Wireless communication method and device

The introduction of a primary and non-primary link mode in wireless communication systems addresses the challenges of NSTR mobile AP MLD setup and operation, enhancing network efficiency and capacity through synchronized transmission and profile management.

JP7792520B2Active Publication Date: 2025-12-25GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
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Patent Information

Application Number
JP2024531142
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-11-25
Publication Date
2025-12-25
Estimated Expiration
2041-11-25

AI Technical Summary

Technical Problem

Existing wireless communication technologies face challenges in efficiently setting up and operating Non-Simultaneous Transmit and Receive (NSTR) mobile access point (AP) multi-link devices (MLDs), particularly in battery-powered mobile devices, due to issues such as discovering NSTR mobile AP MLDs, multi-link setup mechanisms, and traffic identifier-to-link mapping negotiations.

Method used

The implementation of a primary link and non-primary link (PLNPL) mode in wireless communication methods and apparatus, where frames indicate the PLNPL mode and specify primary and non-primary links, enabling efficient multi-link setup and operation by synchronizing transmission opportunities and managing link profiles.

Benefits of technology

This approach facilitates efficient multi-link setup and operation of AP MLDs, reducing network latency and increasing network capacity by ensuring synchronized transmission and profile management across multiple links.

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Abstract

The present disclosure provides a wireless communication method, which is applied to a first AP belonging to an access point (AP) multi-link device (MLD), and includes: sending a first frame to a first STA (STAtion) belonging to a non-AP MLD, the first frame indicating that the AP MLD supports a primary link and a non-primary link (PLNPL) mode, at least two links belonging to the AP MLD include a primary link and a non-primary link, and the first frame further indicating that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.
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Description

[Technical Field]

[0001] TECHNICAL FIELD The present disclosure relates to communications technologies, and more particularly to wireless communication methods and apparatus. [Background technology]

[0002] According to the related art, the operation of a Non-Simultaneous Transmit and Receive (NSTR) mobile access point (AP) multi-link device (MLD) is specified as follows. 1) An NSTR Mobile AP MLD is an AP MLD with dot11SoftAPMLDImplemented set to true and one NSTR link pair with the following restrictions: - Each AP belonging to a mobile AP MLD does not need to support all the required features of an Extremely High Throughput (EHT) AP. · It is optional to support multi-user (MU) operation for APs that belong to the Mobile AP MLD. · It is optional to support two or more spatial streams for APs that belong to a Mobile AP MLD. -Of the APs that operate in the NSTR link pair, only one AP transmits a beacon frame and a probe response frame. -Mobile AP MLD is typically found in battery-powered mobile devices. Each AP belonging to a mobile AP MLD has a different Medium Access Control (MAC) address. 2) The NSTR mobile AP MLD should designate one link of the NSTR link pair as the primary link for transmitting beacon frames and probe response frames, and the other link of the NSTR link pair as the non-primary link.

[0003] For such AP MLD multi-link setup and related operations, at least the following problems need to be solved: -Mechanism for discovering NSTR mobile AP MLD, - A mechanism for multi-link setup between the NSTR mobile AP MLD and the non-AP MLD to be associated with the AP MLD; -How does the STA (STAtion) know all the information of the other link (because the other link does not transmit beacons)? -Since transmission on a non-primary link is possible only if transmission is performed on the primary link, what about the NSTR mobile AP MLD traffic identifier (TID)-to-link mapping negotiation for transmission? Summary of the Invention

[0004] The present disclosure provides wireless communication methods and apparatus that facilitate multi-link setup and operation of AP MLDs, such as NSTR Mobile AP MLDs.

[0005] According to a first aspect of the present disclosure, there is provided a wireless communication method. The wireless communication method is applied to a first AP belonging to an access point (AP) multi-link device (MLD), and the wireless communication method includes transmitting a first frame to a first station (STA) belonging to a non-AP MLD. The first frame indicates that the AP MLD supports a primary link and non-primary link (PLNPL) mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0006] According to a second aspect of the present disclosure, there is provided a wireless communication method. The wireless communication method is applied to a first STA belonging to a non-AP MLD, and includes receiving a first frame from a first AP belonging to an AP MLD. The first frame indicates that the AP MLD supports a PLNPL mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0007] According to a third aspect of the present disclosure, there is provided a wireless communication device. The wireless communication device is applied to a first AP belonging to an AP MLD. The wireless communication device includes a communication unit configured to transmit a first frame to a first STA belonging to a non-AP MLD. The first frame indicates that the AP MLD supports a PLNPL mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0008] According to a fourth aspect of the present disclosure, there is provided a wireless communication device. The wireless communication device is applied to a first STA belonging to a non-AP MLD. The wireless communication device includes a communication unit configured to receive a first frame from a first AP belonging to the AP MLD. The first frame indicates that the AP MLD supports a PLNPL mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0009] According to a fifth aspect of the present disclosure, there is provided an AP device, comprising a memory and a processor, wherein a computer program is stored in the memory, and the processor is configured to call and execute the computer program to cause the AP device to perform the method of the first aspect.

[0010] According to a sixth aspect of the present disclosure, there is provided an STA device, comprising: a memory and a processor, wherein the memory stores a computer program, and the processor is configured to call and execute the computer program to cause the STA device to perform the method of the second aspect.

[0011] According to a seventh aspect of the present disclosure, there is provided a chip including a processor configured to call up and execute a computer program from a memory, thereby causing an apparatus including the chip to perform the method of the first aspect or the method of the second aspect.

[0012] According to an eighth aspect of the present disclosure, there is provided a computer-readable storage medium having stored thereon a computer program that, when executed by a computer, causes the computer to perform the method of the first aspect or the method of the second aspect.

[0013] According to a ninth aspect of the present disclosure, there is provided a computer program product comprising computer program instructions which, when executed by a computer, cause the computer to perform the method of the first aspect or the method of the second aspect.

[0014] According to a tenth aspect of the present disclosure, there is provided a computer program which, when executed by a computer, causes the computer to perform the method of the first aspect or the method of the second aspect.

[0015] The embodiments of the present disclosure can efficiently realize multi-link setup and operation of AP MLD in PLNPL mode. [Brief explanation of the drawings]

[0016] The above and other objects, features and advantages will become more apparent from the following description of the embodiments with reference to the drawings. [Figure 1] FIG. 1 is a diagram illustrating a communication system 100 to which the present disclosure can be applied. [Figure 2] FIG. 2 is a diagram illustrating a communication system 200 to which the present disclosure can be applied. [Figure 3] FIG. 3 is a diagram illustrating a format of a Basic Multi-Link element according to an embodiment of the present disclosure. [Figure 4] FIG. 4 is a flowchart illustrating a wireless communication method 400 according to an embodiment of the present disclosure. [Figure 5] FIG. 5 is a diagram illustrating the addition of a PLNPL Capabilities subfield to the Common Info field of the Basic Multilink element of FIG. 3 according to an embodiment of the present disclosure. [Figure 6] FIG. 6 is a diagram illustrating an example format of a PLNPL capabilities subfield according to an embodiment of the present disclosure. [Figure 7] FIG. 7 is a diagram illustrating adding a PLNPL Info Present subfield in the STA control field to the Link Info field of the basic multilink element of FIG. 3 according to an embodiment of the present disclosure. [Figure 8] FIG. 8 is a diagram illustrating adding a PLNPL Info subfield to the STA Info field in the Link Info field of the basic multilink element of FIG. 3 according to an embodiment of the present disclosure. [Figure 9]FIG. 9 is a diagram illustrating a first format of the PLNPL Info subfield (PLNPL Info subfield format 1) according to an embodiment of the present disclosure. [Figure 10] FIG. 10 is a diagram illustrating a second format of the PLNPL Info subfield (PLNPL Info subfield format 2) according to an embodiment of the present disclosure. [Figure 11] FIG. 11 is a diagram illustrating a third format of the PLNPL Info subfield (PLNPL Info subfield format 3) according to an embodiment of the present disclosure. [Figure 12] FIG. 12 is a diagram illustrating adding a NSTR Mobile AP MLD Operation Support subfield to the MLD Capability subfield in the Common Info field of the Basic Multilink element of FIG. 3 according to an embodiment of the present disclosure. [Figure 13] FIG. 13 is a flowchart illustrating multi-link setup between an NSTR mobile AP MLD and a non-AP MLD according to an embodiment of the present disclosure. [Figure 14] FIG. 14 illustrates a TID-TO-Link mapping negotiation procedure of a wireless communication method 400 according to an embodiment of the present disclosure. [Figure 15] FIG. 15 illustrates another TID-TO-Link mapping negotiation procedure of a wireless communication method 400 according to an embodiment of the present disclosure. [Figure 16] FIG. 16 illustrates two exemplary TID-TO-Link mapping negotiation procedures for NSTR mobile AP MLD according to an embodiment of the present disclosure. [Figure 17] FIG. 17 is a flowchart illustrating a wireless communication method 1700 according to an embodiment of the present disclosure. [Figure 18] FIG. 18 illustrates a TID-TO-Link mapping negotiation procedure of a wireless communication method 400 according to an embodiment of the present disclosure. [Figure 19] FIG. 19 illustrates another TID-TO-Link mapping negotiation procedure of a wireless communication method 400 according to an embodiment of the present disclosure. [Figure 20] FIG. 20 is a block diagram of a wireless communication device 2000 according to an embodiment of the present disclosure. [Figure 21] FIG. 21 is a block diagram of a wireless communication device 2100 according to an embodiment of the present disclosure. [Figure 22] FIG. 22 is a block diagram of a communication device 2200 according to an embodiment of the present disclosure. [Figure 23] FIG. 23 is a block diagram of an apparatus 2300 according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION

[0017] The present disclosure will be described below with reference to the embodiments shown in the accompanying drawings. However, it should be understood that these descriptions are provided for illustrative purposes only and do not limit the present disclosure. Furthermore, in the following, descriptions of known structures and techniques will be omitted so as not to unnecessarily obscure the concepts of the present disclosure.

[0018] Various embodiments of the present disclosure may be applied to wireless local area network (WLAN) standards, such as the IEEE 802.11 standard, including the IEEE 802.11ax standard and the IEEE 802.11be standard, and / or any other suitable wireless communication standard, such as worldwide interoperability for microwave access (WiMAX), Bluetooth, and / or the ZigBee standard, and / or any other protocol now known or developed in the future. A WLAN may include multiple Basic Service Sets (BSSs), and network nodes within a BSS are STAs. STAs include access point STAs (AP STAs) and non-AP STAs, and each BSS may include one AP STA and multiple non-AP STAs associated with the AP. In another version, STAs include STAs and peer STAs that communicate with the STAs. In this case, the peer STAs may be AP STAs or non-AP STAs.

[0019] An 802.11 communication system allows communication between AP STAs and non-AP STAs, and also allows communication between non-AP STAs.

[0020] AP STA (also referred to as AP for simplicity) is also called wireless access point, hotspot, etc. AP is an access point for mobile users to access wired networks. It is mainly deployed at home, in a building, or on a campus, and usually has a coverage radius of tens to hundreds of meters. Of course, AP can be optionally deployed outdoors. AP is equivalent to a bridge connecting wired and wireless networks. The main function of AP is to connect wireless network clients together and connect wireless networks to Ethernet. AP device can be a terminal device (such as a mobile phone) or a network device (such as a router) equipped with a wireless fidelity (Wi-Fi) chip.

[0021] A non-AP STA (also referred to as an STA for simplicity) can be a mobile phone, a tablet computer, a computer with wireless transceiver functionality, a virtual reality (VR) device, an augmented reality (AR) device, a wireless device in industrial control, a set-top box (STB), a wireless device in autonomous driving, an in-vehicle communication device, a wireless device in telemedicine, a wireless device in a smart grid, a wireless device in road safety, a wireless device in a smart city, a wireless device in a smart home, etc.

[0022] 1 is a diagram illustrating a communication system 100 to which the present disclosure can be applied. As shown in the figure, the communication system 100 includes one AP and two STAs that access a network through the AP. It should be understood that the communication system 100 may include a different number of APs and STAs.

[0023] It should be noted that a device having a communication function in a network / system according to an embodiment of the present disclosure may also be referred to as a communication device. For example, the communication system 100 shown in FIG. 1 may include an AP 110 and a STA 120 having a communication function, and the AP 110 and the STA 120 may be the specific devices described above. The communication device may further include other devices in the communication system 100, such as, but not limited to, a network controller, a network gateway, and other network entities in the present disclosure.

[0024] The role of a single STA may not be absolute. For example, if a STA is a mobile phone connected to a router, it can function as a non-AP STA. However, if the mobile phone provides a hotspot for other mobile phones, it actually functions as an AP.

[0025] The AP and non-AP STAs can be devices applied to IOV (Internet of Vehicles), IoT nodes in IoT (Internet of Things), sensors, smart cameras in smart homes, smart remote controls, smart water meters or power meters, or sensors in smart cities.

[0026] Embodiments of the present disclosure may be applied to wireless communication chips, application specific integrated circuits (ASICs), systems-on-chips (SOCs), and the like.

[0027] As used herein, downlink transmission refers to transmission from an AP device to a STA device, and uplink transmission refers to transmission in the opposite direction.

[0028] As used herein, terms such as "one embodiment," "embodiment," "exemplary embodiment," and the like indicate that the described embodiment may include a particular feature, structure, or characteristic, but each embodiment does not necessarily include the particular feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Furthermore, when a particular feature, structure, or characteristic is described in connection with an embodiment, it is within the knowledge of one skilled in the art to associate such feature, structure, or characteristic with other embodiments, whether or not explicitly described.

[0029] Although terms such as "first" and "second" may be used herein to describe various elements, it should be understood that these elements are not limited by these terms. These terms are merely used to distinguish one element from another. For example, a first element could be termed a second element, and similarly, a second element could be termed a first element, without departing from the scope of the example embodiments. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed terms.

[0030] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit example embodiments. As used herein, the singular forms "a," "an," and "the" are intended to include the plural forms unless the context clearly dictates otherwise. As used herein, the terms "including," "having," and / or "comprising" specify the presence of stated features, elements, and / or components, etc., but do not exclude the presence or addition of one or more other features, elements, components, and / or combinations thereof.

[0031] In the following description and claims, unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs.

[0032] Multi-Link Aggregation (MLA) technology was introduced to reduce network latency and increase network capacity at the same time. In a system that supports MLA, some services can be transmitted over at least two links. A device that supports MLA is called a Multi-Link Device (MLD).

[0033] The MLD devices can include AP MLDs and non-AP MLDs, where the non-AP MLDs are also called STA MLDs.

[0034] In an embodiment of the present disclosure, an AP MLD includes multiple APs (or multiple APs belong to an AP MLD), a non-AP MLD includes multiple STAs (or multiple STAs belong to a non-AP MLD), and multiple links can be formed between APs in the AP MLD and STAs in the non-AP MLD. Data communication can be realized via the links between the APs in the AP MLD and corresponding STAs in the non-AP MLD.

[0035] 2 is a diagram illustrating a communication system 200 that can be applied to the present disclosure. As shown in FIG. 2, the AP MLD 210 can include AP1, AP2, ..., APn, and the non-AP MLD 220 can include STA1, STA2, ..., STAn, where n is an integer greater than 1. Link 1 is formed between AP1 and STA1, and link 2 is formed between AP2 and STA2, and the following can be inferred. Data communication can be realized between AP1 and STA1 via link 1, and data communication can be realized between AP2 and STA2 via link 2, and the following can be inferred.

[0036] 3 is a diagram illustrating the format of a basic multilink element according to an embodiment of the present disclosure. The basic multilink element is used to carry information about the MLD and its associated STAs during multilink discovery and multilink setup.

[0037] The advertisement of multilink information in the multilink element is IEEE P802.11be TM / D1.2 specifies the following: -APs belonging to an AP MLD should follow the rules defined in 35.3.4.4 (Multilink Element Usage Rules in the Discovery Context) and include basic multilink elements in beacon frames transmitted by the AP or probe response frames transmitted by the AP, and the probe response frames are not ML probe responses. -APs belonging to an AP MLD should follow the rules in 35.3.4.2 (Use of ML Probe Requests and Responses) and include a basic multilink element in the probe response frame transmitted by the AP, and the probe response frame is an ML probe response. Unless the conditions in 35.3.10 (Multilink Normal Procedures) are met, an AP participating in an AP MLD shall include only the Common Info field of the basic multilink element defined in 9.4.2.295b (Multilink Elements) in a beacon frame or probe response frame that is not an ML probe response. The Common Info field of the basic multilink element carried in a beacon frame or probe response frame shall be: - It should contain the MLD MAC address subfield of the AP MLD to which the AP belongs. - The Link ID Info subfield of the AP should be included by setting the Link ID Info Present subfield of the Multilink Control field of the Basic Multilink Element to 1. - The BSS Parameters Change Count should be set to include the BSS parameters change count subfield of the AP.

[0038] AP MLD discovery is based on IEEE P802.11be TM / D1.2 specifies the following: A -ML probe request is a probe request frame transmitted outside the context of active scanning used to discover APs. The Address 1 field is set to the broadcast address and the Address 3 field is set to the BSSID of the AP, or the Address 1 field is set to the BSSID of the AP's BSS. - The MLD ID subfield (if present) is set to the MLD ID that identifies the target AP MLD to which the requested AP belongs. - Contains the probe solicitation multilink element defined in 9.4.2.295b.3 (probe solicitation multilink element). -ML probe response is the following probe response frame: - Transmitted in response to receiving an ML probe request. - Includes a basic multilink element that can carry a complete or partial per-STA profile for each of the requested APs in the target AP MLD based on a soliciting request.

[0039] Multi-link (re)setup is supported by IEEE P802.11be TM / D1.2 specifies the following: For AP MLD and non-AP MLD performing multilink (re)setup, the non-AP MLD and AP MLD should exchange (Re)Association Request / Response frames and follow the MLD (re)association procedure described in 11.3 (STA Authentication and Association). If both frames carry basic multilink elements, the (re)association request / response frame exchange resulting in a successful association is for multilink setup; otherwise, the association is not for multilink setup. In the (re)association solicitation frame, the non-AP MLD indicates the link(s) for which (re)setup is requested and the capabilities and operational parameters of the requested link(s) as described in 35.3.5.4 (Use and rules of basic multilink elements in the context of multilink (re)setup). The non-AP MLD can request to (re)setup links with a subset of APs that belong to the AP MLD. Note - The links for which re-setup is requested, and the capabilities and operational parameters of each link for which re-setup is requested, are independent of the existing links set up with the associated AP MLD, and the capabilities and operational parameters of each link set up with the associated AP MLD. In the (re)association response frame, the AP MLD indicates the links on which (re)setup is accepted and the capabilities and operating parameters of the accepted links as described in 35.3.5.4 (Use and rules of basic multilink elements in the context of multilink (re)setup). The AP MLD may not accept all links for which (re)setup is requested. The (re)association response frame should be sent to non-AP STAs that belong to the non-AP MLD that sent the (re)association request frame.

[0040] In view of the above, this disclosure defines a primary link and non-primary link (PLNPL) mode, which is used to solve problems that exist in current multi-link setup and operation of AP MLDs, such as NSTR mobile AP MLD.

[0041] Specifically, for convenience of explanation, taking the scenario shown in FIG. 2 as an example, when the non-AP MLD 220 operates in PLNPL mode and the AP MLD 210 associated with the non-AP MLD 220 supports PLNPL mode, one of the following applies: (1) For at least one link pair of the non-AP MLD 220, link 1 and link 2 (which may be, for example, a Simultaneous Transmit and Receive (STR) or NSTR link pair) belonging to the link pair are successfully set up between the non-AP MLD 220 and the AP MLD 210, and during multi-link setup, link 1 is designated as the primary link and link 2 is designated as the non-primary link. (2) In a non-primary link (e.g., link 2), the link setup between STA2 belonging to the non-AP MLD 220 and AP2 is performed by exchanging management frames between STA1 belonging to the non-AP MLD 220 and AP1 belonging to the AP MLD 210 in the primary link. (3) STA2 in the non-primary link acquires complete or partial profile information of AP2 from a specific management frame transmitted by AP1 in the primary link. STA1 receives the specific management frame from AP1 and provides it to STA2. (4) STA1 and STA2 belonging to the non-AP MLD 220 associated with the AP MLD 210 follow the start time sync Physical layer Protocol Data Unit (PPDU) medium access procedure when attempting to transmit on a non-primary link with the following additional constraints: STA2 can start PPDU transmission to AP2 on the non-primary link only if STA1 on the primary link starts PPDU as a transmission opportunity (TXOP) holder at the same start time.

[0042] Similarly, for ease of explanation, taking the scenario shown in FIG. 2 as an example, if the AP MLD 210 operates in PLNPL mode and the non-AP MLD 220 associated with the AP MLD 210 supports PLNPL mode, the following applies. (1) For at least one link pair of the AP MLD 210, link 1 and link 2 belonging to the link pair are successfully set up between the AP MLD 210 and the non-AP MLD 220, and during the multi-link setup, link 1 is designated as the primary link and link 2 is designated as the non-primary link. (2) The link setup between STA2 and AP2 in the non-primary link is performed by exchanging management frames between STA1 and AP1 in the primary link. (3) Only AP1 transmits beacon frames and probe response frames, and AP2 does not transmit beacon frames or probe response frames. (4) AP2's complete or partial profile information is carried in a specific management frame, which is transmitted by AP1 on the primary link. STA1 receives the specific management frame from AP1 and provides it to STA2. (5) APs (AP1 and AP2) belonging to AP MLD 210 follow the start time synchronized PPDU medium access procedure when attempting to transmit on a non-primary link with the following additional constraints: AP2 starts PPDU transmission to STA2 on the non-primary link only if AP1 starts a PPDU as the TXOP holder with the same start time.

[0043] 4 is a flowchart illustrating a wireless communication method 400 according to an embodiment of the present disclosure. The wireless communication method 400 may be performed in a first AP belonging to an AP MLD that supports the PLNPL mode. For example, the wireless communication method 400 may be applied in the scenario illustrated in FIG. 2. The first AP may be AP1, and the AP MLD may be AP MLD 210.

[0044] In block 410, the first AP transmits a first frame to a first STA belonging to a non-AP MLD, the first frame indicating that the AP MLD supports the PLNPL mode, that at least two links belonging to the AP MLD include a primary link and a non-primary link, and the first frame further indicating that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0045] In one embodiment, the first frame is a beacon frame or a probe response frame, and in PLNPL mode, only the first AP transmits the beacon frame or the probe response frame, and the second AP belonging to the AP MLD does not transmit any beacon frame or probe response frame.

[0046] In one embodiment, in PLNPL mode, the first frame carries a complete or partial profile of the second AP, for example, the complete or partial profile of the second STA can be carried in the basic multilink element carried in the first frame.

[0047] In one embodiment, in the PLNPL mode, a second AP (e.g., AP2 shown in FIG. 2) belonging to an AP MLD starts PPDU transmission to a second STA (e.g., STA2 shown in FIG. 2) belonging to a non-AP MLD in a non-primary link only if the first AP in the primary link starts PPDU transmission as a TXOP holder at the same start time.

[0048] In one embodiment, the first frame may include a PLNPL Capability subfield indicating capabilities for PLNPL mode operation (also referred to as PLNPL operation). The first PLNPL Capability subfield includes several subfields used to signal capabilities for PLNPL operation. For example, as shown in FIG. 5, the first PLNPL Capability subfield may be included in the Common Info field of the basic multilink element carried in the first frame. FIG. 5 is a diagram illustrating adding a PLNPL Capability subfield to the Common Info field of the basic multilink element of FIG. 3 according to an embodiment of the present disclosure.

[0049] In one embodiment, the first PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; A power save mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP duration offset subfield indicating the maximum allowed offset between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It may include at least one of:

[0050] 6 is a diagram illustrating an example format of a PLNPL Capabilities subfield according to an embodiment of the present disclosure. As shown in the figure, the PLNPL Capabilities subfield includes a PLNPL Support subfield, a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, a TXOP Duration Offset subfield, and a Power Save Mode subfield.

[0051] The PLNPL Support subfield indicates whether the MLD (i.e., AP MLD or non-AP MLD) supports PLNPL operations. If the MLD supports PLNPL operations, the PLNPL Support subfield is set to 1. Otherwise, the PLNPL Support subfield is set to 0.

[0052] An example encoding of the TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield is defined in Table 1 (TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK).

[0053] [Table 1] JPEG0007792520000002.jpg107159

[0054] For medium access of a start time synchronized PPDU of an AP belonging to an AP MLD (e.g., NSTR Mobile AP MLD), the TXOP Duration Offset subfield may indicate the maximum allowed offset between the end of the TXOP acquired by the second AP in the non-primary link and the end of the TXOP acquired by the first AP in the primary link.

[0055] The power save mode subfield indicates whether the power save mode of the first AP and / or the second AP is supported in the PLNPL mode. Table 2 shows an example encoding of the power save mode subfield.

[0056] [Table 2]

[0057] In one embodiment, the first frame may include link identifier information for the primary link and link identifier information for the non-primary link.

[0058] For example, the first frame may include a PLNPL Info subfield for indicating link identifier information of the primary link and link identifier information of the non-primary link, and a PLNPL Info Present subfield indicates the presence of the PLNPL Info subfield.

[0059] In one embodiment, the first frame may further indicate, for example by a PLNPL Info subfield, at least one of supporting uplink (UL) MU operation of the first AP and supporting downlink (DL) MU operation of the first AP.

[0060] The PLNPL Info Present subfield may be included in the STA control field in the Link Info field of the basic multilink element, as shown in Figure 7. Figure 7 is a diagram illustrating adding a PLNPL Info Present subfield to the STA control field in the Link Info field of the basic multilink element of Figure 3 according to an embodiment of the present disclosure.

[0061] As shown in Figure 8, the PLNPL Info subfield can be included in the STA Info field in the Link Info field of the basic multilink element of Figure 3. Figure 8 is a diagram illustrating adding a PLNPL Info subfield to the STA Info field in the Link Info field of the basic multilink element of Figure 3 according to an embodiment of the present disclosure.

[0062] The PLNPL Info Present subfield indicates the presence of the PLNPL Info subfield in the STA Info field. If the PLNPL Info subfield is present in the STA Info field, the PLNPL Info Present subfield is set to 1; otherwise, the PLNPL Info Present subfield is set to 0. If the link identified by the Link ID subfield of the STA Control field is neither a primary link nor a non-primary link, the PLNPL Info Present subfield is set to 0.

[0063] The PLNPL Info subfield can indicate information about non-primary links and / or primary links, and operations supported on the links in PLNPL mode. For example, the PLNPL Info subfield can have three formats, as shown in Figures 9 to 11, respectively.

[0064] FIG. 9 is a diagram illustrating a first format of the PLNPL Info subfield (PLNPL Info subfield format 1) according to an embodiment of the present disclosure.

[0065] As shown in FIG. 9, the PLNPL Info subfield may include a Primary Link Indicator, a Primary Link Indication Bitmap, a Non-Primary Link Indication Bitmap, a DL MU Operation Support subfield, a UL MU Operation Support subfield, an Rx NSS subfield, a Tx NSS subfield, and a Reserved subfield.

[0066] The Primary Link Indicator subfield indicates whether the link identified by the Link ID subfield of the STA Control field is a primary link or a non-primary link of one or more link pairs. If the link identified by the Link ID subfield is a primary link of one or more link pairs, the Primary Link Indicator subfield is set to 1; otherwise, if the link identified by the Link ID subfield is a non-primary link of one or more link pairs, the Primary Link Indicator subfield is set to 0.

[0067] If the Primary Link Indicator subfield is equal to 1, the PLNPL Info subfield includes the Non-Primary Link Indication Bitmap subfield and does not include the Primary Link Indication Bitmap subfield. If the Primary Link Indicator subfield is equal to 0, the PLNPL Info subfield includes the Primary Link Indication Bitmap subfield and does not include the Non-Primary Link Indication Bitmap subfield.

[0068] JPEG0007792520000004.jpg58159

[0069] JPEG0007792520000005.jpg65159

[0070] FIG. 10 is a diagram illustrating a second format of the PLNPL Info subfield (PLNPL Info subfield format 2) according to an embodiment of the present disclosure.

[0071] As shown in FIG. 10, the PLNPL Info subfield may include a primary link indicator, a peer link ID, a DL MU operation support subfield, a UL MU operation support subfield, an Rx NSS subfield, a Tx NSS subfield, and a reserved subfield.

[0072] The Primary Link Indicator subfield indicates whether the link identified by the Link ID subfield of the STA Control field is the primary link or a non-primary link of a link pair. If the link identified by the Link ID subfield of the STA Control field is the primary link of a link pair, the Primary Link Indicator subfield is set to 1; otherwise, if the link identified by the Link ID subfield of the STA Control field is a non-primary link of a link pair, the Primary Link Indicator subfield is set to 0.

[0073] If the Primary Link Indicator subfield is equal to 1, the PLNPL Info subfield includes the Non-Primary Link ID subfield and does not include the Primary Link ID subfield. If the Primary Link Indicator subfield is equal to 0, the PLNPL Info subfield includes the Primary Link ID subfield and does not include the Non-Primary Link ID subfield.

[0074] If the Primary Link Indicator subfield indicates that the link identified by the Link ID subfield of the STA Control field is the primary link, the Peer Link ID subfield indicates the link identifier of the non-primary link of the link pair, the link pair including the link identified by the Link ID subfield of the STA Control field and the link identified by the Peer Link ID subfield.

[0075] The remaining subfields of PLNPL Info Subfield Format 2 are the same as the subfield formats of PLNPL Info Subfield Format 1.

[0076] FIG. 11 is a diagram illustrating a third format of the PLNPL Info subfield (PLNPL Info subfield format 3) according to an embodiment of the present disclosure.

[0077] As shown in FIG. 11, the PLNPL Info subfield may include a primary link indicator, a primary link ID, a non-primary link ID, a DL MU operation support subfield, a UL MU operation support subfield, an Rx NSS subfield, a Tx NSS subfield, and a reserved subfield.

[0078] The only difference between PLNPL Info subfield format 3 and PLNPL Info subfield format 2 is the primary link ID and non-primary link ID, and descriptions of the same subfields will be omitted.

[0079] The Primary Link ID subfield contains the link identifier of the primary link of the link pair, the link pair including the link identified by the Link ID subfield of the STA Control field and the link identified by the Primary Link ID subfield.

[0080] The Non-Primary Link ID subfield contains the link identifier of the non-primary link of the link pair, the link pair including the link identified by the Link ID subfield of the STA Control field and the link identified by the Non-Primary Link ID subfield.

[0081] 4, as another embodiment, the wireless communication method 400 may further include steps indicated by blocks 420 and 430. Specifically, in block 420, the first AP receives a second frame from a first STA belonging to the non-AP MLD, and in block 430, the first AP transmits a third frame to the first STA. For example, the second frame may be an association request frame, and the third frame may be an association response frame.

[0082] As an example, the second frame indicates that the non-AP MLD supports the PLNPL mode and is used to request that a first link be set up as a primary link between the first AP and the first STA, and that a second link be set up as a non-primary link between the second AP belonging to the AP MLD and the second STA belonging to the non-AP MLD. The third frame indicates successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD. In this example, the second frame can carry a complete or partial profile of the second STA.

[0083] In one embodiment, if the non-AP MLD supports the PLNPL mode, the second frame STA For example, as shown in FIG. 3, the complete or partial profile of the second STA can be carried in the basic multilink element carried in the second frame.

[0084] In one embodiment, at least one of the second frame and the third frame may include link identifier information of the primary link and link identifier information of the non-primary link. For example, the second frame and / or the third frame may include the PLNPL Info subfield shown in Figures 8 to 11 and the PLNPL Info Present subfield shown in Figure 7.

[0085] In one embodiment, the third frame carries the complete profiles of the first and second APs. For example, as shown in Figure 3, the complete or partial profile of the second STA is carried in the basic multilink element carried in the third frame.

[0086] As another example, the second frame is used to indicate that the non-AP MLD supports the PLNPL mode and to request that a first link be set up as a primary link between the first AP and the first STA, and a second link be set up as a non-primary link between the second AP belonging to the AP MLD and the second STA belonging to the non-AP MLD. The third frame indicates the success of the setup of the first link and / or the second link between the non-AP MLD and the AP MLD.

[0087] In one embodiment, the second frame further indicates at least one of supporting UL MU operation of the first STA and supporting DL MU operation of the first STA. For example, a PLNPL Info subfield included in the Link Info field of the Basic Multilink element carried in the second frame may also indicate such information.

[0088] In one embodiment, the third frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP. For example, a PLNPL Info subfield included in the Link Info field of the basic multilink element carried in the third frame may also indicate such information.

[0089] In one embodiment, the second frame may include a PLNPL Capability subfield indicating capabilities for PLNPL operations, which is included in the Common Info field of the Basic Multilink element, as shown in Figure 5.

[0090] In one embodiment, the PLNPL capabilities subfield is: A PLNPL Support subfield indicating support for PLNPL mode, e.g., as shown in FIG. 6; A Power Save Mode subfield indicating whether the first AP and / or the second AP support a power save mode, e.g., as defined in Table 2; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, e.g., as defined in Table 1, indicating whether the duration of the TXOP acquired by the second STA is only allowed to be less than or equal to the duration of the TXOP acquired by the first STA; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second STA and the end of the TXOP acquired by the first STA; It includes at least one of the following:

[0091] In one embodiment, the third frame may include a PLNPL Capability subfield that indicates capabilities for PLNPL operations. As shown in Figure 5, the PLNPL Capability subfield is included in the Common Info field of the Basic Multilink element.

[0092] In one embodiment, the PLNPL capabilities subfield is: A PLNPL Support subfield indicating support for PLNPL mode, e.g., as shown in FIG. 6; A Power Save Mode subfield indicating whether the first AP and / or the second AP support a power save mode, e.g., as defined in Table 2; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, e.g., as defined in Table 1, indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It may include at least one of:

[0093] In one embodiment, the AP MLD may be an NSTR mobile AP MLD, and the first frame may further indicate that an NSTR mobile AP MLD operation is supported.

[0094] For example, the first frame may include an NSTR Mobile AP MLD Operation Support subfield to indicate support for NSTR Mobile AP MLD operation. As shown in FIG. 12, this subfield may be included in the Common Info field of the Basic Multilink Element. FIG. 12 illustrates adding an NSTR Mobile AP MLD Operation Support subfield to the MLD Capabilities subfield in the Common Info field of the Basic Multilink Element of FIG. 3 according to an embodiment of the present disclosure. The NSTR Mobile AP MLD Operation Support subfield may be set to 1, thereby indicating that the AP MLD supports operating as an NSTR Mobile AP MLD. Otherwise, the NSTR Mobile AP MLD Operation Support subfield is set to 0.

[0095] In another embodiment, the AP MLD can be a non-AP mobile AP MLD, and the second frame further indicates that a non-AP MLD is operable with the non-AP mobile AP MLD.

[0096] For example, as shown in FIG. 12, the second frame may further include an NSTR mobile AP MLD operation support subfield to indicate that the non-AP MLD is capable of operating with the NSTR mobile AP MLD. The NSTR mobile AP MLD operation support subfield may be set to 1, thereby indicating that the non-AP MLD is capable of operating with the NSTR mobile AP MLD associated with the non-AP MLD, including exchanging frames with the NSTR mobile AP MLD on the primary link and the non-primary link. Otherwise, the NSTR mobile AP MLD operation support subfield is set to 0.

[0097] 13 is a flowchart illustrating a multi-link setup between an NSTR mobile AP MLD and a non-AP MLD according to an embodiment of the present disclosure. In this embodiment, AP1 and AP2 belong to the NSTR mobile AP MLD, and STA1 and STA2 belong to the non-AP MLD. It should be understood that different numbers of APs and different numbers of STAs are also applicable.

[0098] At S1310, AP1 notifies STA1 of complete or partial link information for each link belonging to the NSTR Mobile AP MLD by transmitting a beacon frame carrying a basic multilink element. The basic multilink element has an NSTR Mobile AP MLD Operation Support subfield equal to 1 and a PLNPL Info subfield in the STA Info field of each STA profile corresponding to each link. Optionally, AP1 can also transmit a probe response frame carrying the basic multilink element and the PLNPL Info subfield to STA1.

[0099] At S1320, the non-AP MLD initiates a multilink setup procedure, and STA1 transmits an association request frame to AP1. The association request frame includes complete profiles of STA1 and STA2 and a basic multilink element. The profiles are used to request the setup of two links (one link between AP1 and STA1 is designated as the primary link, and the other link between AP2 and non-AP STA2 is designated as the non-primary link), and the basic multilink element carries an NSTR Mobile AP MLD Operation Supported subfield equal to 1 and / or a PLNPL Info subfield in the STA Info field of each STA profile corresponding to each requested link.

[0100] At S1330, AP1 sends an association response frame to STA1 to indicate the success of the multilink setup. The association response frame includes the complete profiles of AP1 and AP2 and a basic multilink element indicating the MLD MAC address of the AP MLD. After the multilink setup between the non-AP MLD and the AP MLD is successful, two links are set up (Link 1 between AP1 and non-AP STA1 is designated as the primary link, and Link 2 between AP2 and non-AP STA2 is designated as the non-primary link).

[0101] In one embodiment, in the PLNPL mode, at least one of the second frame and the third frame further indicates that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL.

[0102] For example, during a multi-link setup procedure, an association request frame transmitted by the first STA may carry a TID-To-Link mapping element, which is used to indicate that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL. Similarly, an association response frame transmitted by the first AP may carry a TID-To-Link mapping element, which is used to indicate that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL. This is TID-To-Link mapping negotiation during a multi-link setup procedure.

[0103] In one embodiment, after successful multi-link setup, the wireless communication method 400 may further include a TID-TO-Link mapping negotiation procedure, as shown in FIG.

[0104] 14, the first AP transmits a fourth frame to the first STA in block 1410, and the first AP receives a fifth frame from the first STA in block 1420. For example, the fourth frame may be a TID-To-Link mapping request frame, and the fifth frame may be a TID-To-Link mapping response frame.

[0105] In one example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is accepted.

[0106] In another example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is denied.

[0107] In one embodiment, after successful multi-link setup, the wireless communication method 400 may further include another TID-TO-Link mapping negotiation procedure, as shown in FIG.

[0108] 15, the first AP receives a fourth frame from the first STA in block 1510, and the first AP transmits a fifth frame to the first STA in block 1520. For example, the fourth frame may be a TID-To-Link mapping request frame, and the fifth frame may be a TID-To-Link mapping response frame.

[0109] In one example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is accepted.

[0110] In another example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is denied.

[0111] According to the present disclosure, when operating in PLNPL mode, the non-AP MLD associated with the NSTR Mobile AP MLD and the NSTR Mobile AP MLD should ensure that TIDs mapped to non-primary links in the DL and / or UL are also mapped to primary links in the DL or UL.

[0112] 16 illustrates two exemplary TID-TO-Link mapping negotiation procedures for the NSTR mobile AP MLD according to an embodiment of the present disclosure. In this embodiment, two links are set up between the NSTR mobile AP MLD and the non-AP MLD, and link 1 between AP1 and non-AP STA1 is designated as the primary link, and link 2 between AP2 and non-AP STA2 is designated as the non-primary link. This procedure is the same as that shown in FIG. 13, and a detailed description thereof will be omitted here.

[0113] As shown in Figure 16, two TID-to-Link mapping negotiation procedures occur: one during multilink setup and the other after successful multilink setup. For ease of explanation, it is assumed that after multilink setup, all TIDs are mapped to Link 1 and Link 2 in DL and UL.

[0114] In multi-link (re)setup, in the TID-To-Link mapping element carried by the association response frame, AP1 in the primary link should indicate that the TIDs mapped to non-primary links in DL and / or UL are also mapped to the primary links in DL and / or UL.

[0115] Similarly, in multi-link (re)setup, in the TID-To-Link mapping element carried by the association request frame, STA1 should indicate that the TIDs mapped to non-primary links in DL and / or UL are also mapped to primary links in DL and / or UL.

[0116] In other words, the TID-to-Link mapping negotiation procedure in multi-link setup is performed by exchanging association request frames and association response frames between the non-AP MLD and the NSTR mobile AP MLD.

[0117] After successful multilink (re)setup, in the TID-To-Link mapping negotiation procedure, a requesting MLD (requesting MLD), which is one of a non-AP MLD and an NSTR mobile AP MLD, can indicate in a TID-To-Link mapping element carried by a TID-To-Link mapping request frame that a TID is requested to be mapped to a non-primary link in the DL and / or UL, and the TID is already mapped to a primary link in the DL and / or UL, or is requested to be mapped to a primary link in the DL and / or UL. In other words, the requesting MLD sends a TID-To-Link mapping request frame to the requested MLD (requested MLD) to request that one or more TIDs be mapped to a non-primary link in the DL and / or UL, and the one or more TIDs are already mapped to a primary link in the DL and / or UL, or are requested to be mapped to a primary link in the DL and / or UL. In this case, the other of the non-AP MLD and the NSTR Mobile AP MLD, the requested MLD, can send a TID-To-Link Mapping Response frame to the requesting MLD, thereby accepting the request.

[0118] Similarly, in the TID-To-Link mapping negotiation procedure, after successful multilink (re)setup, the requesting MLD may send a TID-To-Link Mapping Request frame to the requested MLD, thereby requesting that one or more TIDs be mapped to non-primary links in the DL and / or UL, and the one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL. In this case, the requested MLD may send a TID-To-Link Mapping Response frame to the requesting MLD, thereby denying the request.

[0119] For example, as shown in FIG. 16, the non-AP MLD indicates in the TID-To-Link mapping element carried by the TID-To-Link mapping request frame that it requests that TIDs other than TID1 and TID2 (e.g., any two TIDs that are not mapped to the primary link or are not requested to be mapped to the primary link) be mapped to link 2 in the DL and UL, and then the NSTR AP MLD transmits a TID-To-Link mapping response frame to accept the TID-To-Link mapping request.

[0120] 17 is a flowchart illustrating a wireless communication method 1700 according to an embodiment of the present disclosure. The wireless communication method 1700 may be performed by a first STA belonging to a non-AP MLD. For example, the wireless communication method 1700 may be applied in the scenario illustrated in FIG. 2. The first STA may be STA1, and the non-AP MLD may be non-AP MLD 220.

[0121] In block 1710, a first STA receives a first frame from a first AP belonging to an AP MLD. The first frame indicates that the AP MLD supports a PLNPL mode, that at least two links belonging to the AP MLD include a primary link and a non-primary link, and further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0122] In one embodiment, the first frame is a beacon frame or a probe response frame, and in PLNPL mode, only the first AP transmits the beacon frame or the probe response frame, and the second AP belonging to the AP MLD does not transmit any beacon frame or probe response frame.

[0123] In one embodiment, in PLNPL mode, the first frame carries a complete or partial profile of the second AP, for example, the complete or partial profile of the second STA can be carried in the basic multilink element carried in the first frame.

[0124] In one embodiment, in the PLNPL mode, a second AP (e.g., AP2 shown in FIG. 2) belonging to an AP MLD starts PPDU transmission to a second STA (e.g., STA2 shown in FIG. 2) belonging to a non-AP MLD in a non-primary link only if the first AP in the primary link starts PPDU transmission as a TXOP holder at the same start time.

[0125] In one embodiment, the first frame may include a PLNPL Capability subfield indicating capabilities for PLNPL operations, for example as shown in FIG.

[0126] In one embodiment, the PLNPL capabilities subfield is: A PLNPL Support subfield indicating support for PLNPL mode, e.g., as shown in FIG. 6; A Power Save Mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode, e.g., as defined in Table 2; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, e.g., as defined in Table 1, indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It may include at least one of:

[0127] In one embodiment, the first frame may include link identifier information of the primary link and link identifier information of the non-primary link. For example, the first frame may include the PLNPL Info subfield shown in Figures 8 to 11 and the PLNPL Info Present subfield shown in Figure 7.

[0128] In one embodiment, the first frame may further indicate, for example by a PLNPL Info subfield, at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP.

[0129] In one embodiment, the AP MLD may be an NSTR mobile AP MLD, and the first frame may further indicate support for NSTR mobile AP MLD operation. For example, the first frame may include an NSTR mobile AP MLD operation support subfield shown in FIG. 12.

[0130] In another embodiment, the AP MLD can be an NSTR mobile AP MLD, and the second frame further indicates that the non-AP MLD can operate with the NSTR mobile AP MLD. For example, the second frame can include an NSTR mobile AP MLD operation support subfield shown in FIG. 12.

[0131] 17, as another embodiment, the wireless communication method 1700 may further include steps indicated by blocks 1720 and 1730. Specifically, in block 1720, the first STA transmits a second frame to the first AP, and in block 1730, the first STA transmits a second frame to the first AP. AP For example, the second frame may be an association request frame and the third frame may be an association response frame.

[0132] As an example, the second frame indicates that the non-AP MLD supports the PLNPL mode and is used to request that a first link be set up as a primary link between the first AP and the first STA, and that a second link be set up as a non-primary link between the second AP belonging to the AP MLD and the second STA belonging to the non-AP MLD. The third frame indicates successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD. In this example, the second frame can carry a complete or partial profile of the second STA.

[0133] In one embodiment, if the non-AP MLD supports the PLNPL mode, the second frame STA For example, as shown in FIG. 3, the complete or partial profile of the second STA can be carried in the basic multilink element carried in the second frame.

[0134] In one embodiment, at least one of the second frame and the third frame may include link identifier information of the primary link and link identifier information of the non-primary link. For example, at least one of the second frame and the third frame may include the PLNPL Info subfield shown in Figures 8 to 11 and the PLNPL Info Present subfield shown in Figure 7.

[0135] In one embodiment, the third frame carries the complete profiles of the first and second APs. For example, as shown in Figure 3, the complete or partial profile of the second STA is carried in the basic multilink element carried in the third frame.

[0136] As another example, the second frame is used to indicate that the non-AP MLD supports the PLNPL mode and to request that a first link be set up as a primary link between the first AP and the first STA, and a second link be set up as a non-primary link between the second AP belonging to the AP MLD and the second STA belonging to the non-AP MLD. The third frame indicates the success of the setup of the first link and / or the second link between the non-AP MLD and the AP MLD.

[0137] In one embodiment, the second frame further indicates at least one of supporting UL MU operation of the first STA and supporting DL MU operation of the first STA. For example, a PLNPL Info subfield included in the Link Info field of the Basic Multilink element carried in the second frame may also indicate such information.

[0138] In one embodiment, the third frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP. For example, a PLNPL Info subfield included in the Link Info field of the basic multilink element carried in the third frame may also indicate such information.

[0139] In one embodiment, the second frame may include a PLNPL Capability subfield indicating capabilities for PLNPL operations, which is included in the Common Info field of the Basic Multilink element, as shown in Figure 5.

[0140] In one embodiment, the PLNPL capabilities subfield is: A PLNPL Support subfield indicating support for PLNPL mode, e.g., as shown in FIG. 6; A Power Save Mode subfield indicating whether the first AP and / or the second AP support a power save mode, e.g., as defined in Table 2; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, e.g., as defined in Table 1, indicating whether the duration of the TXOP acquired by the second STA is only allowed to be less than or equal to the duration of the TXOP acquired by the first STA; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second STA and the end of the TXOP acquired by the first STA; It includes at least one of the following:

[0141] In one embodiment, the third frame may include a PLNPL Capability subfield that indicates capabilities for PLNPL operations. As shown in Figure 5, the PLNPL Capability subfield is included in the Common Info field of the Basic Multilink element.

[0142] In one embodiment, the PLNPL capabilities subfield is: A PLNPL Support subfield indicating support for PLNPL mode, e.g., as shown in FIG. 6; A Power Save Mode subfield indicating whether the first AP and / or the second AP support a power save mode, e.g., as defined in Table 2; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield, e.g., as defined in Table 1, indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It may include at least one of:

[0143] In one embodiment, the AP MLD may be an NSTR mobile AP MLD, and the first frame may further indicate that an NSTR mobile AP MLD operation is supported.

[0144] For example, the first frame may include an NSTR Mobile AP MLD Operation Support subfield to indicate support for NSTR Mobile AP MLD operation. As shown in FIG. 12, this subfield may be included in the Common Info field of the Basic Multilink Element. FIG. 12 illustrates adding an NSTR Mobile AP MLD Operation Support subfield to the MLD Capabilities subfield in the Common Info field of the Basic Multilink Element of FIG. 3 according to an embodiment of the present disclosure. The NSTR Mobile AP MLD Operation Support subfield may be set to 1, thereby indicating that the AP MLD supports operating as an NSTR Mobile AP MLD. Otherwise, the NSTR Mobile AP MLD Operation Support subfield is set to 0.

[0145] In another embodiment, the AP MLD can be a non-AP mobile AP MLD, and the second frame further indicates that a non-AP MLD is operable with the non-AP mobile AP MLD.

[0146] For example, as shown in FIG. 12, the second frame may further include an NSTR mobile AP MLD operation support subfield to indicate that the non-AP MLD is capable of operating with the NSTR mobile AP MLD. The NSTR mobile AP MLD operation support subfield may be set to 1, thereby indicating that the non-AP MLD is capable of operating with the NSTR mobile AP MLD associated with the non-AP MLD, including exchanging frames with the NSTR mobile AP MLD on the primary link and the non-primary link. Otherwise, the NSTR mobile AP MLD operation support subfield is set to 0.

[0147] In one embodiment, in the PLNPL mode, at least one of the second frame and the third frame further indicates that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL.

[0148] In one embodiment, after successful multi-link setup, the wireless communication method 1700 may further include a TID-TO-Link mapping negotiation procedure, as shown in FIG.

[0149] 18, the first STA receives a fourth frame from the first AP in block 1810, and the first STA transmits a fifth frame to the first AP in block 1820. For example, the fourth frame may be a TID-To-Link mapping request frame, and the fifth frame may be a TID-To-Link mapping response frame.

[0150] In one example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is accepted.

[0151] In another example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is denied.

[0152] In one embodiment, after successful multi-link setup, the wireless communication method 1700 may further include another TID-TO-Link mapping negotiation procedure, as shown in FIG.

[0153] 19, the first STA transmits a fourth frame to the first AP in block 1910, and the first STA receives a fifth frame from the first AP in block 1920. For example, the fourth frame may be a TID-To-Link mapping request frame, and the fifth frame may be a TID-To-Link mapping response frame.

[0154] In one example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is accepted.

[0155] In another example, the fourth frame may include a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL, and the fifth frame indicates that the request is denied.

[0156] A wireless communication device is provided corresponding to the above-described wireless communication method 400. Fig. 20 is a block diagram of a wireless communication device 2000 according to an embodiment of the present disclosure. The wireless communication device 2000 is, for example, IEEE P802.11be TM2, the AP may be AP1, and the AP MLD may further include AP2.

[0157] 20, wireless communication device 2000 includes communication unit 2010, which is configured to transmit a first frame to a first STA belonging to a non-AP MLD. The first frame indicates that the AP MLD supports the PLNPL mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0158] In one embodiment, the AP MLD is an NSTR Mobile AP MLD, and the first frame further indicates supporting NSTR Mobile AP MLD operation.

[0159] In one embodiment, the first frame includes an NSTR mobile AP MLD operation support subfield for indicating support of NSTR mobile AP MLD operation, and the NSTR mobile AP MLD operation support subfield is included in the Common Info field of the basic multilink element carried in the first frame.

[0160] In one embodiment, the first frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0161] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield that indicates whether the duration of a transmission opportunity (TXOP) acquired by the second AP is only allowed to be less than or equal to the duration of a TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It includes at least one of the following:

[0162] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element carried in the first frame.

[0163] In one embodiment, the communication unit 2010 is further configured to receive a second frame from the first STA, where the second frame indicates that the non-AP MLD supports the PLNPL mode and is used to request that a first link be set up as a primary link between the first AP and the first STA, and a second link be set up as a non-primary link between a second AP belonging to the AP MLD and a second STA belonging to the non-AP MLD. The communication unit 2010 is further configured to send a third frame to the first STA, where the third frame indicates successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD.

[0164] In one embodiment, the second frame carries a complete or partial profile of the second STA.

[0165] In one embodiment, the complete or partial profile of the second STA is carried in a basic multilink element carried in the second frame.

[0166] In one embodiment, the third frame carries the complete profiles of the first and second APs.

[0167] In one embodiment, the complete or partial profile of the second STA is carried in a basic multilink element carried in the third frame.

[0168] In one embodiment, at least one of the second frame and the third frame includes link identifier information for the primary link and link identifier information for the non-primary link.

[0169] In one embodiment, the link identifier information of the primary link and the link identifier information of the non-primary links are indicated by a PLNPL Info subfield, which is included in the Link Info field of a basic multilink element carried in at least one of the second and third frames.

[0170] In one embodiment, the communication unit 2010 is further configured to receive a second frame from the first STA, where the second frame indicates that the non-AP MLD does not support the PLNPL mode and is used to initiate multi-link setup between the non-AP MLD and the AP MLD. The communication unit 2010 is further configured to send a third frame to the first STA, where the third frame indicates success of the setup of only the first link between the non-AP MLD and the AP MLD or failure of the multi-link setup.

[0171] In one embodiment, the AP MLD is a NSTR Mobile AP MLD, and the second frame further indicates that a non-AP MLD is operable with the NSTR Mobile AP MLD.

[0172] In one embodiment, the second frame includes an NSTR Mobile AP MLD Operation Support subfield to indicate that non-AP MLD can operate together with NSTR Mobile AP MLD, and the NSTR Mobile AP MLD Operation Support subfield is included in the Common Info field of the Basic Multilink Element carried in the second frame.

[0173] In one embodiment, the second frame further indicates at least one of supporting UL MU operation for the first STA and supporting DL MU operation for the first STA.

[0174] In one embodiment, the second frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first STA and supporting DL MU operation of the first STA, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the second frame.

[0175] In one embodiment, the third frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP.

[0176] In one embodiment, the third frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the third frame.

[0177] In one embodiment, in the PLNPL mode, at least one of the second frame and the third frame further indicates that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL.

[0178] In one embodiment, the second frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0179] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second STA is only allowed to be less than or equal to the duration of the TXOP acquired by the first STA; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second STA and the end of the TXOP acquired by the first STA; It includes at least one of the following:

[0180] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element.

[0181] In one embodiment, the third frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0182] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It includes at least one of the following:

[0183] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element carried in the third frame.

[0184] In one embodiment, the first frame is a beacon frame or a probe response frame, and in PLNPL mode, only the first AP transmits the beacon frame or the probe response frame, and the second AP belonging to the AP MLD does not transmit any beacon frame or probe response frame.

[0185] In one embodiment, in PLNPL mode, the first frame carries a complete or partial profile of a second AP that belongs to the AP MLD.

[0186] In one embodiment, the complete or partial profile of the second STA is carried in the basic multilink element carried in the first frame.

[0187] In one embodiment, in the PLNPL mode, a second AP belonging to an AP MLD starts PPDU transmission to a second STA belonging to a non-AP MLD in a non-primary link only if the first AP in the primary link starts PPDU transmission as a TXOP holder at the same start time.

[0188] In one embodiment, the first frame includes link identifier information for the primary link and link identifier information for the non-primary link.

[0189] In one embodiment, the first frame includes a PLNPL Info subfield for indicating link identifier information of the primary link and link identifier information of the non-primary links, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the first frame.

[0190] In one embodiment, the first frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP.

[0191] In one embodiment, the first frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP, and the PLNPL Info subfield is included in a STA Info field within a Link Info field of a basic multilink element carried in the first frame.

[0192] In one embodiment, the communication unit 2010 is further configured to transmit a fourth frame to the first STA, the fourth frame including a request for one or more TIDs to be mapped to a non-primary link in the DL and / or UL, where the one or more TIDs are already mapped to a primary link in the DL and / or UL or are requested to be mapped to a primary link in the DL and / or UL. The communication unit 2010 is further configured to receive a fifth frame from the first STA, the fifth frame indicating that the request has been accepted.

[0193] In one embodiment, the communication unit 2010 is further configured to transmit a fourth frame to the first STA, the fourth frame including a request for one or more TIDs to be mapped to a non-primary link in the DL and / or UL, where the one or more TIDs are not mapped to a primary link in the DL and / or UL or are not requested to be mapped to a primary link in the DL and / or UL. The communication unit 2010 is further configured to receive a fifth frame from the first STA, the fifth frame indicating that the request is denied.

[0194] In one embodiment, the communication unit 2010 is further configured to receive a fourth frame from the first STA, the fourth frame including a request for one or more TIDs to be mapped to a non-primary link in the DL and / or UL, where the one or more TIDs are already mapped to a primary link in the DL and / or UL or are requested to be mapped to a primary link in the DL and / or UL. The communication unit 2010 is further configured to send a fifth frame to the first STA, the fifth frame indicating that the request has been accepted.

[0195] In one embodiment, the communication unit 2010 is further configured to receive a fourth frame from the first STA, the fourth frame including a request for one or more TIDs to be mapped to a non-primary link in the DL and / or UL, where the one or more TIDs are not mapped to a primary link in the DL and / or UL or are not requested to be mapped to a primary link in the DL and / or UL. The communication unit 2010 is further configured to send a fifth frame to the first STA, the fifth frame indicating that the request is denied.

[0196] In one embodiment, the fourth frame is a TID-TO-Link mapping request frame, and the fifth frame is a TID-TO-Link mapping response frame.

[0197] A wireless communication device is provided corresponding to the above-described wireless communication method 1700. FIG. 21 is a block diagram of a wireless communication device 2100 according to an embodiment of the present disclosure. The wireless communication device 2100 may be, for example, a STA belonging to a non-AP MLD. Taking the scenario shown in FIG. 2 as an example, the STA may be STA 1, and the non-AP MLD further includes STA 2.

[0198] 21, the wireless communication device 2100 includes a communication unit 2110 configured to receive a first frame from a first AP belonging to an AP MLD. The first frame indicates that the AP MLD supports a PLNPL mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link. The first frame further indicates that a first link and a second link of the at least two links are the primary link and the non-primary link, respectively.

[0199] In one embodiment, the AP MLD is an NSTR Mobile AP MLD, and the first frame further indicates supporting NSTR Mobile AP MLD operation.

[0200] In one embodiment, the first frame includes an NSTR mobile AP MLD operation support subfield for indicating support of NSTR mobile AP MLD operation, and the NSTR mobile AP MLD operation support subfield is included in the Common Info field of the basic multilink element carried in the first frame.

[0201] In one embodiment, the first frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0202] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It includes at least one of the following:

[0203] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element carried in the first frame.

[0204] In one embodiment, the communication unit 2110 is further configured to send a second frame to the first AP, where the second frame is used to indicate that the non-AP MLD operates in PLNPL mode and to request that a first link be set up as a primary link between the first AP and the first STA, and a second link be set up as a non-primary link between the second AP belonging to the AP MLD and the second STA belonging to the non-AP MLD. The communication unit 2110 is further configured to receive a third frame from the first AP, where the third frame indicates successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD.

[0205] In one embodiment, the second frame carries a complete or partial profile of the second STA.

[0206] In one embodiment, the complete or partial profile of the second STA is carried in a basic multilink element carried in the second frame.

[0207] In one embodiment, the third frame carries the complete profiles of the first and second APs.

[0208] In one embodiment, the complete or partial profile of the second STA is carried in a basic multilink element carried in the third frame.

[0209] In one embodiment, at least one of the second frame and the third frame includes link identifier information for the primary link and link identifier information for the non-primary link.

[0210] In one embodiment, the link identifier information of the primary link and the link identifier information of the non-primary links are indicated by a PLNPL Info subfield, which is included in the Link Info field of a basic multilink element carried in at least one of the second and third frames.

[0211] In one embodiment, the communication unit 2110 is further configured to send a second frame to the first AP, where the second frame indicates that the non-AP MLD does not support the PLNPL mode and is used to initiate multi-link setup between the non-AP MLD and the AP MLD. The communication unit 2110 is further configured to receive a third frame from the first STA, where the third frame indicates success of the setup of only the first link between the non-AP MLD and the AP MLD or failure of the multi-link setup.

[0212] In one embodiment, the AP MLD is a NSTR Mobile AP MLD, and the second frame further indicates that a non-AP MLD is operable with the NSTR Mobile AP MLD.

[0213] In one embodiment, the second frame includes an NSTR Mobile AP MLD Operation Support subfield to indicate that non-AP MLD can operate together with NSTR Mobile AP MLD, and the NSTR Mobile AP MLD Operation Support subfield is included in the Common Info field of the Basic Multilink Element carried in the second frame.

[0214] In one embodiment, the second frame further indicates at least one of supporting UL MU operation for the first STA and supporting DL MU operation for the first STA.

[0215] In one embodiment, the second frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first STA and supporting DL MU operation of the first STA, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the second frame.

[0216] In one embodiment, the third frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP.

[0217] In one embodiment, the third frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the third frame.

[0218] In one embodiment, in the PLNPL mode, at least one of the second frame and the third frame further indicates that a TID mapped to a non-primary link in the DL and / or UL is also mapped to a primary link in the DL and / or UL.

[0219] In one embodiment, the second frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0220] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second STA is only allowed to be less than or equal to the duration of the TXOP acquired by the first STA; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second STA and the end of the TXOP acquired by the first STA; It includes at least one of the following:

[0221] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element.

[0222] In one embodiment, the third frame includes a PLNPL Capability subfield that indicates capabilities for the PLNPL mode of operation.

[0223] In one embodiment, the PLNPL capabilities subfield is: a PLNPL Support subfield indicating support for PLNPL mode; a power save mode subfield indicating whether the first AP and / or the second AP belonging to the AP MLD support a power save mode; a TXOP_DURATION_LIMITATION_FOR_NONPRIMARY_LINK subfield indicating whether the duration of the TXOP acquired by the second AP is only allowed to be less than or equal to the duration of the TXOP acquired by the first AP; and a TXOP Duration Offset subfield indicating the maximum offset allowed between the end of the TXOP acquired by the second AP and the end of the TXOP acquired by the first AP; It includes at least one of the following:

[0224] In one embodiment, the PLNPL Capabilities subfield is included in the Common Info field of the Basic Multilink element carried in the third frame.

[0225] In one embodiment, the first frame is a beacon frame or a probe response frame, and in PLNPL mode, only the first AP transmits the beacon frame or the probe response frame, and the second AP belonging to the AP MLD does not transmit any beacon frame or probe response frame.

[0226] In one embodiment, in PLNPL mode, the first frame carries a complete or partial profile of a second AP that belongs to the AP MLD.

[0227] In one embodiment, the complete or partial profile of the second STA is carried in the basic multilink element carried in the first frame.

[0228] In one embodiment, in the PLNPL mode, a second AP belonging to an AP MLD starts PPDU transmission to a second STA belonging to a non-AP MLD in a non-primary link only if the first AP in the primary link starts PPDU transmission as a TXOP holder at the same start time.

[0229] In one embodiment, the first frame includes link identifier information for the primary link and link identifier information for the non-primary link.

[0230] In one embodiment, the first frame includes a PLNPL Info subfield for indicating link identifier information of the primary link and link identifier information of the non-primary links, and the PLNPL Info subfield is included in the STA Info field within the Link Info field of the basic multilink element carried in the first frame.

[0231] In one embodiment, the first frame further indicates at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP.

[0232] In one embodiment, the first frame includes a PLNPL Info subfield, which is used to indicate at least one of supporting UL MU operation of the first AP and supporting DL MU operation of the first AP, and the PLNPL Info subfield is included in a STA Info field within a Link Info field of a basic multilink element carried in the first frame.

[0233] In one embodiment, the communication unit 2110 is further configured to receive a fourth frame from the first AP, the fourth frame including a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where the one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL. The communication unit 2110 is further configured to send a fifth frame to the first AP, the fifth frame indicating that the request has been accepted.

[0234] In one embodiment, the communication unit 2110 is further configured to receive a fourth frame from the first AP, the fourth frame including a request for one or more TIDs to be mapped to a non-primary link in the DL and / or UL, where the one or more TIDs are not mapped to a primary link in the DL and / or UL or are not requested to be mapped to a primary link in the DL and / or UL. The communication unit 2110 is further configured to send a fifth frame to the first AP, the fifth frame indicating that the request is denied.

[0235] In one embodiment, the communication unit 2110 is further configured to send a fourth frame to the first AP, the fourth frame including a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where the one or more TIDs are already mapped to primary links in the DL and / or UL or are requested to be mapped to primary links in the DL and / or UL. The communication unit 2110 is further configured to receive a fifth frame from the first AP, the fifth frame indicating that the request has been accepted.

[0236] In one embodiment, the communication unit 2110 is further configured to send a fourth frame to the first AP, the fourth frame including a request for one or more TIDs to be mapped to non-primary links in the DL and / or UL, where the one or more TIDs are not mapped to primary links in the DL and / or UL or are not requested to be mapped to primary links in the DL and / or UL. The communication unit 2110 is further configured to receive a fifth frame from the first AP, the fifth frame indicating that the request is denied.

[0237] In one embodiment, the fourth frame is a TID-TO-Link mapping request frame, and the fifth frame is a TID-TO-Link mapping response frame.

[0238] 22 is a block diagram of a communication device 2200 according to an embodiment of the present disclosure. The communication device 2200 shown in FIG. 22 includes a processor 2210 that can call and execute a computer program from a memory, thereby implementing the wireless communication method 400 or 1700 according to an embodiment of the present disclosure.

[0239] 22, the communication device 2200 may further include a memory 2220. The processor 2210 may retrieve and execute a computer program from the memory 2220, thereby implementing the wireless communication method 400 or 1700 according to an embodiment of the present disclosure.

[0240] The memory 2220 may be a separate device separate from the processor 2210 or may be integrated into the processor 2210.

[0241] 22, the communications device 2200 may further include a transceiver 2230. The processor 2210 may control the transceiver 2230 to communicate with other devices. For example, the transceiver 2230 may transmit information or data to other devices or receive information or data from other devices.

[0242] The transceiver 2230 may include a transmitter and a receiver. The transceiver 2230 may further include one or more antennas.

[0243] In one embodiment, the communication device 2200 may be an AP belonging to an AP MLD or a STA belonging to a non-AP MLD, and the communication device 2200 can implement a corresponding process implemented in the AP or the STA in the method according to an embodiment of the present disclosure.

[0244] 23 is a block diagram of an apparatus 2300 according to an embodiment of the present disclosure. The apparatus 2300 includes a processor 2310 configured to retrieve and execute a computer program from a memory to implement the wireless communication method 400 or 1700 according to an embodiment of the present disclosure.

[0245] 23, the device 2300 may further include a memory 2320. The processor 2310 may retrieve and execute a computer program from the memory 2320, thereby implementing the wireless communication method 400 or 1700 according to an embodiment of the present disclosure.

[0246] The memory 2320 may be a separate device separate from the processor 2310 or may be integrated into the processor 2310 .

[0247] In one embodiment, the apparatus 2300 may further include an input interface 2330. The processor 2310 may control the input interface 2330 to communicate with other devices or chips. For example, the input interface 2330 obtains information or data sent by other devices or chips.

[0248] In one embodiment, the apparatus 2300 may further include an output interface 2340. The processor 2310 may control the output interface 2340 to communicate with other devices or chips. For example, the output interface 2340 outputs information or data to other devices or chips.

[0249] In one embodiment, the device 2300 may be applied to an AP belonging to an AP MLD according to an embodiment of the present disclosure, or may be applied to a STA belonging to a non-AP MLD, and the device can implement a corresponding process implemented in the AP or the STA in the method according to an embodiment of the present disclosure.

[0250] In one embodiment, the device may be a chip, for example, a system-level chip or a system-on-chip (SOC).

[0251] It should be understood that a processor according to embodiments of the present disclosure may be a single central processing unit (CPU), but may also include two or more processing units. For example, the processor may include a general-purpose microprocessor, an instruction set processor and / or an associated chipset and / or a special-purpose microprocessor, such as an application-specific integrated circuit (ASIC). The processor may further include board memory for a cache. The computer program may be carried by a computer program product connected to the processor. The computer program product may include a non-transitory computer-readable storage medium on which the computer program is stored. For example, the computer program product may be a flash memory, a random access memory (RAM), a read-only memory (ROM), or an electrically erasable programmable read-only memory (EEPROM). In alternative embodiments, the computer program modules may be distributed in the form of memories across different computer program products.

[0252] An embodiment of the present disclosure further provides a computer-readable storage medium having a computer program stored thereon.

[0253] In one embodiment, according to an embodiment of the present disclosure, a computer-readable storage medium can be applied to a first / second AP, and a computer program causes a computer to execute corresponding processes implemented by the first / second AP in each method according to an embodiment of the present disclosure.

[0254] Embodiments of the present disclosure further provide a computer program product including computer program instructions.

[0255] In one embodiment, according to an embodiment of the present disclosure, a computer program product can be applied to a first AP / STA, and the computer program instructions cause the computer to execute corresponding processes implemented by the first / second AP in each method according to an embodiment of the present disclosure.

[0256] An embodiment of the present disclosure further provides a computer program.

[0257] In one embodiment, according to an embodiment of the present disclosure, a computer program can be applied to a first AP / STA, which, when executed by a computer, causes the computer to perform corresponding processes implemented by the first / second AP in each method according to an embodiment of the present disclosure.

[0258] The present disclosure has been described above with reference to the embodiments of the present disclosure. It should be understood that those skilled in the art can make various modifications, substitutions, and additions without departing from the spirit and scope of the present disclosure. Therefore, the scope of the present disclosure is not limited to the specific embodiments described above, but is limited only by the appended claims.

Claims

1. 1. A wireless communication method, applied to a first access point (AP) belonging to an access point (AP) multi-link device (MLD), comprising: If the AP MLD has dot11SoftAPMLDImplemented set to true and has one asynchronous transmit / receive (NSTR) link pair with the following restrictions: Each AP belonging to a Mobile AP MLD does not need to support all the required features of an EHT AP; APs belonging to the Mobile AP MLD may optionally support multi-user (MU) operation; For APs belonging to the Mobile AP MLD, it is optional to support two or more spatial streams; Among the APs operating on the NSTR link pair, only one AP transmits a beacon frame and a probe response frame, the mobile AP MLD is located in a mobile device, typically battery-powered; Each AP belonging to the Mobile AP MLD has a different Medium Access Control (MAC) address. If we have one NSTR link pair with the constraint: transmitting a first frame to a first STA (STAtion) belonging to a non-AP MLD, the first frame indicating that the AP MLD supports a mode, at least two links belonging to the AP MLD including a primary link and a non-primary link, the first frame indicating that a first link of the at least two links is the primary link so that a beacon frame and a probe response frame are transmitted, and the first frame further indicating that a second link of the at least two links is the non-primary link; The wireless communication method includes: receiving a fourth frame from the first STA, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs already mapped to the primary link in the DL and / or UL or requested to be mapped to the primary link in the DL and / or UL; and transmitting a fifth frame to the first STA, the fifth frame indicating that the request has been accepted. Or, receiving a fourth frame from the first STA, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs not being mapped to the primary link in the DL and / or UL or not being requested to be mapped to the primary link in the DL and / or UL; and transmitting a fifth frame to the first STA, the fifth frame indicating that the request has been denied. further comprising: A wireless communication method comprising:

2. the AP MLD is an asynchronous transmit / receive (NSTR) mobile AP MLD, and the first frame further indicates support for NSTR mobile AP MLD operation.

2. The wireless communication method according to claim 1.

3. The first frame includes an NSTR Mobile AP MLD Operation Support subfield for indicating that the NSTR Mobile AP MLD operation is supported, and the NSTR Mobile AP MLD Operation Support subfield is included in a Common Info field of a Basic Multilink element carried in the first frame.

3. The wireless communication method according to claim 2.

4. The wireless communication method includes: receiving a second frame from the first STA, the second frame indicating that the non-AP MLD supports the mode and used to request that the first link be set up as the primary link between the first AP and the first STA, and that the second link be set up as the non-primary link between a second AP belonging to the AP MLD and a second STA belonging to the non-AP MLD; transmitting a third frame to the first STA, the third frame indicating successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD; further comprising:

4. The wireless communication method according to claim 1, wherein the first and second signals are transmitted to the second terminal.

5. In the mode, at least one of the second frame and the third frame further indicates that a traffic identifier (TID) mapped to the non-primary link in a downlink (DL) and / or an uplink (UL) is also mapped to the primary link in the DL and / or UL.

5. The wireless communication method according to claim 4.

6. A wireless communication method is applied to a first STA (STA) belonging to a non-access point (AP) multi-link device (MLD), the wireless communication method comprising: If an Access Point (AP) Multilink Device (MLD) has dot11SoftAPMLDImplemented set to true and has one Asynchronous Transmit / Receive (NSTR) link pair with the following restrictions: Each AP belonging to a Mobile AP MLD does not need to support all the required features of an EHT AP; APs belonging to the Mobile AP MLD may optionally support multi-user (MU) operation; For APs belonging to the Mobile AP MLD, it is optional to support two or more spatial streams; Among the APs operating on the NSTR link pair, only one AP transmits a beacon frame and a probe response frame, the mobile AP MLD is located in a mobile device, typically battery-powered; Each AP belonging to the Mobile AP MLD has a different Medium Access Control (MAC) address. If we have one NSTR link pair with the constraint: receiving a first frame from a first AP belonging to the AP MLD, the first frame indicating that the AP MLD supports a mode, at least two links belonging to the AP MLD including a primary link and a non-primary link, the first frame indicating that a first link of the at least two links is the primary link so that a beacon frame and a probe response frame are transmitted, and the first frame further indicating that a second link of the at least two links is the non-primary link; The wireless communication method includes: transmitting a fourth frame to the first AP, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs already mapped to the primary link in the DL and / or UL or requested to be mapped to the primary link in the DL and / or UL; receiving a fifth frame from the first AP, the fifth frame indicating that the request has been accepted; Or, transmitting a fourth frame to the first AP, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs not being mapped to the primary link in the DL and / or UL or not being requested to be mapped to the primary link in the DL and / or UL; receiving a fifth frame from the first AP, the fifth frame indicating that the request has been denied; further comprising: A wireless communication method comprising:

7. the AP MLD is an asynchronous transmit / receive (NSTR) mobile AP MLD, and the first frame further indicates support for NSTR mobile AP MLD operation.

7. The wireless communication method according to claim 6.

8. The first frame includes an NSTR Mobile AP MLD Operation Support subfield for indicating that the NSTR Mobile AP MLD operation is supported, and the NSTR Mobile AP MLD Operation Support subfield is included in a Common Info field of a Basic Multilink element carried in the first frame.

8. The wireless communication method according to claim 7.

9. The wireless communication method includes: Transmitting a second frame to the first AP, the second frame instructing the non-AP MLD to operate in the mode and used to request that the first link be set up as the primary link between the first AP and the first STA, and that the second link be set up as the non-primary link between a second AP belonging to the AP MLD and a second STA belonging to the non-AP MLD; receiving a third frame from the first AP, the third frame indicating successful setup of the first link and / or the second link between the non-AP MLD and the AP MLD; further comprising: The wireless communication method according to any one of claims 6 to 8.

10. In the mode, at least one of the second frame and the third frame further indicates that a traffic identifier (TID) mapped to the non-primary link in a downlink (DL) and / or an uplink (UL) is also mapped to the primary link in the DL and / or UL.

10. The wireless communication method according to claim 9.

11. A wireless communication device is applied to a first AP belonging to an Access Point (AP) Multi-Link Device (MLD), the wireless communication device comprising: a communication unit; The communication unit If the AP MLD has dot11SoftAPMLDImplemented set to true and has one asynchronous transmit / receive (NSTR) link pair with the following restrictions: Each AP belonging to a Mobile AP MLD does not need to support all the required features of an EHT AP; APs belonging to the Mobile AP MLD may optionally support multi-user (MU) operation; For APs belonging to the Mobile AP MLD, it is optional to support two or more spatial streams; Among the APs operating on the NSTR link pair, only one AP transmits a beacon frame and a probe response frame, the mobile AP MLD is located in a mobile device, typically battery-powered; Each AP belonging to the Mobile AP MLD has a different Medium Access Control (MAC) address. If we have one NSTR link pair with the constraint: The wireless communication device is configured to transmit a first frame to a first STA (STAtion) belonging to a non-AP MLD, the first frame indicating that the AP MLD supports a mode, at least two links belonging to the AP MLD including a primary link and a non-primary link, the first frame indicating that a first link of the at least two links is the primary link so that a beacon frame and a probe response frame are transmitted, and the first frame further indicating that a second link of the at least two links is the non-primary link; the communication unit is configured to receive a fourth frame from the first STA, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs already mapped to the primary link in the DL and / or UL or requested to be mapped to the primary link in the DL and / or UL, the communication unit is configured to send a fifth frame to the first STA, the fifth frame indicating that the request has been accepted; or The communication unit is configured to receive a fourth frame from the first STA, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs not being mapped to the primary link in the DL and / or UL or not being requested to be mapped to the primary link in the DL and / or UL, and the communication unit is configured to transmit a fifth frame to the first STA, the fifth frame indicating that the request has been denied. A wireless communication device comprising:

12. A wireless communication device is applied to a first STA (STA) belonging to a non-access point (AP) multi-link device (MLD), the wireless communication device comprising: a communication unit; The communication unit If an Access Point (AP) Multilink Device (MLD) has dot11SoftAPMLDImplemented set to true and has one Asynchronous Transmit / Receive (NSTR) link pair with the following restrictions: Each AP belonging to a Mobile AP MLD does not need to support all the required features of an EHT AP; APs belonging to the Mobile AP MLD may optionally support multi-user (MU) operation; For APs belonging to the Mobile AP MLD, it is optional to support two or more spatial streams; Among the APs operating on the NSTR link pair, only one AP transmits a beacon frame and a probe response frame, the mobile AP MLD is located in a mobile device, typically battery-powered; Each AP belonging to the Mobile AP MLD has a different Medium Access Control (MAC) address. If we have one NSTR link pair with the constraint: The AP MLD is configured to receive a first frame from a first AP belonging to the AP MLD, the first frame indicating that the AP MLD supports a mode, and at least two links belonging to the AP MLD include a primary link and a non-primary link, the first frame indicating that a first link of the at least two links is the primary link so that a beacon frame and a probe response frame are transmitted, and the first frame further indicating that a second link of the at least two links is the non-primary link; the communication unit is configured to transmit a fourth frame to the first AP, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs already mapped to the primary link in the DL and / or UL or requested to be mapped to the primary link in the DL and / or UL, the communication unit is configured to receive a fifth frame from the first AP, the fifth frame indicating that the request has been accepted; or The communication unit is configured to transmit a fourth frame to the first AP, the fourth frame including a request for one or more traffic identifiers (TIDs) to be mapped to the non-primary link in a downlink (DL) and / or uplink (UL), the one or more TIDs not being mapped to the primary link in the DL and / or UL or not being requested to be mapped to the primary link in the DL and / or UL; and the communication unit is configured to receive a fifth frame from the first AP, the fifth frame indicating that the request has been denied. A wireless communication device comprising:

Citation Information

Patent Citations

  • Multi-link communication

    US20210014776A1