource R1 of each configuration authorization cycle, the target beam is determined based on the latest TCI status information received previously, or the communication beam determined by beam pairing is used as the target beam.
[0288] TCI status information can be carried using other channels, and no specific restrictions are made here.
[0289] In summary, in the embodiments described above, the base station sends scheduling information to the second terminal, thereby enabling the second terminal to obtain the target SL transmission resource for transmitting target information from the first terminal. The first terminal transmits the target information on the target SL transmission resource, and the second terminal also transmits the target information on the target SL transmission resource, ensuring the communication reliability between the sending terminal and the receiving terminal. Furthermore, the first terminal also sends beam-related TCI status information to the base station, which forwards the TCI status information to the second terminal, enabling the second terminal to determine the appropriate target beam to receive the target message based on the TCI status information, further improving the communication reliability between the first terminal and the second terminal.
[0290] The resource scheduling method for a direct link applied to a second terminal provided in this application embodiment can be executed by a resource scheduling device for a direct link applied to a second terminal. This application embodiment uses the execution of the direct link resource scheduling method by a direct link resource scheduling device as an example to illustrate the direct link resource scheduling device provided in this application embodiment.
[0291] like Figure 8 As shown in the illustration, this application also provides a resource scheduling device for a direct link, applied to a second terminal, comprising:
[0292] The third receiving module 801 is used to receive scheduling information sent by the base station, the scheduling information including first scheduling information and / or second scheduling information;
[0293] The third processing module 802 is configured to determine the target SL transmission resource based on the scheduling information, and receive the target information sent by the first terminal on the target SL transmission resource; or...
[0294] The target SL transmission resources within each configuration authorization period are determined based on the scheduling information, and the target information sent by the first terminal is received on the target SL transmission resources within each configuration authorization period.
[0295] Optionally, the device further includes:
[0296] The first determining module is configured to, if TCI status information is received before the first SL transmission resource, determine, based on the TCI status information, the target beam used to receive the target information on the target SL transmission resource.
[0297] The second determining module is used to determine the target beam by means of the previously received TCI status information or beam pairing if the TCI status information has not been received before the first configuration authorized resource.
[0298] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0299] Optionally, the device further includes:
[0300] The third determining module is used to determine, based on the TCI status information, the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period if TCI status information is received before the first SL transmission resource in each configuration authorization period.
[0301] The fourth determining module is used to determine the target beam by means of the previously received TCI status information or beam pairing if the TCI status information has not been received before the first SL transmission resource in each configuration authorization period.
[0302] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0303] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0304] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0305] Optionally, the second scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, configuration index, receive resource indication, and configuration authorization period.
[0306] In summary, in the embodiments described above, the base station sends scheduling information to the second terminal, thereby enabling the second terminal to obtain the target SL transmission resource for transmitting target information from the first terminal. The first terminal transmits the target information on the target SL transmission resource, and the second terminal also transmits the target information on the target SL transmission resource, ensuring the communication reliability between the sending terminal and the receiving terminal. Furthermore, the first terminal also sends beam-related TCI status information to the base station, which forwards the TCI status information to the second terminal, enabling the second terminal to determine the appropriate target beam to receive the target message based on the TCI status information, further improving the communication reliability between the first terminal and the second terminal.
[0307] The resource scheduling device for the direct link in this embodiment can be an electronic device, such as an electronic device with an operating system, or a component in an electronic device, such as an integrated circuit or a chip. The electronic device can be a terminal, or other devices besides a terminal.
[0308] The resource scheduling device for the direct link applied to the second terminal provided in this application embodiment can achieve... Figure 1 , Figure 3 and Figure 7 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.
[0309] This application embodiment also provides a terminal, which can be a first terminal or a second terminal, specifically including a processor and a communication interface. The communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement, for example... Figure 1 , Figure 3 , Figure 5 , Figure 7 The steps in the method embodiment shown are illustrated. This terminal embodiment corresponds to the above-described terminal-side method embodiment. All implementation processes and methods of the above-described method embodiments can be applied to this terminal embodiment and achieve the same technical effect. Specifically, Figure 9 A schematic diagram of the hardware structure of a terminal to implement an embodiment of this application.
[0310] The terminal 900 includes, but is not limited to, at least some of the following components: radio frequency unit 901, network module 902, audio output unit 903, input unit 904, sensor 905, display unit 906, user input unit 907, interface unit 908, memory 909, and processor 910.
[0311] Those skilled in the art will understand that the terminal 900 may also include a power supply (such as a battery) for supplying power to various components. The power supply may be logically connected to the processor 910 through a power management system, thereby enabling functions such as managing charging, discharging, and power consumption through the power management system. Figure 9 The terminal structure shown does not constitute a limitation on the terminal. The terminal may include more or fewer components than shown, or combine certain components, or have different component arrangements, which will not be elaborated here.
[0312] It should be understood that, in this embodiment, the input unit 904 may include a graphics processing unit (GPU) 9041 and a microphone 9042. The GPU 9041 processes image data of still images or videos obtained by an image capture device (such as a camera) in video capture mode or image capture mode. The display unit 906 may include a display panel 9061, which may be configured in the form of a liquid crystal display, an organic light-emitting diode, or the like. The user input unit 907 includes at least one of 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 a touch detection device and a touch controller. Other input devices 9072 may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, power buttons, etc.), trackballs, mice, and joysticks, which will not be described in detail here.
[0313] In this embodiment, after receiving downlink data from the base station, the radio frequency unit 901 can transmit it to the processor 910 for processing; in addition, the radio frequency unit 901 can send uplink data to the base station. Typically, the radio frequency unit 901 includes, but is not limited to, antennas, amplifiers, transceivers, couplers, low-noise amplifiers, duplexers, etc.
[0314] The memory 909 can be used to store software programs or instructions, as well as various data. The memory 909 may primarily include a first storage area for storing programs or instructions and a second storage area for storing data. The first storage area may store the operating system, application programs or instructions required for at least one function (such as sound playback, image playback, etc.). Furthermore, the memory 909 may include volatile memory or non-volatile memory. The non-volatile 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. Volatile memory can be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct memory bus RAM (DRRAM). The memory 909 in the embodiments of this application includes, but is not limited to, these and any other suitable types of memory.
[0315] Processor 910 may include one or more processing units; optionally, processor 910 integrates an application processor and a modem processor, wherein the application processor mainly handles operations involving the operating system, user interface, and applications, and the modem processor mainly handles wireless communication signals, such as a baseband processor. It is understood that the aforementioned modem processor may also not be integrated into processor 910.
[0316] When the terminal is the first terminal, the processor 910 is used to receive the first scheduling information sent by the base station;
[0317] The target SL transmission resource is determined based on the first scheduling information, and the target information is transmitted on the target SL transmission resource; or...
[0318] The target SL transmission resources for each configuration authorization period are determined based on the first scheduling information, and the target information is sent on the target SL transmission resources for each configuration authorization period.
[0319] Optionally, before receiving the first scheduling information sent by the base station, the processor 910 is further configured to:
[0320] Send the terminal identification information of the second terminal to the base station, and send a resource scheduling request and / or a cache status report to the base station.
[0321] Optionally, after receiving the first scheduling information sent by the base station, the processor 910 is further configured to:
[0322] Send the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal to communicate with the second terminal to the base station.
[0323] Optionally, before the processor 910 sends the terminal identification information of the second terminal and / or the configuration authorization index used by the first terminal to communicate with the second terminal to the base station, it is further used to:
[0324] The base station sends a DCI activation signaling message, which is used to activate the target SL transmission resource.
[0325] Optionally, before determining the target SL transmission resource based on the first scheduling information and sending the target information on the target SL transmission resource, the processor 910 is further configured to:
[0326] Before the first SL transmission resource, TCI status information is sent to the base station, and the TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0327] Optionally, before determining the target SL transmission resource for each configuration grant period based on the first scheduling information, and before sending the target information on the target SL transmission resource for each configuration grant period, the processor 910 is further configured to:
[0328] Before the first SL transmission resource in each configuration authorization period, TCI status information is sent to the base station, and the TCI status information includes at least one of the following: QCL type configuration and reference signal resource indication.
[0329] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0330] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0331] In summary, in this embodiment, the base station sends first scheduling information to the first terminal. The first terminal can learn about the target SL transmission resources allocated by the base station for sending target information based on the received first scheduling information. Then, the first terminal sends the target message on the target SL transmission resources. In addition, the first terminal also sends the beam-related TCI status information to the base station. The base station forwards the TCI status information to the second terminal so that the second terminal can determine the appropriate target beam to receive the target message based on the TCI status information, thereby improving the communication reliability between the first terminal and the second terminal.
[0332] It is understood that the implementation process of each implementation method mentioned in this embodiment can refer to the relevant description of the resource scheduling method embodiment applied to the direct link of the first terminal, and achieve the same or corresponding technical effects. To avoid repetition, it will not be described again here.
[0333] When the terminal is a second terminal, the processor 910 is used to receive scheduling information sent by the base station, the scheduling information including first scheduling information and / or second scheduling information;
[0334] The target SL transmission resource is determined based on the scheduling information, and the target information sent by the first terminal is received on the target SL transmission resource; or...
[0335] The target SL transmission resources within each configuration authorization period are determined based on the scheduling information, and the target information sent by the first terminal is received on the target SL transmission resources within each configuration authorization period.
[0336] Optionally, before determining the target SL transmission resource according to the scheduling information and receiving the target information sent by the first terminal on the target SL transmission resource, the processor 910 is further configured to:
[0337] If TCI status information is received before the first SL transmission resource, the target beam used to receive the target information on the target SL transmission resource is determined based on the TCI status information.
[0338] If the TCI status information is not received before the first configured authorized resource, the target beam is determined by the previously received TCI status information or beam pairing.
[0339] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0340] Optionally, before determining the target SL transmission resource for each configuration authorization period based on the scheduling information, and before receiving the target information sent by the first terminal on the target SL transmission resource for each configuration authorization period, the processor 910 is further configured to:
[0341] If TCI status information is received before the first SL transmission resource in each configuration authorization period, then the target beam used to receive the target information on the target SL transmission resource in each configuration authorization period is determined based on the TCI status information.
[0342] If the TCI status information is not received before the first SL transmission resource in each configuration authorization cycle, the target beam is determined by the previously received TCI status information or beam pairing.
[0343] The TCI status information includes at least one of the following: QCL type configuration, reference signal resource indication.
[0344] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0345] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0346] Optionally, the second scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, configuration index, receive resource indication, and configuration authorization period.
[0347] In summary, in the embodiments described above, the base station sends scheduling information to the second terminal, thereby enabling the second terminal to obtain the target SL transmission resource for transmitting target information from the first terminal. The first terminal transmits the target information on the target SL transmission resource, and the second terminal also transmits the target information on the target SL transmission resource, ensuring the communication reliability between the sending terminal and the receiving terminal. Furthermore, the first terminal also sends beam-related TCI status information to the base station, which forwards the TCI status information to the second terminal, enabling the second terminal to determine the appropriate target beam to receive the target message based on the TCI status information, further improving the communication reliability between the first terminal and the second terminal.
[0348] It is understood that the implementation process of each implementation method mentioned in this embodiment can refer to the relevant description of the resource scheduling method embodiment applied to the direct link of the second terminal, and achieve the same or corresponding technical effects. To avoid repetition, it will not be described again here.
[0349] This application embodiment also provides a base station, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the following steps:
[0350] Determine the scheduling information for the direct link SL transmission resources, and send the scheduling information to the first terminal and the second terminal;
[0351] The scheduling information includes first scheduling information, which is sent to the first terminal and the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal and to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0352] Alternatively, the scheduling information includes the first scheduling information and the second scheduling information. The first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal. The first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal, and the second scheduling information is used to indicate to the second terminal the target SL transmission resources used by the target information sent by the first terminal.
[0353] Optionally, determining the scheduling information for the direct link SL transmission resources and sending the scheduling information to the first terminal and the second terminal includes:
[0354] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information is determined based on the resource scheduling request and / or the cache status report;
[0355] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal and the second terminal.
[0356] Optionally, determining the scheduling information for the direct link SL transmission resources and sending the scheduling information to the first terminal and the second terminal includes:
[0357] Upon receiving a resource scheduling request and / or cache status report sent by the first terminal, the first scheduling information and the second scheduling information are determined based on the resource scheduling request and / or the cache status report.
[0358] Based on the terminal identification information of the first terminal, the first scheduling information is sent to the first terminal;
[0359] The second scheduling information is sent to the second terminal based on the terminal identification information of the second terminal, where the terminal identification information of the second terminal is sent by the first terminal.
[0360] Optionally, determining the scheduling information for the direct link SL transmission resources and sending the scheduling information to the first terminal and the second terminal includes:
[0361] The first scheduling information is determined and sent to the first terminal;
[0362] Upon receiving the configuration authorization index used by the first terminal for communication between the first terminal and the second terminal from the first terminal, the second scheduling information is determined based on the configuration authorization index used by the first terminal for communication between the second terminal;
[0363] Based on the terminal identification information of the second terminal, the second scheduling information and / or the terminal identification information of the first terminal are sent to the second terminal, wherein the terminal identification information of the second terminal is sent by the first terminal.
[0364] Optionally, before determining the second scheduling information based on the configuration authorization index used for communication between the first terminal and the second terminal upon receiving the configuration authorization index sent by the first terminal, the method further includes:
[0365] Downlink Control Information (DCI) activation signaling is sent to the first terminal, and the DCI activation signaling is used to activate the target SL transmission resource.
[0366] Optionally, after determining the scheduling information for the direct link SL transmission resources and sending the scheduling information to the first terminal and the second terminal, the method further includes:
[0367] If the Transmission Configuration Indication (TCI) status information sent by the first terminal is received before the first SL transmission resource, then the TCI status information and / or the terminal identification information of the first terminal are sent to the second terminal; or,
[0368] If the TCI status information sent by the first terminal is received before the first SL transmission resource in each configuration authorization cycle, then the TCI status information and / or the terminal identification information of the first terminal are sent to the second terminal.
[0369] The TCI status information includes at least one of the following: quasi-co-address QCL type configuration and reference signal resource indication.
[0370] Optionally, the first scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configuration grant index, configuration grant period, number of HARQ processes, HARQ process number offset, maximum number of transmissions using configuration grant, and second PUCCH resource indication information;
[0371] The second PUCCH resource indication information includes at least one of the following: PUCCH resource index, physical side link feedback channel PSFCH, and the time interval between PUCCH.
[0372] Optionally, the second scheduling information includes at least one of the following: resource pool index, SL transmission resource indication, configuration index, receive resource indication, and configuration authorization period.
[0373] This base station embodiment corresponds to the base station method embodiment described above. All implementation processes and methods of the above method embodiment can be applied to this base station embodiment and can achieve the same technical effect.
[0374] Specifically, embodiments of this application also provide a base station. For example... Figure 10 As shown, the base station 1000 includes: an antenna 101, a radio frequency (RF) device 102, a baseband device 103, a processor 104, and a memory 105. The antenna 101 is connected to the RF device 102. In the uplink direction, the RF device 102 receives information through the antenna 101 and transmits the received information to the baseband device 103 for processing. In the downlink direction, the baseband device 103 processes the information to be transmitted and transmits it to the RF device 102. The RF device 102 processes the received information and transmits it through the antenna 101.
[0375] The method executed by the base station in the above embodiments can be implemented in the baseband device 103, which includes a baseband processor.
[0376] The baseband device 103 may include, for example, at least one baseband board on which multiple chips are disposed, such as... Figure 10 As shown, one of the chips is, for example, a baseband processor, which is connected to the memory 105 via a bus interface to call the program in the memory 105 and execute the network device operation shown in the above method embodiment.
[0377] The base station may also include a network interface 106, such as a Common Public Radio Interface (CPRI).
[0378] Specifically, the base station 1000 of this embodiment further includes: instructions or programs stored in memory 105 and executable on processor 104, wherein processor 104 calls the instructions or programs in memory 105 to execute. Figures 1 to 3 The method shown achieves the same technical effect, and to avoid repetition, it will not be elaborated here.
[0379] This application also provides a readable storage medium storing a program or instructions. When the program or instructions are executed by a processor, they implement the various processes of the above-described resource scheduling method embodiment for the direct link and achieve the same technical effect. To avoid repetition, they will not be described again here.
[0380] The processor mentioned above is the processor in the terminal described in the above embodiments. The readable storage medium includes computer-readable storage media, such as computer read-only memory (ROM), random access memory (RAM), magnetic disk, or optical disk. In some examples, the readable storage medium may be a non-transient readable storage medium.
[0381] This application embodiment also provides a chip, which includes a processor and a communication interface. The communication interface and the processor are coupled. The processor is used to run programs or instructions to implement the various processes of the above-described resource scheduling method embodiment for direct link, and can achieve the same technical effect. To avoid repetition, it will not be described again here.
[0382] It should be understood that the chip mentioned in the embodiments of this application may also be referred to as a system-on-a-chip, system chip, chip system, or system-on-a-chip, etc.
[0383] This application also provides a computer program / program product, which is stored in a storage medium and executed by at least one processor to implement the various processes of the above-described resource scheduling method embodiment for the direct link, and can achieve the same technical effect. To avoid repetition, it will not be described again here.
[0384] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, 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 also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
[0385] From the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of computer software products plus necessary general-purpose hardware platforms, and of course, they can also be implemented by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes several instructions to cause the terminal or base station to execute the methods described in the various embodiments of this application.
[0386] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other implementations under the guidance of this application without departing from the spirit and scope of the claims. All of these implementations are within the protection scope of this application.
Claims
1. A method for resource scheduling of a sidelink, the method comprising: Applied to a base station, comprising: determining scheduling information of sidelink, SL, transmission resources, and sending the scheduling information to a first terminal and a second terminal; wherein the scheduling information comprises first scheduling information, the first scheduling information is sent to the first terminal and the second terminal, and the first scheduling information is used to indicate target SL transmission resources allocated to the first terminal and to indicate the target SL transmission resources used by target information sent by the first terminal to the second terminal; or, the scheduling information comprises the first scheduling information and second scheduling information, the first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal, the first scheduling information is used to indicate the target SL transmission resources allocated to the first terminal, and the second scheduling information is used to indicate the target SL transmission resources used by target information sent by the first terminal to the second terminal.
2. The method of Claim 1, wherein, The determination of the scheduling information of the sidelink, SL, transmission resources, and the sending of the scheduling information to the first terminal and the second terminal, comprising: in the case of receiving the resource scheduling request and / or the buffer status report sent by the first terminal, determining the first scheduling information according to the resource scheduling request and / or the buffer status report; according to the terminal identification information of the first terminal, sending the first scheduling information to the first terminal and the second terminal.
3. The method of Claim 1, wherein, The determination of the scheduling information of the sidelink, SL, transmission resources, and the sending of the scheduling information to the first terminal and the second terminal, comprising: in the case of receiving the resource scheduling request and / or the buffer status report sent by the first terminal, determining the first scheduling information and the second scheduling information according to the resource scheduling request and / or the buffer status report; according to the terminal identification information of the first terminal, sending the first scheduling information to the first terminal; according to the terminal identification information of the second terminal, sending the second scheduling information to the second terminal, and the terminal identification information of the second terminal is sent by the first terminal.
4. The method of Claim 1, wherein, The determination of the scheduling information of the sidelink, SL, transmission resources, and the sending of the scheduling information to the first terminal and the second terminal, comprising: determining the first scheduling information and sending the first scheduling information to the first terminal; in the case of receiving the configuration grant index used by the first terminal and the second terminal for communication sent by the first terminal, determining the second scheduling information according to the configuration grant index used by the first terminal and the second terminal for communication; according to the terminal identification information of the second terminal, sending the second scheduling information and / or the terminal identification information of the first terminal to the second terminal, and the terminal identification information of the second terminal is sent by the first terminal.
5. The method of resource scheduling for sidelink link according to claim 4, wherein, The determination of the second scheduling information according to the configuration grant index used by the first terminal and the second terminal for communication before the case of receiving the configuration grant index used by the first terminal and the second terminal for communication sent by the first terminal, comprising: sending, to the first terminal, downlink control information (DCI) activation signaling for activating the target SL transmission resource.
6. The method of sidelink resource scheduling according to any one of claims 1 to 5, wherein, After the determining the scheduling information of the sidelink (SL) transmission resource and sending the scheduling information to the first terminal and the second terminal, the method further comprises: if the TCI state information and / or the terminal identifier of the first terminal is received before the first SL transmission resource, sending the TCI state information and / or the terminal identifier of the first terminal to the second terminal; or if the TCI state information is received before the first SL transmission resource in each configured grant period, sending the TCI state information and / or the terminal identifier of the first terminal to the second terminal. The TCI state information comprises at least one of the following: a quasi co-location (QCL) type configuration, a reference signal resource indication.
7. The method according to any one of claims 1 to 5, c h a r a c t e r i z e d b y The first scheduling information comprises at least one of the following: a resource pool index, an SL transmission resource indication, a first physical uplink control channel (PUCCH) resource indication information, a hybrid automatic repeat request (HARQ) process number, a new data indication, a configuration index, a cumulative sidelink grant index, a configured grant index, a configured grant period, a HARQ process number, a HARQ process number offset, a maximum number of transmissions using configured grant, a second PUCCH resource indication information. The second PUCCH resource indication information comprises at least one of the following: a PUCCH resource index, a time interval between a physical sidelink feedback channel (PSFCH) and a PUCCH.
8. The method of sidelink resource scheduling according to any one of claims 1 to 5, wherein, The second scheduling information comprises at least one of the following: a resource pool index, an SL transmission resource indication, a configuration index, a reception resource indication, a configured grant period.
9. A method for resource scheduling of a sidelink, the method comprising: The method applied to the first terminal comprises: receiving the first scheduling information sent by the base station; determining a target SL transmission resource according to the first scheduling information, and sending target information on the target SL transmission resource; or determining a target SL transmission resource in each configured grant period according to the first scheduling information, and sending the target information on the target SL transmission resource in each configured grant period.
10. The method of Claim 9, wherein, The method further comprises: sending terminal identifier of the second terminal to the base station, and sending a resource scheduling request and / or a buffer status report to the base station.
11. The method of resource scheduling for sidelink link according to claim 9, wherein, After the receiving the first scheduling information sent by the base station, the method further comprises: sending terminal identifier of the second terminal and / or a configured grant index used by the first terminal and the second terminal for communication to the base station.
12. The method of resource scheduling for sidelink link according to claim 11, wherein, Before the sending terminal identifier of the second terminal and / or the configured grant index used by the first terminal and the second terminal for communication to the base station, the method further comprises: receiving DCI activation signaling sent by the base station, the DCI activation signaling being used for activating the target SL transmission resource.
13. The method of sidelink resource scheduling according to any one of claims 9 to 10, wherein, Before the determining a target SL transmission resource according to the first scheduling information and sending target information on the target SL transmission resource, the method further comprises: The TCI state information includes at least one of a QCL type configuration and a reference signal resource indication.
14. The method of sidelink resource scheduling according to any one of claims 9, 11, 12, wherein, The method further includes, before determining the target SL transmission resource in each configured grant period according to the first scheduling information and receiving the target information sent by the first terminal on the target SL transmission resource in each configured grant period: The TCI state information includes at least one of a QCL type configuration and a reference signal resource indication.
15. The method of sidelink resource scheduling according to any one of claims 9 to 12, wherein, The first scheduling information includes at least one of a resource pool index, an SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, a hybrid automatic repeat request (HARQ) process number, a new data indication, a configuration index, a cumulative sidelink grant index, a configured grant index, a configured grant period, a HARQ process number, a HARQ process number offset, a maximum number of transmissions using a configured grant, and second PUCCH resource indication information. The second PUCCH resource indication information includes at least one of a PUCCH resource index, and a time interval between a physical sidelink feedback channel (PSFCH) and the PUCCH.
16. A method for resource scheduling of a sidelink, the method comprising: The method is applied to a second terminal, and includes: receiving scheduling information sent by a base station, the scheduling information including first scheduling information and / or second scheduling information; determining a target SL transmission resource according to the scheduling information, and receiving target information sent by a first terminal on the target SL transmission resource; or determining a target SL transmission resource in each configured grant period according to the scheduling information, and receiving target information sent by the first terminal on the target SL transmission resource in each configured grant period.
17. The method of resource scheduling for sidelink link according to claim 16, wherein, The method further includes, before determining the target SL transmission resource according to the scheduling information and receiving target information sent by a first terminal on the target SL transmission resource: if TCI state information is received before a first SL transmission resource, determining a target beam used for receiving the target information on the target SL transmission resource according to the TCI state information; if the TCI state information is not received before a first configured grant resource, determining the target beam through last received TCI state information or beam pairing; The TCI state information includes at least one of a QCL type configuration and a reference signal resource indication.
18. The method of scheduling resources for sidelink communication according to claim 16, wherein, The method further includes, before determining the target SL transmission resource in each configured grant period according to the scheduling information and receiving target information sent by the first terminal on the target SL transmission resource in each configured grant period: if TCI state information is received before a first SL transmission resource in each configured grant period, determining a target beam used for receiving the target information on the target SL transmission resource in each configured grant period according to the TCI state information; If the TCI state information is not received before the first SL transmission resource in each configured grant period, the target beam is determined by the last received TCI state information or beam pairing; The TCI state information comprises at least one of the following: QCL type configuration, reference signal resource indication.
19. The method of scheduling resources for sidelink communication according to claim 16, wherein, The first scheduling information comprises at least one of the following: resource pool index, SL transmission resource indication, first physical uplink control channel (PUCCH) resource indication information, hybrid automatic repeat request (HARQ) process number, new data indication, configuration index, cumulative sidelink grant index, configured grant index, configured grant period, HARQ process number, HARQ process number offset, maximum number of transmissions using configured grant, second PUCCH resource indication information; The second PUCCH resource indication information comprises at least one of the following: PUCCH resource index, time interval between physical sidelink feedback channel (PSFCH) and PUCCH.
20. The method of scheduling resources for sidelink communication according to claim 16, wherein, The second scheduling information comprises at least one of the following: resource pool index, SL transmission resource indication, configuration index, reception resource indication, configured grant period.
21. A resource scheduling device for a direct link, characterized in that, Applied to a base station, comprising: A first processing module is configured to determine scheduling information of a sidelink (SL) transmission resource, and send the scheduling information to a first terminal and a second terminal; The scheduling information comprises first scheduling information, the first scheduling information is sent to the first terminal and the second terminal, and the first scheduling information is used to indicate a target SL transmission resource allocated to the first terminal and indicate the target SL transmission resource used by target information sent by the first terminal to the second terminal; Or, the scheduling information comprises the first scheduling information and second scheduling information, the first scheduling information is sent to the first terminal, and the second scheduling information is sent to the second terminal, the first scheduling information is used to indicate the target SL transmission resource allocated to the first terminal, and the second scheduling information is used to indicate the target SL transmission resource used by target information sent by the first terminal to the second terminal.
22. A resource scheduling device for a direct link, characterized in that, Applied to a first terminal, comprising: A first receiving module is configured to receive first scheduling information sent by a base station; A second processing module is configured to determine a target SL transmission resource according to the first scheduling information, and send target information on the target SL transmission resource; or A target SL transmission resource in each configured grant period is determined according to the first scheduling information, and the target information is sent on the target SL transmission resource in each configured grant period.
23. A resource scheduling device for a direct link, characterized in that, Applied to a second terminal, comprising: A third receiving module is configured to receive scheduling information sent by a base station, the scheduling information comprising first scheduling information and / or second scheduling information; A third processing module is configured to determine a target SL transmission resource according to the scheduling information, and receive target information sent by a first terminal on the target SL transmission resource; or According to the scheduling information, target SL transmission resources in each configured grant period are determined, and target information sent by the first terminal is received on the target SL transmission resources in each configured grant period.
24. A base station, comprising: A processor and a memory are included, the memory stores programs or instructions executable on the processor, and the programs or instructions are executed by the processor to implement the steps of the sidelink resource scheduling method according to any one of claims 1-8.
25. A terminal, characterized by A processor and a memory are included, the memory stores programs or instructions executable on the processor, and the programs or instructions are executed by the processor to implement the steps of the sidelink resource scheduling method according to any one of claims 9-15, or implement the steps of the sidelink resource scheduling method according to any one of claims 16-20.
26. A readable storage medium characterized by, The readable storage medium stores programs or instructions, and the programs or instructions are executed by the processor to implement the sidelink resource scheduling method according to any one of claims 1-8, or implement the steps of the sidelink resource scheduling method according to any one of claims 9-15, or implement the steps of the sidelink resource scheduling method according to any one of claims 16-20.