Operation method and device based on multiple access points, equipment, storage medium and product
Patent Information
- Application Number
- CN202280102123.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-01
- Publication Date
- 2025-07-04
AI Technical Summary
The existing IEEE 802.11be technology is difficult to effectively coordinate the Restricted Target Wake Time (R-TWT) service cycle in a multi-access point scenario, resulting in transmission delay and interference problems, affecting transmission efficiency.
Through negotiation and collaborative operation among multiple access points (APs), a protected scheduled service cycle based on multiple APs is established, the protection scope of frame exchange is expanded, transmission interference between sites is optimized, transmission delay is reduced and transmission efficiency is improved. .
It realizes the expansion of the protected scheduled service period for STA equipment frame exchange, optimizes the transmission interference between sites, reduces the transmission delay and improves the transmission efficiency.
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Figure CN120266450A_ABST
Abstract
Description
Multi-access point-based operation method, device, equipment, storage medium, and product Technical Field
[0001] The present application relates to the field of wireless communication technology, and in particular to an operation method, apparatus, device, storage medium, and product based on multiple access points. Background Art
[0002] In a wireless local area network (WLAN), a target wake time (TWT) mechanism is used to support energy saving in a large-scale Internet of Things (IoT) environment.
[0003] IEEE 802.11be proposes Restricted TWT operation to allow access points (APs) to utilize enhanced medium access protection and resource reservation mechanisms to provide more predictable, lower worst-case delay and jitter, and higher reliability for the transmission of low-latency services.
[0004] Summary of the Invention
[0005] The present invention provides a method, apparatus, device, storage medium, and product for operating multiple access points. The technical solution is as follows:
[0006] In one aspect, an embodiment of the present application provides a multi-AP-based operation method, the method being performed by a first AP device; the method comprising:
[0007] Send a first frame to establish a protected scheduled service period based on multi-AP operation for a first site STA device;
[0008] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0009] In one aspect, an embodiment of the present application provides a multi-AP-based operation method, the method being performed by a first STA device, the method including:
[0010] Receive a first frame; the first frame is used to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device;
[0011] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0012] In one aspect, an embodiment of the present application provides a multi-AP-based operation method, the method being performed by a second AP device, the method including:
[0013] Cooperate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first site STA device;
[0014] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
[0015] On the other hand, an embodiment of the present application provides a multi-AP-based operation device, the device comprising:
[0016] A sending module, configured to send a first frame to establish a protected predetermined service period based on multi-AP operation for a first station STA device;
[0017] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0018] On the other hand, an embodiment of the present application provides a multi-AP-based operation apparatus, a receiving module, configured to receive a first frame; the first frame is configured to indicate that a first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device;
[0019] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0020] On the other hand, an embodiment of the present application provides a multi-AP-based operation device, the device comprising:
[0021] An establishing module, configured to cooperate with a first AP device to establish a protected predetermined service period based on multi-AP operation for a first station STA device;
[0022] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
[0023] On the other hand, an embodiment of the present application provides an AP device, wherein the AP device is implemented as a first AP device, and the AP device includes a processor, a memory, and a transceiver;
[0024] The transceiver is configured to send a first frame to establish a protected predetermined service period based on multi-AP operation for a first station STA device;
[0025] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0026] On the other hand, an embodiment of the present application provides a STA device, wherein the STA device is implemented as a first STA device; the STA device includes a processor, a memory, and a transceiver;
[0027] The transceiver is configured to receive a first frame; the first frame is configured to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device;
[0028] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0029] On the other hand, an embodiment of the present application provides an AP device, wherein the AP device is implemented as a second AP device, and the AP device includes a processor, a memory, and a transceiver;
[0030] The processor is configured to cooperate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first station STA device;
[0031] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
[0032] On the other hand, an embodiment of the present application provides a computer device, comprising a processor, a memory, and a transceiver, wherein the memory stores a computer program, and the computer program is configured to be executed by the processor so that the computer device implements the above-mentioned multi-access point-based operation method.
[0033] On the other hand, an embodiment of the present application further provides a computer-readable storage medium, wherein the storage medium stores a computer program, and the computer program is loaded and executed by a processor to enable a computer device to implement the above-mentioned multi-access point-based operation method.
[0034] In another aspect, a computer program product is provided, the computer program including computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the above-mentioned multi-access point-based operation method.
[0035] On the other hand, a chip is provided, comprising: a processor configured to call and execute a computer program from a memory, so that a computer device equipped with the chip executes the above-mentioned multi-access point-based operation method.
[0036] On the other hand, a computer program is provided. The computer program is executed by a processor of a computer device to enable the computer device to perform the above-mentioned multi-access point-based operation method.
[0037] The technical solutions provided in the embodiments of the present application can bring the following beneficial effects:
[0038] The first AP device can establish a protected scheduled service period based on multi-AP operation for the first STA device, so that the scheduled service period for protecting the frame exchange of the first STA device can be extended to multiple APs, thereby expanding the protection range of the frame exchange, while optimizing the transmission interference between sites to reduce the transmission delay of the site, and improving the transmission efficiency of the site. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] FIG1 is a schematic diagram of a network architecture of a communication system provided by one embodiment of the present application;
[0040] FIG2 is an example diagram of multi-AP collaborative operation provided by an embodiment of the present application;
[0041] FIG3 is a flowchart of an operation method based on multiple access points provided by an embodiment of the present application;
[0042] FIG4 is a flowchart of an operation method based on multiple access points provided by an embodiment of the present application;
[0043] FIG5 is a flowchart of an operation method based on multiple access points provided by an embodiment of the present application;
[0044] FIG6 is a flowchart of an operation method based on multiple access points provided by an embodiment of the present application;
[0045] 7 is a schematic diagram of the relevant definition of the multi-AP operation information sub-domain involved in the embodiment shown in FIG6;
[0046] FIG8 is a schematic diagram of the cooperative AP set information subfield format involved in the embodiment shown in FIG6;
[0047] 9 is a schematic diagram of the coordinated AP set information subfield format involved in the embodiment shown in FIG6;
[0048] FIG10 is an example diagram of an R-TWT SP establishment and operation process based on multi-AP operation according to the embodiment shown in FIG6 ;
[0049] FIG11 is a schematic diagram of an R-TWT operation scenario based on multi-AP collaboration involved in this application;
[0050] FIG12 is a diagram illustrating a main process and operation example of establishing an R-TWT based on multi-AP collaboration involved in this application;
[0051] FIG13 is a diagram of an R-TWT operation scenario based on multi-AP collaboration involved in this application;
[0052] FIG14 is a schematic diagram of an R-TWT establishment and operation based on multi-AP collaboration involved in this application;
[0053] FIG15 is a schematic diagram of an R-TWT operation scenario based on multi-AP coordination involved in this application;
[0054] FIG16 is a diagram illustrating a main process and operation example of establishing and operating an R-TWT based on multi-AP coordination involved in this application;
[0055] FIG17 is a schematic diagram of an R-TWT operation scenario based on multi-AP coordination involved in this application;
[0056] FIG18 is a diagram illustrating a main process and operation example of R-TWT establishment and operation based on multi-AP coordination involved in this application;
[0057] FIG19 is a schematic diagram of a hybrid mode scenario based on multi-AP collaboration and multi-AP coordination involved in this application;
[0058] FIG20 is a block diagram of an operating apparatus based on multiple access points provided by one embodiment of the present application;
[0059] FIG21 is a block diagram of a multi-access point-based operating apparatus provided by one embodiment of the present application;
[0060] FIG22 is a block diagram of a multi-access point-based operating apparatus provided by one embodiment of the present application;
[0061] FIG23 is a schematic diagram of the structure of a computer device provided in one embodiment of the present application. DETAILED DESCRIPTION
[0062] The network architecture and business scenarios described in the embodiments of the present application are intended to more clearly illustrate the technical solutions of the embodiments of the present application, and do not constitute a limitation on the technical solutions provided by the embodiments of the present application. A person skilled in the art will appreciate that, with the evolution of the network architecture and the emergence of new business scenarios, the technical solutions provided by the embodiments of the present application are equally applicable to similar technical problems.
[0063] The technical solutions of the embodiments of the present application can be applied to various communication systems, such as Wireless Local Area Networks (WLAN), Wireless Fidelity (WiFi), or other communication systems.
[0064] For example, please refer to Figure 1, which shows a schematic diagram of the network architecture of a communication system 100 provided in one embodiment of the present application. The communication system 100 may include an access point 110 (ie, AP) and a station 120 (ie, STA) that accesses the network through the access point 110.
[0065] In some scenarios, an AP is also called an AP STA. In a sense, an AP is also a STA.
[0066] In some scenarios, a STA is also called a non-AP STA.
[0067] The communication in the communication system 100 can be communication between an AP and a non-AP STA, communication between a non-AP STA and a non-AP STA, or communication between a STA and a peer STA, where a peer STA may refer to a device that communicates with the STA on a peer-to-peer basis. For example, the peer STA may be an AP or a non-AP STA.
[0068] An AP acts as a bridge between wired and wireless networks, connecting wireless network clients and then connecting the wireless network to the Ethernet. An AP can be a terminal device with a Wi-Fi chip (such as a mobile phone) or a network device (such as a wireless router, wireless switch, or wireless repeater).
[0069] It should be understood that the role of STA in the communication system is not absolute. For example, in some scenarios, when a mobile phone is connected to a router, the mobile phone is a non-AP STA. When the mobile phone serves as a hotspot for other mobile phones, the mobile phone plays the role of AP.
[0070] APs and non-AP STAs can be devices used in the Internet of Vehicles, IoT nodes and sensors in the Internet of Things (IoT), smart cameras, smart remote controls, smart water and electricity meters in smart homes, and sensors in smart cities.
[0071] In some embodiments, a non-AP STA may support 802.11be. A non-AP STA may also support various current and future 802.11 family wireless LAN standards, such as 802.11ax, 802.11ac, 802.11n, 802.11g, 802.11b, and 802.11a.
[0072] In some embodiments, the AP may be a device supporting the 802.11be standard. The AP may also be a device supporting various current and future 802.11 family WLAN standards, such as 802.11ax, 802.11ac, 802.11n, 802.11g, 802.11b, and 802.11a.
[0073] In the embodiment of the present application, the STA may be a mobile phone, tablet computer, computer, virtual reality (VR) device, augmented reality (AR) device, wireless device in industrial control, set-top box, wireless device in self-driving, in-vehicle communication device, wireless device in remote medical, wireless device in smart grid, wireless device in transportation safety, wireless device in smart city, wireless device in smart home, wireless communication chip / application specific integrated circuit (ASIC) / system on chip (SOC), etc. that supports WLAN or WiFi technology.
[0074] The frequency bands supported by WLAN technology may include but are not limited to: low frequency bands (eg, 2.4 GHz, 5 GHz, 6 GHz) and high frequency bands (eg, 60 GHz).
[0075] FIG1 exemplarily shows one AP STA and two non-AP STAs. Optionally, the communication system 100 may include multiple AP STAs and other numbers of non-AP STAs, which is not limited in this embodiment of the present application.
[0076] It should be understood that in the embodiments of the present application, a device having communication functionality in a network / system may be referred to as a communication device. Taking the communication system 100 shown in FIG1 as an example, the communication device may include an access point 110 and a station 120 having communication functionality. Access point 110 and station 120 may be the specific devices described above and will not be described in detail here. The communication device may also include other devices in the communication system 100, such as a network controller, a gateway, or other network entities, which is not limited in the embodiments of the present application.
[0077] The network architecture shown in FIG. 1 includes two access points 110 and four sites 120 . The embodiment of the present application does not limit the number of access points 110 and sites 120 . For example, the network architecture may include more access points 110 and sites 120 .
[0078] It should be understood that the terms "system" and "network" are often used interchangeably herein. The term "and / or" is simply a description of an association between related objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " generally indicates that the related objects are in an "or" relationship.
[0079] It should be understood that the "indication" mentioned in the embodiments of this application can be a direct indication, an indirect indication, or an indication of an association. For example, "A indicates B" can mean that A directly indicates B, for example, B can be obtained through A; it can also mean that A indirectly indicates B, for example, A indicates C, and B can be obtained through C; it can also mean that there is an association between A and B.
[0080] In the description of the embodiments of the present application, the term "corresponding" may indicate a direct or indirect correspondence between the two, or an association relationship between the two, or a relationship between indication and being indicated, configuration and being configured, etc.
[0081] In the embodiments of the present application, "predefined" may be implemented by pre-storing corresponding codes, tables, or other methods that can be used to indicate relevant information in a device (e.g., including an access point and a station). The present application does not limit the specific implementation method. For example, predefined may refer to a method defined in a protocol.
[0082] In the embodiments of the present application, the “protocol” may refer to a standard protocol in the communication field, for example, it may include a WiFi protocol and related protocols used in future WiFi communication systems, and the present application does not limit this.
[0083] The access point 110 and the station 120 may be associated and communicated with each other via wireless local area network technology. The above-mentioned association refers to the process of wireless link service negotiation between the STA and the AP to establish a wireless link between the STA and the AP.
[0084] 1) TWT
[0085] TWT is used to support energy conservation in large-scale IoT environments. In 802.11ax, the TWT mechanism adds support for triggered uplink transmissions based on 11ah, thus expanding the scope of TWT operation.
[0086] In TWT, a schedule is established between the terminal and the AP (this schedule is agreed upon by the terminal and the AP). The schedule is composed of TWT time periods. When the negotiated time period between the terminal and the AP arrives, the terminal wakes up, waits for the trigger frame sent by the AP, and performs a data exchange. After the transmission is completed, it returns to sleep. Each terminal can independently negotiate with the AP and each terminal has a unique TWT time period.
[0087] TWT allows the AP to manage the behavior of the Basic Service Set (BSS) to reduce contention between sites and reduce the awake time of sites in power management mode. This is achieved by sites operating in non-overlapping time and / or frequency domains and concentrating frame exchanges in predefined service periods. Therefore, to ensure the application effect of TWT, the AP generally requires that all associated sites within the BSS can join the TWT so that the AP can schedule them. According to the TWT protocol of 11ax, the HE (High-Efficiency, specifically 11ax) AP will request all associated sites that claim to support TWT to participate in TWT. Non-AP sites should perform individual customized TWT (individual TWT) protocol negotiation or join the broadcast TWT (broadcast TWT) after receiving the AP's indication to join TWT. In addition, the service period (SP) of TWT includes trigger-enabled SP and non-trigger-enabled SP. The TWT scheduling AP schedules by sending trigger frames in the trigger-enabled SP. At the same time, 11ax stipulates that TWT scheduled sites cannot transmit frames to TWT scheduling AP outside the broadcast TWT SP, and in trigger-enabled broadcast TWT, TWT scheduled sites cannot transmit frames that do not carry the High Efficiency Trigger-Based Physical layer Protocol Data Unit (HE TB PPDU) to the TWT scheduling AP.
[0088] IEEE 802.11be proposes Restricted TWT operation to allow APs to utilize enhanced medium access protection and resource reservation mechanisms to provide more predictable, lower worst-case latency and jitter, and higher reliability for the transmission of low-latency services. Currently, Restricted TWT mainly adds two channel access rules in terms of channel access: an extremely high throughput (EHT) non-AP station (non-AP STA) as the owner of a transmission opportunity (TXOP), when the TXOP is obtained outside the restricted TWT service period, should ensure that its TXOP ends before the start of any restricted TWT service period; the EHT AP will schedule a quiet interval that overlaps with the restricted TWT service period to shield the legacy STAs that support the Quiet Element from operating within the TWT SP, but the shielding operation within the quiet interval is invalid for the non-AP EHT STA.
[0089] 2) Multi-AP coordination technology
[0090] Multi-AP cooperative operation modes include coordinated orthogonal frequency division multiple access (C-OFDMA), coordinated multi-user multiple-in multiple-out (C-MU-MIMO), coordinated spatial reuse (C-SR), joint transmission (J-TX), coordinated beamforming (C-BF), etc. APs that support multi-AP cooperative operation can indicate the capability of the multi-AP cooperative transmission scheme by sending beacon frames or other management frames.
[0091] The static multi-AP set is also called a candidate set. Any two or more APs in the set can perform Multi-AP transmission (such as C-OFDMA, C-BF, C-SR, J-TX, etc.). The dynamic multi-AP set (or operation set) includes the Sharing AP that obtains TXOP and is used for multi-AP transmission, the Shared AP(s) and STA(s) that participate in multi-AP transmission, as shown in Figure 2. The example diagram of multi-AP collaborative operation. Among them, Sharing AP and Shared AP are defined based on TXOP, and the roles can change in different TXOPs. Sharing AP obtains TXOP and initiates Multi-AP transmission (multi-AP transmission); while Shared AP participates in the coordination of Sharing AP.
[0092] Currently, the R-TWT defined by IEEE 802.11be is limited to the negotiation and establishment of R-TWT between a single AP and its associated non-AP STA within a basic service set (BSS). When multiple APs can collaborate to establish R-TWT in a multi-AP scenario, it is necessary to consider the way in which multiple APs collaborate and how to coordinate the establishment of R-TWT. In particular, collaboration between multiple APs includes: multiple APs perform collaborative operations in the time domain, spatial domain, and frequency domain; multiple APs share R-TWT information, and based on the shared information, establish and manage R-TWT or adjust channel access and transmission during the R-TWT service period (SP) established by neighboring APs. The problems that need to be solved for multi-AP collaboration to establish R-TWT are described below.
[0093] Since for multi-AP coordinated transmission, the collaborative transmission initiator AP (Sharing AP) sends a frame triggering collaborative transmission to the shared AP (Shared AP) for coordinated transmission after obtaining a transmission opportunity (TXOP) through channel competition, therefore, for scheduled or scheduled multi-AP coordinated transmission, one of the multiple APs obtains the TXOP at the scheduled time, and the other APs can respond to the frame triggering collaborative transmission initiated by the AP and perform collaborative transmission, which is the key to scheduling multi-AP coordinated transmission. When the established R-TWT involves multiple APs performing coordinated operations in the time domain, spatial domain, and frequency domain, that is, it involves scheduling or scheduling multi-AP coordinated transmission, since each AP may have stations that do not support multi-AP coordinated operation (such as legacy stations (Legacy STA)) or stations that support multi-AP coordinated operation, it is not enough to simply let one AP perform the behavior of the R-TWT scheduling AP. It is necessary to ensure that each AP participating in the scheduled multi-AP coordinated transmission performs the behavior of the R-TWT scheduling AP.
[0094] Please refer to Figure 3, which shows a flowchart of a multi-access point operation method provided by an embodiment of the present application. The method can be performed by a first AP device. The first AP device can be any of the access points 110 in the network architecture shown in Figure 1. The method can include the following steps:
[0095] Step 301: Send a first frame to establish a protected scheduled service period based on multi-AP operation for a first site STA device; wherein the protected scheduled service period based on multi-AP operation is a protected scheduled service period established by negotiation between the first AP device and at least one second AP device.
[0096] To summarize, the solution shown in the embodiment of the present application is that the first AP device can establish a protected scheduled service period based on multi-AP operation for the first STA device, so that the scheduled service period for protecting the frame exchange of the first STA device can be extended to multiple APs, thereby expanding the protection range of the frame exchange, while optimizing the transmission interference between sites to reduce the transmission delay of the site, and improving the transmission efficiency of the site.
[0097] Please refer to Figure 4, which shows a flowchart of a multi-access point operation method provided by an embodiment of the present application. The method can be performed by a first STA device, which can be one of the stations 120 in the network architecture shown in Figure 1. The method may include the following steps:
[0098] Step 401, receiving a first frame; the first frame is used to indicate that the first AP device has established a protected scheduled service period based on multi-AP operation for the first STA device; wherein the protected scheduled service period based on multi-AP operation is a protected scheduled service period established by the first AP device through negotiation with at least one second AP device.
[0099] To summarize, the solution shown in the embodiment of the present application is that the first AP device can establish a protected scheduled service period based on multi-AP operation for the first STA device, so that the scheduled service period for protecting the frame exchange of the first STA device can be extended to multiple APs, thereby expanding the protection range of the frame exchange, while optimizing the transmission interference between sites to reduce the transmission delay of the site, and improving the transmission efficiency of the site.
[0100] Please refer to Figure 5, which shows a flowchart of a multi-access point operation method provided by an embodiment of the present application. The method can be performed by a second AP device, which can be any of the access points 110 in the network architecture shown in Figure 1. The method may include the following steps:
[0101] Step 501, collaborate with a first AP device to establish a protected scheduled service period based on multi-AP operation for a first site STA device; wherein the protected scheduled service period based on multi-AP operation is a protected scheduled service period established by negotiation between the first AP device and at least one second AP device.
[0102] To summarize, in the solution shown in the embodiment of the present application, the first AP device can collaborate with the second AP device to establish a protected scheduled service period based on multi-AP operation for the first STA device, so that the scheduled service period for protecting the frame exchange of the first STA device can be extended to multiple APs, thereby expanding the protection range of the frame exchange, while optimizing the transmission interference between sites to reduce the transmission delay of the site, and improving the transmission efficiency of the site.
[0103] Based on the solutions shown in Figures 3 to 5 above, please refer to Figure 6, which shows a flowchart of a multi-access point operation method provided by one embodiment of the present application. The method can be interactively performed by a first AP device, at least one second AP device, and a first STA device; the first STA device can be one of the stations 120 in the network architecture shown in Figure 1, and the first AP device, at least one second AP device, and at least two access points 110 in the network architecture shown in Figure 1 can be. The method may include the following steps:
[0104] Step 601: A first AP device sends a second request to at least one second AP device; at least one second AP device receives the second request; the second request is used to request the second AP device to collaborate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first STA device.
[0105] In some embodiments, the protected predetermined service period is a restricted target wake time R-TWT period.
[0106] The first request may be sent wirelessly or by wire.
[0107] In an embodiment of the present application, the protected scheduled service period is used for the first AP device and the second AP device to perform multi-AP collaborative operations; the multi-AP collaborative operations include: prioritizing or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, through a specific collaborative transmission mode to exchange frames; or
[0108] The above-mentioned protected scheduled service period is used for the first AP device and the second AP device to perform an operation based on multi-AP coordination. The operation based on multi-AP coordination includes: giving priority to ensuring or only allowing the first AP device to exchange frames with the member sites of the protected scheduled service period including the first STA device. At the same time, the second AP device coordinates or limits the transmission of the sites in the BSS where it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period including the first STA device; or
[0109] When the number of at least one second AP device is n, n≥2, and n is an integer, the above-mentioned protected predetermined service period is used for the first AP device to perform multi-AP collaborative operations with some of the n second AP devices, and for the first AP device to perform multi-AP coordinated operations with other second AP devices among the n second AP devices.
[0110] That is to say, the at least one second AP device mentioned above can be an AP device that performs multi-AP collaboration with the first AP device (which can be called a multi-AP collaboration mode); or, the at least one second AP device mentioned above can be an AP device that performs multi-AP coordination with the first AP device (which can be called a multi-AP coordination mode); or, when the number n of the at least one second AP device mentioned above is greater than 1, the n second AP devices simultaneously include AP devices that perform multi-AP collaboration with the first AP device, and AP devices that perform multi-AP coordination with the first AP device (which can be called a mixed mode).
[0111] Among them, the above-mentioned multi-AP collaboration may refer to multiple AP devices collaborating to serve STA devices; the above-mentioned multi-AP coordination may refer to one or more AP devices performing channel protection for the transmission of stations in the BSS where another one or more AP devices are located; for example, one or more AP devices may limit the transmission behavior of STA devices in the BSS where they are located within a protected predetermined time period to avoid interfering with the transmission of stations in the BSS where another one or more AP devices are located within the protected predetermined time period.
[0112] The process in which the second AP device coordinates or restricts transmissions of stations in the BSS in which it is located to protect communications between the first AP device and the member stations of the protected predetermined service period, including the first STA device, may include but is not limited to:
[0113] Control all or part of the stations in the BSS where the second AP device is located to terminate the transmission opportunity before the starting time point corresponding to the protected scheduled service period; or, control all or part of the stations in the BSS where the second AP device is located to terminate the transmission opportunity on the designated channel before the starting time point corresponding to the protected scheduled service period; or, control all or part of the stations in the BSS where the second AP device is located to be in a silent state during the time period corresponding to the protected scheduled service period; or, control all or part of the stations in the BSS where the second AP device is located to be in a silent state on the designated channel during the time period corresponding to the protected scheduled service period; or, control all or part of the stations in the BSS where the second AP device is located to terminate the transmission opportunity before the starting time point corresponding to the protected scheduled service period, and control Control all or part of the stations in the BSS where the second AP device is located to be in a silent state during the time period corresponding to the protected scheduled service period; or control all or part of the stations in the BSS where the second AP device is located to terminate the transmission opportunity on the designated channel before the starting time point corresponding to the protected scheduled service period, and control all or part of the stations in the BSS where the second AP device is located to be in a silent state on the designated channel during the time period corresponding to the protected scheduled service period; or control all or part of the stations in the BSS where the second AP device is located to terminate the transmission opportunity before the starting time point corresponding to the protected scheduled service period, and limit the parameter set for competing for TXOP used by all or part of the stations in the BSS where the second AP device is located during the time period corresponding to the protected scheduled service period.
[0114] The above-mentioned methods of protecting the channel are merely exemplary. The embodiment of the present application does not limit the method in which the second AP device coordinates or restricts the transmission of the stations in the BSS in which it is located.
[0115] In some embodiments, the specific cooperative transmission mode includes at least one of the following:
[0116] Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
[0117] In some embodiments, in the case of multi-AP coordination-based operation, in the protected predetermined service period, the duration of the first service period in the BSS corresponding to the first AP device does not overlap with the duration of the third service period; in this case, the coordination mode of the multi-AP coordination can be called exclusive; or,
[0118] In the protected predetermined service period, the duration of the first service period in the BSS corresponding to the first AP device overlaps with the duration of the third service period; in this case, the coordination mode of the multi-AP coordination can be called non-exclusive;
[0119] The third service period is a predetermined service period within the BSS of the second AP device that performs multi-AP coordination-based operations with the first AP device; in the case of multi-AP coordination, the BSS of the second AP device is an overlapping basic service set OBSS of the BSS of the first AP device.
[0120] In some embodiments, sending the second request to the second AP device includes:
[0121] If the second AP device is an AP device that operates with the first AP device based on multi-AP collaboration, a first sub-request is sent to the second AP device; the first sub-request is used to request the second AP device to establish a second service period within the BSS corresponding to the second AP device within the protected predetermined service period. Correspondingly, if the second AP device is an AP device that operates with the first AP device based on multi-AP collaboration, the first sub-request sent by the first AP device is received.
[0122] In some embodiments, the first sub-request includes second attribute information of the protected predetermined service period, and the second attribute information of the protected predetermined service period includes at least one of the following information:
[0123] Priority information of the first STA device, a cooperative AP set performing an operation based on multi-AP cooperation, and a specific cooperative transmission mode corresponding to the operation based on multi-AP cooperation.
[0124] In some embodiments, sending the second request to the second AP device includes: sending a second sub-request to the second AP device when the second AP device is an AP device that performs multi-AP coordination-based operation with the first AP device; correspondingly, receiving the second sub-request sent by the first AP device when the second AP device is an AP device that performs multi-AP coordination-based operation with the first AP device;
[0125] The second sub-request includes third attribute information of the protected scheduled service period. The third attribute information of the protected scheduled service period includes at least one of the following information:
[0126] Priority information of the first STA device, and a coordination method corresponding to an operation based on multi-AP coordination.
[0127] Optionally, the third attribute information may also include information such as the start time point and end time point of the protected scheduled service period.
[0128] For a second AP device that performs different multi-AP operations, the first AP device may send different requests to the second AP device to indicate different multi-AP operation modes.
[0129] In step 602 , the first AP device and the second AP device cooperate to establish a protected predetermined service period based on multi-AP operation for the first STA device.
[0130] Among them, for the first AP device, when establishing a protected scheduled service period, corresponding to the first service period in the BSS where the first device is located, it can send a first broadcast message for establishing the first service period; the first broadcast message includes first attribute information of the protected scheduled service period.
[0131] For at least one second AP device that operates with the first AP device based on multi-AP coordination, the second AP device may send a second broadcast message for establishing a second service period when establishing a protected predetermined service period corresponding to a first service period within the BSS where the first device is located. In some embodiments, the second broadcast message includes second attribute information of the protected predetermined service period.
[0132] In some embodiments, when performing multi-AP collaboration-based operations, the start time and the end time of the first service period are the same as the start time and the end time of the second service period.
[0133] In some embodiments, for the first AP device, when performing operations based on multi-AP collaboration, a quiet time interval is also announced; the quiet time interval is used to shield the transmission operation of the second STA device that does not support the protected scheduled service period in the BSS corresponding to the first AP device within the protected scheduled service period.
[0134] The second STA device that does not support the protected predetermined service period may be a legacy STA.
[0135] In some embodiments, for the second AP device, when performing operations based on multi-AP collaboration, a quiet time interval is also announced; the quiet time interval is used to shield the transmission operation of the second STA device that does not support the protected scheduled service period in the BSS corresponding to the second AP device within the protected scheduled service period.
[0136] In some embodiments, the second STA device is a STA device other than a specified type of STA device that does not support the protected predetermined service period; the specified type of STA device includes at least one of an EHT STA device and a UHR STA device.
[0137] In some embodiments, the quiet time interval may be invalid for STA devices of a specified type, and the transmission of STA devices of the specified type may be prioritized.
[0138] In some embodiments, for the second AP device, when performing multi-AP coordination-based operations during a protected predetermined service period, the second AP device may also send a third broadcast message; the third broadcast message is used to coordinate or limit the transmission of sites in the BSS where the second AP device is located during the protected predetermined service period.
[0139] Among them, the above-mentioned third broadcast message can be called the coordination protection information corresponding to the Overlapping Basic Service Set (OBSS) TWT. For example, the coordination protection information can include the third attribute information such as the start and end time, priority, etc. of the above-mentioned protected scheduled service period.
[0140] In some embodiments, before step 601, the first STA device further sends a first request to the first AP device; the first AP device receives the first request; the first request is used to request to establish a protected predetermined service period.
[0141] The establishment of the protected predetermined service period may be initiated by the first STA device. In this case, the first frame may be a response frame to the first request.
[0142] In some embodiments, the first request includes first attribute information of a protected predetermined service period.
[0143] In other embodiments, the protected scheduled service period may also be actively initiated by the first AP device.
[0144] Step 603: The first AP device sends a first frame to the first STA device to complete establishing a protected predetermined service period based on multi-AP operation for the first site STA device; the first STA device receives the first frame.
[0145] In some embodiments, the first frame includes first attribute information of the protected predetermined service period.
[0146] In some embodiments, the first attribute information of the protected predetermined service period includes at least one of the following information:
[0147] A coordinated AP set performing multi-AP coordinated operations, a specific coordinated transmission mode, a coordinated AP set performing local multi-AP coordinated operations with a first AP device, and a coordination method corresponding to the multi-AP coordinated operations.
[0148] Among them, the above-mentioned collaborative AP set can carry the identification of each AP device that performs multi-AP collaborative operations (including the identification of the first AP device); the above-mentioned coordination AP set can carry the identification of each AP device that performs multi-AP coordinated operations with the first AP device.
[0149] In some embodiments, the first attribute information of the protected predetermined service period is set in the multi-AP operation information subfield included in the broadcast TWT parameter set field.
[0150] In some embodiments, the broadcast TWT information subfield in the broadcast TWT parameter set domain includes a multi-AP operation information existence subfield; the parameter value of the multi-AP operation information existence subfield is used to indicate whether there is a multi-AP operation information subfield in the broadcast TWT parameter set domain;
[0151] When the parameter value of the multi-AP operation information sub-domain is the first specified value, the broadcast TWT parameter set domain includes the multi-AP operation information sub-domain.
[0152] In some embodiments, the multi-AP operation information subfield includes at least one of the following subfields:
[0153] Multi-AP operation control subdomain, collaborative AP set information subdomain and coordinated AP set information subdomain;
[0154] Multi-AP operation control sub-domain includes:
[0155] At least one of a multi-AP operation mode subfield, a priority subfield, a coordinated AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP coordinated transmission mode subfield, a multi-AP coordination mode subfield, and a reserved subfield;
[0156] The multi-AP operation mode subfield is used to indicate the multi-AP operation mode; the multi-AP operation mode includes an operation based on multi-AP collaboration and / or an operation based on multi-AP coordination;
[0157] The priority subfield is used to indicate the priority information of the first STA device;
[0158] The cooperative AP set information existence sub-domain is used to indicate whether the cooperative AP set information sub-domain exists;
[0159] The coordinated AP set information existence subfield is used to indicate whether the coordinated AP set information subfield exists;
[0160] The multi-AP cooperative transmission mode subfield is used to indicate a specific cooperative transmission mode corresponding to the operation based on multi-AP cooperation;
[0161] The multi-AP coordination mode subfield is used to indicate the coordination mode corresponding to the operation based on multi-AP coordination;
[0162] The collaborative AP set information subfield is used to indicate each AP device in the collaborative AP set;
[0163] The coordinated AP set information subfield is used to indicate each AP device in the coordinated AP set.
[0164] Taking the protected scheduled service period as a restricted target wake-up time R-TWT period as an example, an embodiment of the present application introduces a broadcast TWT (restricted TWT) parameter set domain format definition based on multi-AP operation.
[0165] Specifically, a multi-AP operation information subfield is added to the broadcast TWT parameter set field (Broadcast TWT Parameter Set field), and at the same time, a multi-AP operation information existence subfield is added to the broadcast TWT information (Broadcast TWT Info) subfield. A schematic diagram of the relevant definition of the multi-AP operation information subfield in the specific broadcast TWT (restricted TWT) parameter set field is shown in Figure 7. The various subfields in Figure 7 are described as follows:
[0166] (1) Multiple AP operation information exists sub-domain: Indicates whether there is a multiple AP operation information sub-domain; when the multiple AP operation information sub-domain takes 1, it indicates that there is a multiple AP operation information sub-domain; when the multiple AP operation information sub-domain takes 0, it indicates that there is no multiple AP operation information sub-domain.
[0167] (2) The multi-AP operation information subfield includes a multi-AP operation control subfield, a collaborative AP set information subfield, and a coordinated AP set information subfield. Among them, the multi-AP operation control subfield includes a multi-AP operation mode subfield, a priority subfield, a collaborative AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP collaborative transmission mode subfield, a multi-AP coordination mode subfield, etc.:
[0168] 1) Multi-AP operation mode subfield: Indicates the multi-AP operation mode corresponding to the TWT, for example:
[0169] When the value of the multi-AP operation mode subfield is 0, it indicates that the collaborative mode is jointly established and shared by multiple APs constituting the collaborative AP set. During the SP corresponding to the established R-TWT, the collaborative AP cooperates with the member stations corresponding to the R-TWT SP through a specific collaborative operation mode to exchange frames.
[0170] When the value of the multi-AP operation mode subfield is 1, it indicates that one or more APs constituting the coordinated AP set coordinate the coordination mode for establishing TWT, wherein, during the SP corresponding to the established R-TWT, the relevant stations in the BSS where the coordinated AP is located will adopt specific behaviors or measures to protect the channel access and frame exchange of the corresponding member stations of the TWT;
[0171] When the value of the multi-AP operation mode subfield is 2, it indicates a hybrid mode in which the multiple APs constituting the collaborative AP set jointly establish and share, and at the same time, coordinate with one or more APs constituting other coordinated AP sets.
[0172] 2) Priority subfield: Indicates the priority type corresponding to the TWT. When it is 0, it indicates regular need, when it is 1, it indicates strong need, and when it is 2, it indicates necessary.
[0173] 3) Collaborative AP set information exists: indicates whether the collaborative AP set information subdomain exists; for example, when the collaborative AP set information exists is 1, it indicates that the collaborative AP set information subdomain exists; when the collaborative AP set information exists is 0, it indicates that the collaborative AP set information subdomain does not exist.
[0174] 4) Coordinated AP set information exists: indicates whether the coordinated AP set information subdomain exists; for example, when the coordinated AP set information exists is 1, it indicates that the coordinated AP set information subdomain exists; when the coordinated AP set information exists is 0, it indicates that the coordinated AP set information subdomain does not exist.
[0175] 5) Multi-AP collaborative transmission mode subdomain: Indicates the collaborative transmission mode of multiple APs in the collaborative AP set corresponding to R-TWT during the R-TWT service period. For example, its value 1 represents collaborative OFDMA, 2 represents collaborative multi-user MIMO, 3 represents collaborative spatial multiplexing, 4 represents joint transmission, and 5 represents collaborative beamforming (C-BF). Other values are reserved.
[0176] 6) Multi-AP coordination mode subdomain: Indicates the coordination mode of multiple APs in the coordinated AP set corresponding to the -TWT. For example, a value of 1 indicates that the coordination mode is exclusive R-TWT, that is, the service period SP of the R-TWT established by the AP in the coordinated AP set is required to be completely staggered in time with the SP corresponding to the R-TWT; a value of 2 indicates that the coordination mode is non-exclusive R-TWT, that is, the SP corresponding to the R-TWT established by the AP in the coordinated AP set is allowed to overlap in time with the SP corresponding to the R-TWT; other values are reserved.
[0177] (3) Collaborative AP set information subdomain: used to identify the information of each collaborative AP in the collaborative AP set corresponding to the R-TWT, where the collaborative AP can be identified by any one of BSSID, BSS color, and collaborative AP group identifier. The schematic diagram of the collaborative AP set information subdomain format can be shown in Figure 8.
[0178] (4) Coordination AP set information subdomain: used to identify the information of each coordination AP in the coordination AP set corresponding to the R-TWT, where the coordination AP can be identified by any one of BSSID, BSS color, and collaborative AP group identifier. The schematic diagram of the coordination AP set information subdomain format can be shown in Figure 9.
[0179] Step 604: The first AP device and the second AP device perform an operation based on multi-AP collaboration or an operation based on multi-AP coordination during a protected predetermined service period.
[0180] Specifically, for the first AP device, it can perform multi-AP collaboration-based operations during a protected predetermined service period; or,
[0181] During a protected scheduled service period, perform operations based on multi-AP coordination; or
[0182] When the number of at least one second AP device is n and n≥2, during a protected predetermined service period, multi-AP collaboration-based operations are performed with some of the n second AP devices, and multi-AP coordination-based operations are performed with other second AP devices among the n second AP devices.
[0183] For example, the above-mentioned first AP device performs multi-AP collaboration-based operations during the protected predetermined service period, which may include: when the first AP device competes for a transmission opportunity, the first AP device sends a second frame (which may be called a multi-AP trigger frame / multi-AP collaboration trigger frame) to the second AP device; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations during the protected predetermined service period.
[0184] Alternatively, the above-mentioned first AP device performing operations based on multi-AP collaboration during the protected predetermined service period may include: the first AP device receiving a second frame sent by the second AP device; thereafter, the first AP device and the second AP device can perform operations based on multi-AP collaboration during the protected predetermined service period.
[0185] For any second AP device, an operation based on multi-AP collaboration is performed during a protected predetermined service period; or,
[0186] During the protected predetermined service period, an operation based on multi-AP coordination is performed with the first AP device.
[0187] For example, the second AP device performs multi-AP collaboration-based operations during a protected scheduled service period, which may include: sending a second frame to the first AP device when competing for a transmission opportunity; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations during the protected scheduled service period.
[0188] Alternatively, the second AP device performing multi-AP collaboration-based operations during the protected scheduled service period may include: receiving a second frame sent by the second AP device; thereafter, the first AP device and the second AP device may perform multi-AP collaboration-based operations during the protected scheduled service period.
[0189] Taking the first AP device and at least one second AP device as AP1 and AP2, and the protected predetermined service period as a restricted target wake-up time R-TWT period as an example, the establishment and operation method of the restricted R-TWT period based on multi-AP operation mainly includes the following three modes:
[0190] (1) Mode 1 - Multi-AP collaboration: AP1 and AP2 performing multi-AP collaboration jointly establish a protected scheduled service period, such as R-TWT SP. That is, within the scheduled service period (such as the R-TWT service period), AP1 and AP2 collaborate with member sites to exchange frames through a specific collaborative operation mode. AP1 and AP2 perform collaborative operations in the time domain, spatial domain, and frequency domain. The collaborative operation modes include collaborative OFDMA, collaborative multi-user MIMO, collaborative spatial multiplexing, joint transmission, and collaborative beamforming. For example, during the R-TWT service period, AP1 and AP2 transmit to the member site STA1-1 (associated with AP1 and / or AP2) corresponding to the R-TWT service period through joint transmission or coordinated beamforming, or, during the R-TWT service period, AP1 and AP2 transmit to the member sites STA1-1 (associated with AP1 and / or AP2) and STA2-1 (associated with AP2 and / or AP1) corresponding to the R-TWT service period through coordinated OFDMA, coordinated multi-user MIMO, or coordinated spatial multiplexing.
[0191] Since for multi-AP coordinated transmission, the collaborative transmission initiator AP (Sharing AP) sends a frame triggering collaborative transmission to the shared AP (Shared AP) for coordinated transmission after obtaining the transmission opportunity (TXOP) through channel competition, therefore, for scheduled or scheduled multi-AP coordinated transmission, one of the multiple APs obtains the TXOP at the scheduled time, and the other APs can respond to the frame triggering collaborative transmission initiated by the AP and perform collaborative transmission, which is the key to scheduling multi-AP coordinated transmission. Therefore, for Mode 1 R-TWT, it is jointly established by multiple APs participating in the coordinated transmission. Therefore, each AP participating in the multi-AP coordinated transmission needs to perform the behavior of the R-TWT scheduling AP (R-TWT scheduling AP), including one or more of the following behaviors:
[0192] 1) The AP carries a broadcast TWT element in the broadcast beacon frame to indicate the broadcast TWT service period (broadcast TWT SP); in particular, when any R-TWT membership is established, the AP will announce the R-TWT scheduling information by carrying a broadcast TWT element containing the R-TWT parameter set field in the transmitted management frame.
[0193] 2) The AP schedules a quiet interval that overlaps with the restricted TWT service period to shield the operations of legacy STAs that support the Quiet Element within the TWT SP, but the shielding operation within the quiet interval is invalid for specific Non-AP STAs (such as EHT STA and UHR STA).
[0194] In particular, when any AP among the collaborative multiple APs that jointly establish R-TWT under mode 1 or any AP that supports being the initiator of collaborative transmission obtains TXOP during the R-TWT service period, it must ensure that it and other collaborative APs provide priority services to the member sites of R-TWT in accordance with the predetermined multi-AP collaborative transmission mode.
[0195] (2) Mode 2 - Multi-AP Coordination: AP1 and AP2 each establish their own protected scheduled service period, such as R-TWT SP. AP1 establishes R-TWT with its associated site, and AP1 shares the established R-TWT SP information with AP2. AP2 protects the channel access between AP1 and the corresponding member sites during the R-TWT SP established by AP1 by controlling its own behavior and / or the behavior of its associated sites.
[0196] In Mode 2, if the R-TWT service periods of the R-TWTs established by multiple APs overlap in time, there will be a conflict in channel access and transmission in the overlapping areas of their respective BSSs during the overlapping period. In addition, in Mode 2, an AP that supports multi-AP coordinated transmission may also initiate multi-AP coordinated transmission to a member site with another AP that also supports multi-AP coordinated transmission during its own established R-TWT SP period. However, since the other AP that also supports multi-AP coordinated transmission does not perform the scheduling AP behavior corresponding to the R-TWT, the coordinated transmission is not pre-scheduled.
[0197] Mode 2 can be divided into the following types:
[0198] 1) The R-TWT SPs established by the two APs are completely staggered in time (exclusive); the R-TWT established by AP1 (or AP2) requires that its R-TWT SP be completely staggered in time with the R-TWT SP of the R-TWT that has been established or will be established in the future by the coordinated AP2 (or AP1);
[0199] 2) The R-TWT SPs established by two APs may overlap in time (non-exclusive); the R-TWT established by AP1 (or AP2) allows its R-TWT SP to partially overlap in time with the R-TWT SP of the R-TWT that has been established or will be established in the future by the collaborative AP2 (or AP1); when the R-TWT SPs established by AP1 and AP2 partially overlap in time, the priority of the two R-TWTs is used to determine which R-TWT SP period's channel access should be protected first.
[0200] (3) Hybrid mode - multi-AP collaboration + multi-AP coordination: The multiple APs that make up the collaborative AP set jointly establish and share, and at the same time, coordinate with one or more APs that make up the coordination AP set to establish and operate R-TWT.
[0201] The R-TWT SP establishment mode and characteristics based on multi-AP operation can be shown in Table 1 below.
[0202] Table 1
[0203]
[0204] Please refer to Figure 10, which shows an example diagram of an R-TWT SP establishment and operation process based on multi-AP operation involved in an embodiment of the present application.
[0205] As shown in Figure 10, STA1 is associated with AP1 (and / or AP2), and AP1 and AP2 can cooperate to transmit to STA1, while the BSS where AP3 is located is the OBSS of the BSS where AP1 is located, STA2 is associated with AP2, and STA3 is associated with AP3. STA1 sends a TWT request frame to AP1 to request the establishment of R-TWT based on multi-AP operation, wherein the TWT request carries a TWT element containing a restricted TWT parameter set field, and the multi-AP operation information subfield information in the restricted TWT parameter set field includes: the multi-AP operation mode is mixed mode; the priority is required; the collaborative AP set includes AP1 and AP2; the coordinated AP set includes AP3; the multi-AP collaborative transmission mode is joint transmission, and the multi-AP coordination mode is exclusive. After receiving the TWT request frame, AP1 sends corresponding TWT requests to the corresponding collaborative AP and coordinated AP according to the collaborative AP set information and coordinated AP set information carried in the TWT request frame. After receiving the TWT response indicating acceptance from them, it sends a TWT response indicating acceptance to STA1.
[0206] After STA1 and AP1 complete the establishment of R-TWT, AP1 and AP2 in the coordinated AP set will broadcast the established R-TWT information in their respective BSSs by carrying broadcast TWT elements (including the restricted TWT parameter set field) in beacon frames or other management frames. The established R-TWT ensures that during the R-TWT service period (SP), AP1 and AP2 use a joint transmission method to coordinate frame exchange with STA1. AP3 in the coordinated AP set will send the coordinated OBSS R-TWT scheduling information (corresponding to the R-TWT scheduling information established by STA1) that requires channel access protection through beacon frames or other management frames, and perform specific actions for the stations in the BSS where AP3 is located to protect the transmission of the member stations (i.e., STA1) in the OBSS TWT during its SP.
[0207] Compared with the solution in which R-TWT is limited to the negotiation and establishment of R-TWT between a single AP and its associated non-AP sites within a basic service set, the R-TWT establishment and operation method based on multi-AP operation proposed in the embodiment of the present application solves the problem of how multiple collaborative APs operate collaboratively and / or how multiple coordinated APs coordinate the establishment and operation of R-TWT in a multi-AP scenario, avoiding or reducing the interference caused by OBSS to the transmission of member sites during the R-TWT service cycle.
[0208] To summarize, the solution shown in the embodiment of the present application is that the first AP device can establish a protected scheduled service period based on multi-AP operation for the first STA device, so that the scheduled service period for protecting the frame exchange of the first STA device can be extended to multiple APs, thereby expanding the protection range of the frame exchange, while optimizing the transmission interference between sites to reduce the transmission delay of the site, and improving the transmission efficiency of the site.
[0209] Based on the schemes shown in Figures 3 to 6 above, assume that AP1 and AP2 are two APs performing multi-AP operation, STA1-1, STA1-2, and STA1-3 are associated with AP1, and STA2-1 and STA2-2 are associated with AP2. For joint transmission in multi-AP coordinated transmission, STA1-1 can also be associated with AP2 at the same time. R-TWT operation modes based on multi-AP operation include the following:
[0210] (1) Mode 1 (multi-AP collaboration): AP1 and AP2 performing multi-AP collaboration jointly establish a protected scheduled service period, such as an R-TWT SP, that is, within the scheduled service period (such as the R-TWT service period), AP1 and AP2 collaborate to exchange frames with member stations through a specific collaborative operation mode, wherein AP1 and AP2 perform collaborative operations in the time domain, spatial domain, and frequency domain, as shown in Figures 11 and 12. For example, within the R-TWT service period, AP1 and AP2 transmit to the member station STA1-1 corresponding to the R-TWT service period through joint transmission or collaborative beamforming. The schematic diagram of the R-TWT operation scenario based on multi-AP collaboration can be shown in Figure 11; or, within the R-TWT service period, AP1 and AP2 transmit to the member stations STA1-2 and STA2-1 corresponding to the R-TWT service period respectively through collaborative OFDMA, collaborative multi-user MIMO, or collaborative spatial multiplexing.
[0211] Since for multi-AP coordinated transmission, the collaborative transmission initiator AP (Sharing AP) sends a triggering frame for coordinated transmission to the shared AP (Shared AP) after obtaining the transmission opportunity through channel competition for coordinated transmission, therefore, for scheduled or scheduled multi-AP coordinated transmission, the key to scheduling multi-AP coordinated transmission is that one of the multiple APs obtains the TXOP at the scheduled time, and the other APs can respond to the triggering frame initiated by the AP and perform coordinated transmission. Therefore, for Mode 1 R-TWT, it is jointly established by the multiple APs participating in the coordinated transmission. Therefore, each AP participating in the multi-AP coordinated transmission needs to perform the R-TWT scheduling AP behavior.
[0212] As shown in Figure 11, STA1-1 and AP1 and AP2 based on collaborative operation jointly establish a protected scheduled service period (such as R-TWT SP), that is, within the scheduled service period (such as R-TWT service period), AP1 and AP2 cooperate with the member site (STA1-1) to exchange frames through a specific collaborative operation mode.
[0213] Among them, the main process and operation example diagram of the station STA1-1 establishing R-TWT based on multi-AP collaboration is shown in Figure 12. It is assumed that AP1 and AP2 have completed the process of establishing multi-AP collaborative transmission (for example, using joint transmission). STA1-1 first initiates an R-TWT request to the access point AP1 to which it is associated. After receiving the R-TWT request, AP1 negotiates with AP2 to establish R-TWT based on multi-AP collaboration, wherein the multi-AP collaborative transmission mode (for example, using joint transmission) during the R-TWT SP period can be specified. When AP1 and AP2 both agree to establish R-TWT based on multi-AP collaboration, AP1 sends an R-TWT response to STA1-1 to confirm that the R-TWT establishment is successful. After completing the establishment of R-TWT based on multi-AP collaboration, AP1 and AP2 respectively broadcast the established R-TWT information in their respective BSSs by carrying the broadcast TWT element in the beacon frame. During the R-TWT SP, AP1 and AP2 give priority to using a predetermined coordinated transmission method (such as joint transmission) to communicate with the R-TWT member site (such as STA1-1) to transmit delay-sensitive service data, or only AP1 and AP2 are allowed to use a predetermined coordinated transmission method (such as joint transmission) to communicate with the R-TWT member site (such as STA1-1) to transmit delay-sensitive service data. As shown in the figure, AP1 or AP2 obtains a transmission opportunity after the start of the R-TWT service period, and starts the joint transmission of AP1 and AP2 to the site STA1-1 by sending a multi-AP trigger frame (or multi-AP coordinated transmission trigger frame).
[0214] As shown in Figure 13, it shows an R-TWT operation scenario based on multi-AP collaboration (such as C-OFDMA or C-SR). AP1 and AP2 establish a protected scheduled service period (such as R-TWT SP) based on multi-AP collaboration. STA1-2 and STA2-1 are member sites of the scheduled service period (such as R-TWT SP). Multi-AP collaborative transmission can adopt collaborative OFDMA or collaborative spatial multiplexing (C-SR). During the service period, AP1 and AP2 adopt a specific collaborative operation mode (such as collaborative OFDMA or collaborative spatial multiplexing) to communicate with STA1-2 and STA2-1 respectively to transmit delay-sensitive service data.
[0215] Among them, the establishment and operation diagram of R-TWT based on multi-AP collaboration (such as C-OFDMA or C-SR) performed by sites STA1-2 and STA2-1 can be shown in Figure 14. Assume that AP1 and AP2 have completed the process of establishing multi-AP collaborative transmission (for example, using C-OFDMA or coordinated spatial multiplexing C-SR). STA1-2 first initiates an R-TWT request to its associated access point AP1. After receiving the R-TWT request, AP1 negotiates with AP2 to establish R-TWT based on multi-AP collaboration, wherein the multi-AP collaborative transmission mode (for example, using C-OFDMA or C-SR) during the R-TWT SP period can be specified. When AP1 and AP2 both agree to establish R-TWT based on multi-AP collaboration, AP1 sends an R-TWT response to STA1-2 to confirm that the R-TWT establishment is successful. STA2-1 first initiates an R-TWT request to the access point AP1 to which it is associated. After receiving the R-TWT request, AP1 negotiates with AP2 to establish an R-TWT based on multi-AP collaboration, wherein the multi-AP collaborative transmission mode during the R-TWT SP can be specified (for example, using C-OFDMA or C-SR). When both AP1 and AP2 agree to establish an R-TWT based on multi-AP collaboration, AP1 sends an R-TWT response to STA1-2 to confirm that the R-TWT is successfully established. Similarly, STA2-1 initiates an R-TWT request to the access point AP2 to which it is associated. After receiving the R-TWT request, AP2 negotiates with AP1 to establish an R-TWT based on multi-AP collaboration. When both AP1 and AP2 agree to establish an R-TWT based on multi-AP collaboration, AP2 sends an R-TWT response to STA2-1 to confirm that the R-TWT is successfully established, that is, STA2-1 becomes a member of the established R-TWT SP).
[0216] After completing the establishment of R-TWT based on multi-AP collaboration, AP1 and AP2 broadcast the established R-TWT information in their respective BSSs by carrying the broadcast TWT element in the beacon frame. During the R-TWT SP, AP1 and AP2 give priority to using a predetermined cooperative transmission method (such as C-OFDMA or C-SR) to communicate with their respectively associated R-TWT member sites (STA1-2 and STA2-1) to transmit delay-sensitive service data, or only allow AP1 and AP2 to use a predetermined cooperative transmission method (such as C-OFDMA or C-SR) to communicate with their respectively associated R-TWT member sites (STA1-2 and STA2-1) to transmit delay-sensitive service data. As shown in the figure, AP1 or AP2 obtains a transmission opportunity after the start of the R-TWT service period, and starts AP1 and AP2 to communicate with their respectively associated sites STA1-2 and STA2-1 by sending a multi-AP trigger frame (or multi-AP cooperative transmission trigger frame).
[0217] (2) Mode 2 (Multi-AP Coordination): AP1 or AP2 establishes its own protected scheduled service period, such as R-TWT SP. AP1 establishes R-TWT with its associated site, and AP1 shares the established R-TWT SP information with AP2. AP2 protects the channel access between AP1 and the corresponding member site during the R-TWT SP established by AP1 by controlling the behavior of itself and / or its associated related sites. As shown in Figure 15, it shows a schematic diagram of an R-TWT operation scenario based on multi-AP coordination involved in this application.
[0218] Mode 2 - Scenario 1: As shown in Figure 15, AP1 coordinates with AP2 during the establishment of a protected scheduled service period (such as R-TWT SP). STA1-1 is a member station of the scheduled service period (such as R-TWT SP). During the R-TWT SP, STA1-1 exchanges frames with AP1 to prioritize the transmission of delay-sensitive service data. AP2 is the coordinating AP and takes measures on the BSS where AP2 is located to protect STA1-1's channel access and communication during the R-TWT SP. For example, during the R-TWT SP established between AP1 and STA1-1, it limits the communication of relevant stations in the BSS where AP2 is located, or adjusts the transmission power of relevant stations. Among them, for AP2 and its associated stations, the R-TWT established between AP1 and STA1-1 is an OBSS R-TWT.
[0219] Among them, the main process and operation example diagram of R-TWT establishment and operation based on multi-AP coordination can be shown in Figure 16. Assume that AP1 and AP2 support spatial multiplexing operation, STA1-1 and AP1 and AP2 and / or related sites associated with AP2 to establish R-TWT (Note: related sites may refer to sites whose initiated transmissions may interfere with the communication between STA1-1 and AP1) have determined each other's transmission power limits and / or acceptable received signal strength indicators (RSSIs) when performing spatial multiplexing. STA1-1 first initiates an R-TWT request to its associated access point AP1. After receiving the R-TWT request, AP1 negotiates with AP2 to establish an R-TWT based on multi-AP coordination. The negotiation can determine whether the spatial multiplexing transmission method is adopted during the R-TWT SP, whether STA1-1's transmission during the R-TWT service period complies with the transmission power limit and / or acceptable RSSI requirements specified by spatial multiplexing, and whether AP2 and related stations (Note: related stations may refer to stations whose transmissions may interfere with the communication between STA1-1 and AP1) comply with the transmission power limit and / or acceptable RSSI requirements specified by spatial multiplexing during the protection time period corresponding to the R-TWT SP. When both AP1 and AP2 agree to establish an R-TWT based on multi-AP coordination, AP1 sends an R-TWT response to STA1-1 to confirm that the R-TWT establishment is successful. At the same time, AP2 can establish the coordinated protection period corresponding to the OBSS R-TWT (i.e., the R-TWT established by AP1 and STA1-1) by sending an unsolicited R-TWT response to establish the R-TWT of the BSS where AP2 is located, and can specify sites that meet the spatial multiplexing transmission requirements (i.e., meet the transmission power limit and / or acceptable RSSI) as member sites. Among them, the R-TWT SP established by AP1 and the coordinated protection period established by AP2 (i.e., the R-TWT SP established by AP2 on its BSS) are consistent in time, that is, their start time and end time are synchronized. At the same time, to ensure that AP1 can obtain the transmission opportunity to exchange frames with the R-TWT member sites after the start time of its R-TWT SP, AP2 terminates its transmission opportunity (TXOP) if it is the transmission opportunity owner (TXOP holder) before the start time point of the coordinated protection period.
[0220] After completing the establishment of R-TWT based on multi-AP coordination, AP1 broadcasts the established R-TWT information in its BSS by carrying the broadcast TWT element in the beacon frame; and AP2 broadcasts the established R-TWT period information in its BSS through the beacon frame, that is, the coordinated protection period information (such as the time period to be protected, etc.) corresponding to the OBSS R-TWT (that is, the R-TWT of the BSS where AP1 is located). During the time period to be protected, the involved sites (Note: the involved sites may refer to sites whose transmission will interfere with the communication of member sites during the R-TWT SP period of the BSS where AP1 is located) adopt a spatial multiplexing mode, that is, limit the transmission power of the involved sites. In particular, in the example, the transmission power of AP2 during the time period to be protected is limited to meet the transmission requirements of spatial multiplexing.
[0221] For the BSS where AP1 is located, during the R-TWT SP period, AP1 gives priority to communicating with the R-TWT member site STA1-1 to transmit delay-sensitive service data, where the transmission power of STA1-1 should comply with the transmission power limit requirements of spatial multiplexing. In particular, AP1 can specify the uplink transmission power limit of the site STA1-1 in the trigger frame sent during the R-TWT SP period. For the BSS where AP2 is located, during the protection time period corresponding to the OBSS R-TWT, only the involved sites that meet the spatial multiplexing transmission requirements (Note: the involved sites may refer to sites whose transmission will interfere with the communication of member sites during the R-TWT SP period of the BSS where AP1 is located) are allowed or allowed with priority to communicate with other sites that will not interfere with the communication of member sites during the R-TWT SP period of the BSS where AP1 is located. In particular, in the example, AP2's transmission must comply with the transmission power limit requirements of spatial multiplexing. At the same time, AP2 can adopt a trigger-based transmission mode, and optionally carry the uplink transmission power limit information of the involved sites that meet the spatial multiplexing transmission requirements (such as STA2-1 in Figure 16, that is, the member sites of the coordinated protection period) in the trigger frame to trigger the sites that meet the spatial multiplexing transmission requirements (such as STA2-1 in Figure 16) to perform uplink transmission.
[0222] Mode 2 - Scenario 2:
[0223] Please refer to Figure 17, which shows a schematic diagram of an R-TWT operation scenario based on multi-AP coordination involved in the present application; as shown in Figure 17, AP1 coordinates with AP2 during the establishment of a protected scheduled service period (such as R-TWT SP), STA1-1 is a member site of the scheduled service period (such as R-TWT SP), and STA1-1 exchanges frames with AP1 during the R-TWT SP to prioritize the transmission of delay-sensitive service data; AP2 is the coordinating AP, and takes measures to protect the channel access and communication of STA1-1 during the R-TWT SP for the BSS where AP2 is located. At the same time, it also performs restricted transmission with sites that meet the transmission requirements within its BSS. For example, STA2-1 and AP2 use limited transmission power to exchange frames during the R-TWT SP established by STA1-1 and AP1.
[0224] Among them, the main process and operation example diagram of R-TWT establishment and operation based on multi-AP coordination can be shown in Figure 18. Assume that AP1 and AP2 support R-TWT establishment and operation based on multi-AP coordination and support spatial reuse operation, such as parameterized spatial reuse. STA1-1 first initiates an R-TWT request to its associated access point AP1. After receiving the R-TWT request, AP1 negotiates with AP2 to establish R-TWT based on multi-AP coordination. The negotiation can determine the use of a spatial reuse transmission mode (such as PSR) during the R-TWT SP. Prioritize or only allow AP1 and STA1-1 to use the transmission requirements specified by supporting spatial reuse (such as the transmission requirements specified by PSR operation) during the R-TWT service period. At the same time, AP2 and related stations (Note: related stations may refer to stations whose transmissions may interfere with the communication between STA1-1 and AP1) use the transmission power limit requirements specified by spatial reuse for transmission during the required protection time period corresponding to the R-TWT SP. When both AP1 and AP2 agree to establish an R-TWT based on multi-AP coordination, AP1 sends an R-TWT response to STA1-1 to confirm that the R-TWT is successfully established. At the same time, AP2 can establish the coordinated protection period corresponding to the OBSS R-TWT (i.e., the R-TWT established by AP1 and STA1-1) by sending an unsolicited R-TWT response to establish the R-TWT of the BSS where AP2 is located. Among them, the R-TWT SP established by AP1 and the coordinated protection period established by AP2 (i.e., the R-TWT SP established by AP2 on its BSS) are consistent in time, that is, their start time and end time are synchronized. At the same time, to ensure that AP1 can obtain the transmission opportunity to exchange frames with R-TWT member sites after the start time of its R-TWT SP, AP2 takes one or more of the following measures: a) If AP2 is the transmission opportunity owner (TXOP holder) before the start time of the coordinated protection period, it terminates its transmission opportunity (TXOP); b) AP2 is silent for a specific time after the start time of the coordinated protection period; c) AP2 uses EDCA parameters with lower priority than AP1 to compete for channels during the coordinated protection period.
[0225] In particular, the R-TWT SP established by AP2 in its BSS can be a trigger-enabled R-TWT period. All sites associated with AP2 and supporting R-TWT can serve as member sites of the coordinated protection period to facilitate AP2 to perform trigger-based transmissions on sites that meet the spatial multiplexing transmission requirements. At the same time, it ensures that if these sites are transmission opportunity owners (TXOP holders) their TXOPs are terminated in advance before the start time point of the R-TWT SP; for sites associated with AP2 but not supporting R-TWT, the transmission of these sites during the R-TWT SP can be restricted by AP2 scheduling a silent interval overlapping with the R-TWT SP (i.e., the coordinated protection period).
[0226] After completing the establishment of R-TWT based on multi-AP coordination, AP1 broadcasts the established R-TWT information in its BSS by carrying the broadcast TWT element in the beacon frame. AP2 broadcasts the established R-TWT period information in its BSS through the beacon frame, that is, the coordinated protection period information corresponding to the OBSS R-TWT (that is, the R-TWT of the BSS where AP1 is located). During the coordinated protection period, the involved sites (Note: The involved sites refer to sites whose transmission will interfere with the communication of the member sites during the R-TWT SP period of the BSS where AP1 is located) adopt a spatial multiplexing mode, that is, limit the transmission power of the involved sites. In particular, in the example, the transmission power of AP2 in the time period to be protected is limited to meet the transmission requirements of spatial multiplexing.
[0227] For the BSS where AP1 is located, during the R-TWT SP, AP1 gives priority to communicating with the R-TWT member site STA1-1 to transmit delay-sensitive service data, where the transmission between AP1 and STA1-1 should comply with the transmission requirements that support spatial multiplexing. In particular, for PSR, AP1 can indicate the use of PSR spatial multiplexing and determine the transmission power limit of the parameterized spatial multiplexing transmission (Parameterized Spatial Reuse Transmission, PSRT) PPDU in the trigger frame sent during the R-TWT SP (carried in the parameterized spatial multiplexing reception (Parameterized Spatial Reuse Reception, PSRR) PPDU).
[0228] For the BSS where AP2 is located, within the R-TWT SP established by it (i.e., the coordinated protection period corresponding to the OBSS R-TWT), only the communication of the involved sites that meet the spatial multiplexing transmission requirements (Note: the involved sites may refer to sites whose transmission will interfere with the communication of the member sites during the R-TWT SP period of the BSS where AP1 is located) and / or other sites that will not interfere with the communication of the member sites during the R-TWT SP period of the BSS where AP1 is located is allowed or allowed with priority. In particular, in the example, the transmission of AP2 must comply with the transmission power limit requirements of spatial multiplexing. At the same time, AP2 can adopt a trigger-based transmission mode, and optionally carry the uplink transmission power limit information of the involved sites (such as STA2-1 in Figure 18) that meet the spatial multiplexing transmission requirements in the trigger frame, triggering the sites that meet the spatial multiplexing transmission requirements (such as STA2-1 in Figure 18) to perform uplink transmission. Specifically, when AP2 identifies a PSR opportunity, it initiates a transmission trigger frame (carried in a PSRT PPDU) within its BSS, triggering uplink transmissions from stations that meet the PSR transmission requirements (such as STA2-1 in FIG18 ).
[0229] (3) Hybrid mode: Multiple APs that form a collaborative AP set jointly establish and share, and at the same time, coordinate with one or more APs that form a coordinated AP set to establish and operate R-TWT. A schematic diagram of a hybrid mode scenario based on multi-AP collaboration and multi-AP coordination can be shown in Figure 19. AP1 and AP2 that perform multi-AP collaboration jointly establish a protected scheduled service period, such as R-TWT SP. That is, within the scheduled service period (such as R-TWT service period), AP1 and AP2 cooperate with member stations (such as STA1) through a specific collaborative operation mode to exchange frames. AP3 is a coordinating AP that controls the behavior of itself and / or its associated related stations to perform corresponding channel access protection for the coordinated transmission between AP1 and AP2 and the corresponding member station (STA1) during the service period SP of the R-TWT jointly established by AP1 and AP2.
[0230] Please refer to Figure 20, which shows a block diagram of a multi-access point-based operation device provided by an embodiment of the present application. The device has the function of implementing the steps performed by the first AP device in the above-mentioned multi-access point-based operation method. As shown in Figure 20, the device may include:
[0231] The sending module 2001 is configured to send a first frame to establish a protected predetermined service period based on multi-AP operation for a first station STA device;
[0232] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0233] In some embodiments, the apparatus further comprises: an operation module configured to:
[0234] During the protected scheduled service period, performing an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or,
[0235] During the protected scheduled service period, an operation based on multi-AP coordination is performed, where the operation based on multi-AP coordination includes: giving priority to ensuring or only allowing the first AP device to exchange frames with the member sites of the protected scheduled service period, including the first STA device, while the second AP device coordinates or limits the transmission of the sites in the BSS where it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period, including the first STA device; or
[0236] When the number of at least one second AP device is n and n≥2, during the protected predetermined service period, multi-AP collaboration-based operations are performed with some of the n second AP devices, and multi-AP coordination-based operations are performed with the other part of the n second AP devices.
[0237] In some embodiments, when performing multi-AP collaboration-based operations,
[0238] In the protected predetermined service period, a start time and an end time of a first service period in the BSS corresponding to the first AP device are the same as a start time and an end time of a second service period;
[0239] The second service period is a service period within the BSS of the second AP device that performs the multi-AP collaboration-based operation with the first AP device in the protected predetermined service period.
[0240] In some embodiments, the specific cooperative transmission mode includes at least one of the following:
[0241] Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
[0242] In some embodiments, the operation module is used to send a second frame to the second AP device when competing for a transmission opportunity; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations within the protected predetermined service period.
[0243] In some embodiments, the operation module is used to receive a second frame sent by the second AP device; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations within the protected predetermined service period.
[0244] In some embodiments, when performing multi-AP collaboration-based operations, the apparatus further includes:
[0245] A scheduling module is used to announce a quiet time interval; the quiet time interval is used to shield the transmission operation of the second STA device that does not support the protected scheduled service period in the BSS corresponding to the first AP device within the protected scheduled service period.
[0246] In some embodiments, the second STA device is other than a specified type of STA device and does not support the protected predetermined service period;
[0247] The designated type of STA device includes at least one of an EHT STA device and a UHR STA device.
[0248] In some embodiments, when performing multi-AP coordination-based operations,
[0249] In the protected predetermined service period, the duration of the first service period in the BSS corresponding to the first AP device does not overlap with the duration of the third service period; or
[0250] In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device overlaps with a duration of a third service period;
[0251] The third service period is a predetermined service period within the BSS of the second AP device that performs the multi-AP coordination-based operation with the first AP device; the BSS of the second AP device is an overlapping basic service set (OBSS) of the BSS of the first AP device.
[0252] In some embodiments, the apparatus further comprises:
[0253] A receiving module is used to receive a first request sent by the first STA device; the first request is used to request to establish the protected predetermined service period.
[0254] In some embodiments, the first request includes first attribute information of the protected predetermined service period.
[0255] In some embodiments, the sending module is used to send the first frame to the first STA device; the first frame includes first attribute information of the protected predetermined service period.
[0256] In some embodiments, the sending module is further used to send a second request to the second AP device; the second request is used to request the second AP device to collaborate with the first AP device to establish the protected predetermined service period.
[0257] In some embodiments, the apparatus further comprises:
[0258] The period establishing module is configured to establish a first service period in the BSS of the first AP device in the protected predetermined service period.
[0259] In some embodiments, the period establishing module is configured to send a first broadcast message for establishing the first service period; the first broadcast message includes first attribute information of the protected predetermined service period.
[0260] In some embodiments, the first attribute information of the protected predetermined service period includes at least one of the following information:
[0261] A coordinated AP set performing multi-AP coordinated operations, a specific coordinated transmission mode, a coordinated AP set performing local multi-AP coordinated operations with the first AP device, and a coordination method corresponding to the multi-AP coordinated operations.
[0262] In some embodiments, the protected predetermined service period is a restricted target wake time R-TWT period.
[0263] In some embodiments, the first attribute information of the protected predetermined service period is set in the multi-AP operation information subfield contained in the broadcast TWT parameter set field.
[0264] In some embodiments, the broadcast TWT information subfield in the broadcast TWT parameter set domain includes a multi-AP operation information existence subfield; the parameter value of the multi-AP operation information existence subfield is used to indicate whether the multi-AP operation information subfield exists in the broadcast TWT parameter set domain;
[0265] In the case where the parameter value of the multi-AP operation information sub-domain is a first specified value, the broadcast TWT parameter set domain includes the multi-AP operation information sub-domain.
[0266] In some embodiments, the multi-AP operation information subfield includes at least one of the following subfields:
[0267] Multi-AP operation control subdomain, collaborative AP set information subdomain and coordinated AP set information subdomain;
[0268] The multi-AP operation control subdomain includes:
[0269] At least one of a multi-AP operation mode subfield, a priority subfield, a coordinated AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP coordinated transmission mode subfield, a multi-AP coordination mode subfield, and a reserved subfield;
[0270] The multi-AP operation mode subfield is used to indicate a multi-AP operation mode; the multi-AP operation mode includes an operation based on multi-AP collaboration and / or an operation based on multi-AP coordination;
[0271] The priority subfield is used to indicate the priority information of the first STA device;
[0272] The cooperative AP set information existence subfield is used to indicate whether the cooperative AP set information subfield exists;
[0273] The coordinated AP set information existence subfield is used to indicate whether the coordinated AP set information subfield exists;
[0274] The multi-AP cooperative transmission mode subfield is used to indicate a specific cooperative transmission mode corresponding to an operation based on multi-AP cooperation;
[0275] The multi-AP coordination mode subfield is used to indicate the coordination mode corresponding to the operation based on multi-AP coordination;
[0276] The collaborative AP set information subfield is used to indicate each AP device in the collaborative AP set;
[0277] The coordinated AP set information subfield is used to indicate each AP device in the coordinated AP set.
[0278] In some embodiments, the sending module is used to send a first sub-request to the second AP device when the second AP device is an AP device that performs multi-AP collaborative operations with the first AP device; the first sub-request is used to request the second AP device to establish a second service period within the BSS corresponding to the second AP device in the protected predetermined service period.
[0279] In some embodiments, the first sub-request includes second attribute information of the protected scheduled service period, and the second attribute information of the protected scheduled service period includes at least one of the following information:
[0280] The priority information of the first STA device, the cooperative AP set performing the multi-AP cooperative operation, and the specific cooperative transmission mode corresponding to the multi-AP cooperative operation.
[0281] In some embodiments, the sending module is configured to send a second sub-request to the second AP device if the second AP device is an AP device that performs a multi-AP coordination-based operation with the first AP device;
[0282] The second sub-request includes third attribute information of the protected scheduled service period, where the third attribute information of the protected scheduled service period includes at least one of the following information:
[0283] The priority information of the first STA device and the coordination mode corresponding to the operation based on multi-AP coordination.
[0284] Please refer to Figure 21, which shows a block diagram of a multi-access point-based operation device provided by an embodiment of the present application. The device has the function of implementing the steps performed by the first STA device in the above-mentioned multi-access point-based operation method. As shown in Figure 21, the device may include:
[0285] The receiving module 2101 is configured to receive a first frame; the first frame is configured to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device;
[0286] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
[0287] In some embodiments, the apparatus further comprises:
[0288] During the protected scheduled service period, accepting an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or,
[0289] In the protected scheduled service period, accepting an operation based on multi-AP coordination, the operation based on multi-AP coordination includes: giving priority to ensuring or only allowing the first AP device to exchange frames with the member sites of the protected scheduled service period including the first STA device, while the second AP device coordinates or limits the transmission of the site in the BSS where it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period including the first STA device; or
[0290] When the number of at least one second AP device is n, n≥2, during the protected predetermined service period, the multi-AP collaboration-based operation performed by the first AP device and some of the n second AP devices is accepted, and the multi-AP coordination-based operation performed by the first AP device and the other part of the n second AP devices is accepted.
[0291] In some embodiments, the specific cooperative transmission mode includes at least one of the following:
[0292] Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
[0293] In some embodiments, the apparatus further comprises:
[0294] The sending module is used to send a first request to the first AP device; the first request is used to request to establish the protected predetermined service period.
[0295] In some embodiments, the first request includes first attribute information of the protected predetermined service period.
[0296] In some embodiments, the first frame includes first attribute information of the protected predetermined service period.
[0297] In some embodiments, the first attribute information of the protected predetermined service period includes at least one of the following information:
[0298] A coordinated AP set performing multi-AP coordinated operations, a specific coordinated transmission mode, a coordinated AP set performing local multi-AP coordinated operations with the first AP device, and a coordination method corresponding to the multi-AP coordinated operations.
[0299] In some embodiments, the protected predetermined service period is a restricted target wake time R-TWT period.
[0300] In some embodiments, the first attribute information of the protected predetermined service period is set in the multi-AP operation information subfield contained in the broadcast TWT parameter set field.
[0301] In some embodiments, the broadcast TWT information subfield in the broadcast TWT parameter set domain includes a multi-AP operation information existence subfield; the parameter value of the multi-AP operation information existence subfield is used to indicate whether the multi-AP operation information subfield exists in the broadcast TWT parameter set domain;
[0302] In the case where the parameter value of the multi-AP operation information sub-domain is a first specified value, the broadcast TWT parameter set domain includes the multi-AP operation information sub-domain.
[0303] In some embodiments, the multi-AP operation information subfield includes at least one of the following subfields:
[0304] Multi-AP operation control subdomain, collaborative AP set information subdomain and coordinated AP set information subdomain;
[0305] The multi-AP operation control subdomain includes:
[0306] At least one of a multi-AP operation mode subfield, a priority subfield, a coordinated AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP coordinated transmission mode subfield, a multi-AP coordination mode subfield, and a reserved subfield;
[0307] The multi-AP operation mode subfield is used to indicate a multi-AP operation mode; the multi-AP operation mode includes an operation based on multi-AP collaboration and / or an operation based on multi-AP coordination;
[0308] The priority subfield is used to indicate the priority information of the first STA device;
[0309] The cooperative AP set information existence subfield is used to indicate whether the cooperative AP set information subfield exists;
[0310] The coordinated AP set information existence subfield is used to indicate whether the coordinated AP set information subfield exists;
[0311] The multi-AP cooperative transmission mode subfield is used to indicate a specific cooperative transmission mode corresponding to an operation based on multi-AP cooperation;
[0312] The multi-AP coordination mode subfield is used to indicate the coordination mode corresponding to the operation based on multi-AP coordination;
[0313] The collaborative AP set information subfield is used to indicate each AP device in the collaborative AP set;
[0314] The coordinated AP set information subfield is used to indicate each AP device in the coordinated AP set.
[0315] Please refer to Figure 22, which shows a block diagram of a multi-access point-based operation device provided by an embodiment of the present application. The device has the function of implementing the steps performed by the second AP device in the multi-access point-based operation method described above. As shown in Figure 22, the device may include:
[0316] An establishing module 2201 is configured to cooperate with a first AP device to establish a protected predetermined service period based on multi-AP operation for a first station STA device;
[0317] The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
[0318] In some embodiments, the apparatus further comprises: an operation module configured to:
[0319] During the protected scheduled service period, performing an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or,
[0320] During the protected scheduled service period, an operation based on multi-AP coordination is performed, and the operation based on multi-AP coordination includes: prioritizing or allowing only the first AP device to exchange frames with the member sites of the protected scheduled service period, including the first STA device, and at the same time, the second AP device coordinates or limits the transmission of the sites in the BSS in which it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period, including the first STA device.
[0321] In some embodiments, when performing multi-AP collaboration-based operations,
[0322] In the protected predetermined service period, a start time and an end time of a first service period in the BSS corresponding to the first AP device are the same as a start time and an end time of a second service period;
[0323] The second service period is a service period in the BSS of the second AP device corresponding to the protected predetermined service period.
[0324] In some embodiments, the specific cooperative transmission mode includes at least one of the following:
[0325] Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
[0326] In some embodiments, the operation module is used to send a second frame to the first AP device when competing for a transmission opportunity; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations within the protected predetermined service period.
[0327] In some embodiments, the operation module is used to receive a second frame sent by the second AP device; the second frame is used to trigger the first AP device and the second AP device to perform multi-AP collaboration-based operations within the protected predetermined service period.
[0328] In some embodiments, the apparatus further comprises:
[0329] A scheduling module is used to announce a quiet time interval when performing an operation based on multi-AP collaboration; the quiet time interval is used to shield the transmission operation of the second STA device that does not support the protected scheduled service period in the BSS corresponding to the second AP device within the protected scheduled service period.
[0330] In some embodiments, the second STA device is other than a specified type of STA device and does not support the protected predetermined service period;
[0331] The designated type of STA device includes at least one of an EHT STA device and a UHR STA device.
[0332] In some embodiments, when performing multi-AP coordination-based operations,
[0333] In the protected predetermined service period, the duration of the first service period in the BSS corresponding to the first AP device does not overlap with the duration of the third service period; or
[0334] In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device partially overlaps with a duration of a third service period;
[0335] The third service period is a predetermined service period in the BSS of the second AP device; the BSS of the second AP device is an overlapping basic service set (OBSS) of the BSS of the first AP device.
[0336] In some embodiments, when multi-AP collaborative operations are performed during the protected scheduled service period, the establishment module 2201 is used to send a second broadcast message for establishing a second service period; the second service period is a service period within the BSS corresponding to the second AP device in the protected scheduled service period.
[0337] In some embodiments, when performing multi-AP coordination-based operations during the protected scheduled service period, the device further includes: a sending module for sending a third broadcast message; the third broadcast message is used to coordinate or limit the transmission of sites in the BSS where the second AP device is located during the protected scheduled service period.
[0338] In some embodiments, the apparatus further comprises:
[0339] The receiving module is used to receive a second request sent by the first AP device; the second request is used to request collaboration with the first AP device to establish the protected predetermined service period.
[0340] In some embodiments, the receiving module is configured to receive a first sub-request sent by the first AP device when the second AP device is an AP device that performs a multi-AP collaborative operation with the first AP device;
[0341] The first sub-request includes second attribute information of the protected scheduled service period, where the second attribute information of the protected scheduled service period includes at least one of the following information:
[0342] The priority information of the first STA device, the cooperative AP set performing the multi-AP cooperative operation, and the specific cooperative transmission mode corresponding to the multi-AP cooperative operation.
[0343] In some embodiments, the receiving module is configured to receive a second sub-request sent by the first AP device when the second AP device is an AP device that performs a multi-AP coordination-based operation with the first AP device;
[0344] The second sub-request includes third attribute information of the protected scheduled service period, where the third attribute information of the protected scheduled service period includes at least one of the following information:
[0345] The priority information of the first STA device and the coordination mode corresponding to the operation based on multi-AP coordination.
[0346] In some embodiments, the protected predetermined service period is a restricted target wake time R-TWT period.
[0347] It should be noted that the device provided in the above embodiment only uses the division of the above-mentioned functional modules as an example to implement its functions. In actual applications, the above-mentioned functions can be assigned to different functional modules according to actual needs, that is, the content structure of the device can be divided into different functional modules to complete all or part of the functions described above.
[0348] Regarding the apparatus in the above embodiment, the specific manner in which each module performs operations has been described in detail in the embodiment of the method, and will not be elaborated here.
[0349] Please refer to FIG23 , which shows a schematic diagram of the structure of a computer device 2300 provided in one embodiment of the present application. The computer device 2300 may include: a processor 2301 , a receiver 2302 , a transmitter 2303 , a memory 2304 , and a bus 2305 .
[0350] The processor 2301 includes one or more processing cores. The processor 2301 executes various functional applications and information processing by running software programs and modules.
[0351] The receiver 2302 and the transmitter 2303 may be implemented as a communication component, which may be a communication chip, which may also be called a transceiver.
[0352] The memory 2304 is connected to the processor 2301 via a bus 2305 .
[0353] The memory 2304 may be used to store a computer program, and the processor 2301 may be used to execute the computer program to implement the various steps performed by the STAS device or the AP device in the above method embodiment.
[0354] In addition, memory 2304 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, including but not limited to: magnetic disk or optical disk, electrically erasable programmable read-only memory, erasable programmable read-only memory, static random access memory, read-only memory, magnetic memory, flash memory, and programmable read-only memory.
[0355] In an exemplary embodiment, the computer device includes a processor, a memory, and a transceiver (the transceiver may include a receiver and a transmitter, the receiver is used to receive information, and the transmitter is used to send information);
[0356] In one possible implementation, when the computer device is an AP device, and the AP device is the first AP device in each of the above method embodiments, the transceiver is used to send a first frame to establish a protected scheduled service period based on multi-AP operation for the first site STA device; wherein the protected scheduled service period based on multi-AP operation is a protected scheduled service period established by negotiation between the first AP device and at least one second AP device.
[0357] In one possible implementation, when the computer device is an AP device, and the AP device is the second AP device in each of the above method embodiments, the processor is configured to collaborate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first site STA device.
[0358] Among them, when the computer device is an AP device, the processor can be used to execute all or part of the steps performed by the first AP device or the second AP device in the embodiments shown in Figures 3 to 6 through the transceiver, which will not be repeated here.
[0359] In one possible implementation, when the computer device is a STA device and the STA device is the first STA device in each of the above method embodiments, the transceiver is used to receive a first frame; the first frame is used to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device.
[0360] Among them, when the computer device is a STA device, the processor can be used to execute all or part of the steps performed by the first STA device in the embodiment shown in Figure 4 or Figure 6 through the transceiver, which will not be repeated here.
[0361] The present application also provides a computer program product, comprising computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform each step of the method illustrated in Figures 3 to 6 above, as performed by the first STA device, the first AP device, or the second AP device.
[0362] The present application also provides a chip, which includes: a processor for calling and running a computer program from a memory, so that a computer device installed with the chip executes the various steps performed by the first STA device, the first AP device, or the second AP device in the methods shown in Figures 3 to 6 above.
[0363] The present application also provides a computer program, which is executed by a processor of a computer device, so that the computer device performs the steps performed by the first STA device, the first AP device, or the second AP device in the method shown in Figures 3 to 6 above.
Claims
1. An operation method based on multiple access points AP, characterized in that: The method is performed by a first AP device, and the method includes: Send a first frame to establish a protected scheduled service period based on multi-AP operation for a first site STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
2. The method according to claim 1, characterized in that The method further comprises: During the protected scheduled service period, performing an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or, During the protected scheduled service period, an operation based on multi-AP coordination is performed, where the operation based on multi-AP coordination includes: giving priority to ensuring or only allowing the first AP device to exchange frames with the member sites of the protected scheduled service period, including the first STA device, while the second AP device coordinates or limits the transmission of the sites in the BSS where it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period, including the first STA device; or When the number of at least one second AP device is n and n≥2, during the protected predetermined service period, multi-AP collaboration-based operations are performed with some of the n second AP devices, and multi-AP coordination-based operations are performed with the other part of the n second AP devices.
3. The method according to claim 2, characterized in that In the case of multi-AP collaborative operation, In the protected predetermined service period, a start time and an end time of a first service period in the BSS corresponding to the first AP device are the same as a start time and an end time of a second service period; The second service period is a service period within the BSS of the second AP device that performs the multi-AP collaboration-based operation with the first AP device in the protected predetermined service period.
4. The method according to claim 2 or 3, characterized in that The specific cooperative transmission mode includes at least one of the following: Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
5. The method according to any one of claims 2 to 4, characterized in that: The performing of the multi-AP collaboration-based operation during the protected predetermined service period includes: In case of competing for a transmission opportunity, a second frame is sent to the second AP device; the second frame is used to trigger the first AP device and the second AP device to perform an operation based on multi-AP collaboration within the protected predetermined service period.
6. The method according to any one of claims 2 to 4, characterized in that: The performing of the multi-AP collaboration-based operation during the protected predetermined service period includes: A second frame sent by the second AP device is received; the second frame is used to trigger the first AP device and the second AP device to perform an operation based on multi-AP collaboration within the protected predetermined service period.
7. The method according to any one of claims 2 to 6, characterized in that: In the case of performing multi-AP collaboration-based operations, the method further includes: Notification of a quiet time interval; the quiet time interval is used to shield the transmission operation of the second STA device in the BSS corresponding to the first AP device that does not support the protected scheduled service period within the protected scheduled service period.
8. The method according to claim 7, characterized in that The second STA device is other than a specified type of STA device and does not support the protected predetermined service period; The designated type of STA device includes at least one of an EHT STA device and a UHR STA device.
9. The method according to claim 2, characterized in that In the case of multi-AP coordination-based operations, In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device does not overlap with a duration of a third service period; or, In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device partially overlaps with a duration of a third service period; The third service period is a predetermined service period within the BSS of the second AP device that performs the multi-AP coordination-based operation with the first AP device; the BSS of the second AP device is an overlapping basic service set (OBSS) of the BSS of the first AP device.
10. The method according to any one of claims 2 to 9, characterized in that: The method further comprises: Receive a first request sent by the first STA device; the first request is used to request establishment of the protected predetermined service period.
11. The method according to claim 10, characterized in that The first request includes first attribute information of the protected predetermined service period.
12. The method according to any one of claims 2 to 9, characterized in that: The sending of the first frame includes: The first frame is sent to the first STA device; the first frame includes first attribute information of the protected predetermined service period.
13. The method according to any one of claims 2 to 12, characterized in that: The method further comprises: A second request is sent to the second AP device; the second request is used to request the second AP device to cooperate with the first AP device to establish the protected predetermined service period.
14. The method according to any one of claims 2 to 13, characterized in that: The method further comprises: A first service period in the protected predetermined service period corresponding to the first AP device's BSS is established.
15. The method according to claim 14, characterized in that The establishing of the protected predetermined service period, corresponding to a first service period in the BSS where the first device is located, includes: A first broadcast message for establishing the first service period is sent; the first broadcast message includes first attribute information of the protected predetermined service period.
16. The method according to claim 11, 12 or 15, characterized in that The first attribute information of the protected predetermined service period includes at least one of the following information: A coordinated AP set performing multi-AP coordinated operations, a specific coordinated transmission mode, a coordinated AP set performing local multi-AP coordinated operations with the first AP device, and a coordination method corresponding to the multi-AP coordinated operations.
17. The method according to claim 16, characterized in that The protected scheduled service period is a restricted target wake-up time R-TWT period.
18. The method according to claim 17, characterized in that The first attribute information of the protected predetermined service period is set in the multi-AP operation information subfield contained in the broadcast TWT parameter set field.
19. The method according to claim 18, characterized in that The broadcast TWT information subfield in the broadcast TWT parameter set domain includes a multi-AP operation information existence subfield; the parameter value of the multi-AP operation information existence subfield is used to indicate whether the multi-AP operation information subfield exists in the broadcast TWT parameter set domain; In the case where the parameter value of the multi-AP operation information sub-domain is a first specified value, the broadcast TWT parameter set domain includes the multi-AP operation information sub-domain.
20. The method according to claim 18 or 19, characterized in that The multi-AP operation information subfield contains at least one of the following subfields: Multi-AP operation control subdomain, collaborative AP set information subdomain and coordinated AP set information subdomain; The multi-AP operation control subdomain includes: At least one of a multi-AP operation mode subfield, a priority subfield, a coordinated AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP coordinated transmission mode subfield, a multi-AP coordination mode subfield, and a reserved subfield; The multi-AP operation mode subfield is used to indicate a multi-AP operation mode; the multi-AP operation mode includes an operation based on multi-AP collaboration and / or an operation based on multi-AP coordination; The priority subfield is used to indicate the priority information of the first STA device; The cooperative AP set information existence subfield is used to indicate whether the cooperative AP set information subfield exists; The coordinated AP set information existence subfield is used to indicate whether the coordinated AP set information subfield exists; The multi-AP cooperative transmission mode subfield is used to indicate a specific cooperative transmission mode corresponding to an operation based on multi-AP cooperation; The multi-AP coordination mode subfield is used to indicate the coordination mode corresponding to the operation based on multi-AP coordination; The collaborative AP set information subfield is used to indicate each AP device in the collaborative AP set; The coordinated AP set information subfield is used to indicate each AP device in the coordinated AP set.
21. The method according to claim 13, wherein The sending the second request to the second AP device includes: In the case that the second AP device is an AP device that performs multi-AP collaborative operations with the first AP device, a first sub-request is sent to the second AP device; the first sub-request is used to request the second AP device to establish a second service period within the BSS corresponding to the second AP device in the protected predetermined service period.
22. The method according to claim 21, characterized in that The first sub-request includes second attribute information of the protected scheduled service period, where the second attribute information of the protected scheduled service period includes at least one of the following information: The priority information of the first STA device, the cooperative AP set performing the multi-AP cooperative operation, and the specific cooperative transmission mode corresponding to the multi-AP cooperative operation.
23. The method according to claim 13, wherein The sending the second request to the second AP device includes: In a case where the second AP device is an AP device that performs a multi-AP coordination-based operation with the first AP device, sending a second sub-request to the second AP device; The second sub-request includes third attribute information of the protected scheduled service period, where the third attribute information of the protected scheduled service period includes at least one of the following information: The priority information of the first STA device and the coordination mode corresponding to the operation based on multi-AP coordination.
24. An operation method based on multiple access points AP, characterized in that: The method is performed by a first STA device, and the method includes: Receive a first frame; the first frame is used to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
25. The method according to claim 24, characterized in that The method further comprises: During the protected scheduled service period, accepting an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or, In the protected scheduled service period, accepting an operation based on multi-AP coordination, the operation based on multi-AP coordination includes: giving priority to ensuring or only allowing the first AP device to exchange frames with the member sites of the protected scheduled service period including the first STA device, while the second AP device coordinates or limits the transmission of the site in the BSS where it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period including the first STA device; or When the number of at least one second AP device is n, n≥2, during the protected predetermined service period, the multi-AP collaboration-based operation performed by the first AP device and some of the n second AP devices is accepted, and the multi-AP coordination-based operation performed by the first AP device and the other part of the n second AP devices is accepted.
26. The method according to claim 25, characterized in that The specific cooperative transmission mode includes at least one of the following: Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
27. The method according to claim 25 or 26, characterized in that The method further comprises: A first request is sent to the first AP device; the first request is used to request establishment of the protected predetermined service period.
28. The method according to claim 27, characterized in that The first request includes first attribute information of the protected predetermined service period.
29. The method according to any one of claims 25 to 28, characterized in that The first frame includes first attribute information of the protected predetermined service period.
30. The method according to claim 28 or 29, characterized in that The first attribute information of the protected predetermined service period includes at least one of the following information: A coordinated AP set performing multi-AP coordinated operations, a specific coordinated transmission mode, a coordinated AP set performing local multi-AP coordinated operations with the first AP device, and a coordination method corresponding to the multi-AP coordinated operations.
31. The method according to claim 30, wherein The protected scheduled service period is a restricted target wake-up time R-TWT period.
32. The method according to claim 31, characterized in that The first attribute information of the protected predetermined service period is set in the multi-AP operation information subfield contained in the broadcast TWT parameter set field.
33. The method according to claim 32, characterized in that The broadcast TWT information subfield in the broadcast TWT parameter set domain includes a multi-AP operation information existence subfield; the parameter value of the multi-AP operation information existence subfield is used to indicate whether the multi-AP operation information subfield exists in the broadcast TWT parameter set domain; In the case where the parameter value of the multi-AP operation information sub-domain is a first specified value, the broadcast TWT parameter set domain includes the multi-AP operation information sub-domain.
34. The method according to claim 32 or 33, characterized in that The multi-AP operation information subfield contains at least one of the following subfields: Multi-AP operation control subdomain, collaborative AP set information subdomain and coordinated AP set information subdomain; The multi-AP operation control subdomain includes: At least one of a multi-AP operation mode subfield, a priority subfield, a coordinated AP set information existence subfield, a coordinated AP set information existence subfield, a multi-AP coordinated transmission mode subfield, a multi-AP coordination mode subfield, and a reserved subfield; The multi-AP operation mode subfield is used to indicate a multi-AP operation mode; the multi-AP operation mode includes an operation based on multi-AP collaboration and / or an operation based on multi-AP coordination; The priority subfield is used to indicate the priority information of the first STA device; The cooperative AP set information existence subfield is used to indicate whether the cooperative AP set information subfield exists; The coordinated AP set information existence subfield is used to indicate whether the coordinated AP set information subfield exists; The multi-AP cooperative transmission mode subfield is used to indicate a specific cooperative transmission mode corresponding to an operation based on multi-AP cooperation; The multi-AP coordination mode subfield is used to indicate the coordination mode corresponding to the operation based on multi-AP coordination; The collaborative AP set information subfield is used to indicate each AP device in the collaborative AP set; The coordinated AP set information subfield is used to indicate each AP device in the coordinated AP set.
35. An operation method based on multiple access points AP, characterized in that: The method is performed by a second AP device, and the method includes: Cooperate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first site STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
36. The method according to claim 35, characterized in that The method further comprises: During the protected scheduled service period, performing an operation based on multi-AP collaboration; the operation based on multi-AP collaboration includes: preferentially ensuring or only allowing the first AP device and the second AP device to collaborate with the member stations of the protected scheduled service period, including the first STA device, to exchange frames through a specific collaborative transmission mode; or, During the protected scheduled service period, an operation based on multi-AP coordination is performed, and the operation based on multi-AP coordination includes: prioritizing or allowing only the first AP device to exchange frames with the member sites of the protected scheduled service period, including the first STA device, and at the same time, the second AP device coordinates or limits the transmission of the sites in the BSS in which it is located to protect the communication between the first AP device and the member sites of the protected scheduled service period, including the first STA device.
37. The method according to claim 36, wherein In the case of multi-AP collaborative operation, In the protected predetermined service period, a start time and an end time of a first service period in the BSS corresponding to the first AP device are the same as a start time and an end time of a second service period; The second service period is a service period in the BSS of the second AP device in the protected predetermined service period.
38. The method according to claim 36 or 37, characterized in that The specific cooperative transmission mode includes at least one of the following: Cooperative OFDMA, cooperative multi-user MIMO, cooperative spatial multiplexing, joint transmission, and cooperative beamforming.
39. The method according to any one of claims 36 to 38, characterized in that The performing of the multi-AP collaboration-based operation during the protected predetermined service period includes: In the case of competing for a transmission opportunity, a second frame is sent to the first AP device; the second frame is used to trigger the first AP device and the second AP device to perform an operation based on multi-AP collaboration within the protected predetermined service period.
40. The method according to any one of claims 36 to 38, characterized in that The performing of the multi-AP collaboration-based operation during the protected predetermined service period includes: A second frame sent by the second AP device is received; the second frame is used to trigger the first AP device and the second AP device to perform an operation based on multi-AP collaboration within the protected predetermined service period.
41. The method according to any one of claims 36 to 40, characterized in that In the case of performing multi-AP collaboration-based operations, the method further includes: Notification quiet time interval; the quiet time interval is used to shield the second AP device corresponding to the BSS, which does not support the transmission operation of the second STA device in the protected scheduled service period within the protected scheduled service period.
42. The method according to claim 41, wherein The second STA device is other than a specified type of STA device and does not support the protected predetermined service period; The designated type of STA device includes at least one of an EHT STA device and a UHR STA device.
43. The method according to claim 36, wherein In the case of multi-AP coordination-based operations, In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device does not overlap with a duration of a third service period; or, In the protected predetermined service period, a duration of a first service period in the BSS corresponding to the first AP device partially overlaps with a duration of a third service period; The third service period is a predetermined service period in the BSS of the second AP device; the BSS of the second AP device is an overlapping basic service set (OBSS) of the BSS of the first AP device.
44. The method according to any one of claims 36 to 43, characterized in that In the case where the protected scheduled service period is performed based on a multi-AP collaborative operation, the step of collaborating with the first AP device to establish a protected scheduled service period based on a multi-AP operation for the first station STA device includes: A second broadcast message for establishing a second service period is sent; the second service period is a service period in the BSS corresponding to the second AP device in the protected predetermined service period.
45. The method according to any one of claims 36 to 43, characterized in that In the case where the operation based on multi-AP coordination is performed during the protected predetermined service period, the method further includes: Sending a third broadcast message; the third broadcast message is used to coordinate or limit transmission of stations in the BSS where the second AP device is located within the protected predetermined service period.
46. The method according to any one of claims 36 to 45, characterized in that The method further comprises: A second request sent by the first AP device is received; the second request is used to request collaboration with the first AP device to establish the protected predetermined service period.
47. The method according to claim 46, wherein The receiving the second request sent by the first AP device includes: In a case where the second AP device is an AP device that performs a multi-AP collaborative operation with the first AP device, receiving a first sub-request sent by the first AP device; The first sub-request includes second attribute information of the protected scheduled service period, where the second attribute information of the protected scheduled service period includes at least one of the following information: The priority information of the first STA device, the cooperative AP set performing the multi-AP cooperative operation, and the specific cooperative transmission mode corresponding to the multi-AP cooperative operation.
48. The method according to claim 46, wherein The receiving the second request sent by the first AP device includes: In a case where the second AP device is an AP device that performs a multi-AP coordination-based operation with the first AP device, receiving a second sub-request sent by the first AP device; The second sub-request includes third attribute information of the protected scheduled service period, where the third attribute information of the protected scheduled service period includes at least one of the following information: The priority information of the first STA device and the coordination mode corresponding to the operation based on multi-AP coordination.
49. The method according to any one of claims 35 to 48, characterized in that The protected scheduled service period is a restricted target wake-up time R-TWT period.
50. An operating device based on multiple access points (AP), characterized in that: The device comprises: A sending module, configured to send a first frame to establish a protected predetermined service period based on multi-AP operation for a first station STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
51. An operating device based on multiple access points (AP), characterized in that: The device comprises: A receiving module, configured to receive a first frame; the first frame is used to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
52. An operating device based on multiple access points (AP), characterized in that: The device comprises: An establishing module, configured to cooperate with a first AP device to establish a protected predetermined service period based on multi-AP operation for a first station STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
53. An AP device, characterized in that: The AP device is implemented as a first AP device, and the AP device includes a processor, a memory, and a transceiver; The transceiver is configured to send a first frame to establish a protected predetermined service period based on multi-AP operation for a first station STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
54. A STA device, characterized in that: The STA device is implemented as a first STA device; the STA device includes a processor, a memory, and a transceiver; The transceiver is configured to receive a first frame; The first frame is used to indicate that the first AP device has established a protected predetermined service period based on multi-AP operation for the first STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one second AP device.
55. An AP device, characterized in that: The AP device is implemented as a second AP device, and the AP device includes a processor, a memory, and a transceiver; The processor is configured to cooperate with the first AP device to establish a protected predetermined service period based on multi-AP operation for the first station STA device; The protected predetermined service period based on multi-AP operation is a protected predetermined service period established through negotiation between the first AP device and at least one of the second AP devices.
56. A computer-readable storage medium, characterized in that The storage medium stores a computer program, which is used to be executed by a processor so that a computer device executes the method according to any one of claims 1 to 23, or the method according to any one of claims 24 to 34, or the method according to any one of claims 35 to 49.
57. A chip, characterized in that: include: A processor for calling and running a computer program from a memory so that a computer device equipped with the chip performs the method according to any one of claims 1 to 23, or the method according to any one of claims 24 to 34, or the method according to any one of claims 35 to 49.
58. A computer program product, characterized in that The computer program product includes computer instructions, which are stored in a computer-readable storage medium; the processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, so that the computer device performs the method according to any one of claims 1 to 23, or the method according to any one of claims 24 to 34, or the method according to any one of claims 35 to 49.
59. A computer program, characterized in that The computer program is executed by a processor of a computer device, so that the computer device performs the method according to any one of claims 1 to 23, or the method according to any one of claims 24 to 34, or the method according to any one of claims 35 to 49.
Citation Information
Patent Citations
EHT AP configured for multi-AP operations using coordinated announcement (COA) frame
EP3863361A1
Multiple access points coordination
US20210051722A1
Electronic device for alleviating signal interference with neighboring BSS and control method thereof
US20210410089A1
Communication apparatus and communication method for coordinated service periods
WO2022132030A1