WO2024192587A1 - Procédé de communication, dispositif électronique et support de stockage - Google Patents
Procédé de communication, dispositif électronique et support de stockage Download PDFInfo
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- WO2024192587A1 WO2024192587A1 PCT/CN2023/082311 CN2023082311W WO2024192587A1 WO 2024192587 A1 WO2024192587 A1 WO 2024192587A1 CN 2023082311 W CN2023082311 W CN 2023082311W WO 2024192587 A1 WO2024192587 A1 WO 2024192587A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/14—Direct-mode setup
Definitions
- the embodiments of the present disclosure relate to the field of mobile communication technology. Specifically, the embodiments of the present disclosure relate to a communication method, an electronic device, and a storage medium.
- Wi-Fi Wireless Fidelity
- UHR Ultra High Reliability
- WLAN Wireless Local Area Networks
- SNR signal-to-noise ratio
- TDLS peer PSM TDLS peer Power Save Mode
- the disclosed embodiments provide a communication method, an electronic device, and a storage medium to provide a method for establishing a TDLS peer PSM mechanism.
- an embodiment of the present disclosure provides a communication method, which is applied to a first station device STA, and the method includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- an embodiment of the present disclosure further provides a communication method, which is applied to an access point device AP, and the method includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- an embodiment of the present disclosure provides a communication method, which is applied to a second station device STA, and the method includes:
- an embodiment of the present disclosure further provides an electronic device, where the electronic device is a first station device STA, and the electronic device includes:
- a determination module configured to determine a first wireless frame; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first sending module is used to send the first wireless frame under the second connection with the access point device, and instruct the access point device to forward the first wireless frame to the second STA.
- an embodiment of the present disclosure further provides an electronic device, wherein the electronic device is an access point device AP, and the electronic device includes:
- a first receiving module is configured to receive a first wireless frame under a second connection with a first station device STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- a forwarding module is used to forward the first wireless frame to a second STA.
- an embodiment of the present disclosure further provides an electronic device, where the electronic device is a second station device STA, and the electronic device includes:
- the second receiving module is used to receive a first wireless frame forwarded by an access point device AP; the first wireless frame is received by the AP under a second connection with the first STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel.
- the embodiments of the present disclosure also provide an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, one or more methods described in the embodiments of the present disclosure are implemented.
- the embodiments of the present disclosure further provide a computer-readable storage medium, on which a computer program is stored.
- a computer program is stored.
- the computer program is executed by a processor, one or more of the methods described in the embodiments of the present disclosure are implemented.
- the first STA sends a first wireless frame under the second connection with the AP, and requests the AP to forward the first wireless frame to the second STA, thereby implementing a TDLS peer PSM mechanism for establishing the first connection under the second connection; on the one hand, the TDLS peer PSM mechanism is established through the second connection, so that the first connection can quickly enter a power saving state; on the other hand, by forwarding the first wireless frame through the AP, the AP can understand whether each connection is in a power saving state, which is convenient for the AP to reasonably plan network resources for each connection.
- FIG1 is a flow chart of a communication method according to an embodiment of the present disclosure.
- FIG2 is a schematic diagram of a first example of an embodiment of the present disclosure
- FIG3 is a second flowchart of the communication method provided in an embodiment of the present disclosure.
- FIG4 is a third flowchart of the communication method provided in an embodiment of the present disclosure.
- FIG5 is a schematic diagram of a structure of an electronic device provided by an embodiment of the present disclosure.
- FIG6 is a second structural diagram of an electronic device provided in an embodiment of the present disclosure.
- FIG7 is a third structural diagram of an electronic device provided in an embodiment of the present disclosure.
- FIG. 8 is a fourth schematic diagram of the structure of the electronic device provided in an embodiment of the present disclosure.
- first, second, third, etc. may be used in the present disclosure to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other.
- first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information.
- word “if” used herein may be interpreted as "at the time of” or "when” or "in response to determining”.
- the embodiments of the present disclosure provide a communication method, an electronic device and a storage medium, for providing a method for establishing a TDLS peer PSM mechanism.
- the method and the device are based on the same application concept. Since the method and the device solve the problem in a similar principle, the implementation of the device and the method can refer to each other, and the repeated parts will not be repeated.
- an embodiment of the present disclosure provides a communication method.
- the method can be applied to a first station device (Station, STA);
- an access point (Access Point, AP) device is, for example, a device with a wireless to wired bridging function, and the AP is responsible for extending the services provided by the wired network to the wireless network;
- the STA is, for example, an electronic device with a wireless network access function, and provides a frame delivery (Frame Delivery) service to enable information to be transmitted.
- the method may include the following steps:
- Step 101 determine a first wireless frame; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel.
- TDLS technology allows two STAs in the same Basic Service Sets (BSS) to directly skip the AP to transmit data after establishing a TDLS link (TDLS Link). This allows them to be directly transmitted without being constrained by the AP and using the fastest rate standard supported by the two STAs. Direct transmission can be performed on the original channel or on a new extended channel. This can avoid data transmission delays caused by network congestion, which is of great significance for the transmission of low-latency services.
- BSS Basic Service Sets
- TDLS Link TDLS Link
- Direct transmission can be performed on the original channel or on a new extended channel. This can avoid data transmission delays caused by network congestion, which is of great significance for the transmission of low-latency services.
- a TDLS peer PSM mechanism is proposed. Specifically, the TDLS peer PSM mechanism is a power saving mechanism that can be used between TDLS peer STAs, and is based on periodic wake-up scheduling.
- the first STA A first radio frame is determined, where the first radio frame is, for example, a TDLS peer PSM request frame; the first radio frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, where the first connection is a TDLS channel, that is, the first STA, as a TDLS peer PSM initiator, requests to establish a TDLS peer PSM mechanism with the second STA (as a TDLS peer PSM responder).
- the first radio frame is, for example, a TDLS peer PSM request frame
- the first radio frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, where the first connection is a TDLS channel, that is, the first STA, as a TDLS peer PSM initiator, requests to establish a TDLS peer PSM mechanism with the second STA (as a TDLS peer PSM responder).
- the first STA may establish TDLS connections with multiple second STAs respectively.
- Step 102 Send the first wireless frame in a second connection with the access point device, and instruct the access point device to forward the first wireless frame to the second STA.
- the first STA sends the first wireless frame under the second connection with the AP, and requests the AP to forward the first wireless frame to the second STA; that is, the TDLS peer PSM mechanism of the first connection (TDLS connection) is established under the second connection; on the one hand, the first connection can quickly enter the power saving state.
- the first connection may be in the business data transmission state at the current moment.
- the TDLS peer PSM mechanism is established through the second connection, which can enable the first connection to quickly enter the power saving state without affecting the business data being transmitted; on the other hand, by forwarding the first wireless frame through the AP, the AP can understand whether each connection is in the power saving state, which is convenient for the AP to reasonably plan the network resources of each connection.
- AP and STA may be devices supporting multiple connections, for example, they may be represented as AP MLD and non-AP MLD, respectively; AP MLD may represent an access point supporting multiple connection communication functions, and non-AP MLD may represent a station supporting multiple connection communication functions.
- AP and STA are used as examples in the following description, but this does not constitute a limitation on the embodiments of the present disclosure.
- FIG. 2 shows an application scenario of the communication method provided by an embodiment of the present disclosure; wherein STA1 acts as a TDLS PEER PSM initiator, STA2 to STAn act as TDLS peer PSM responders, and STA1 and STA2 to STAn can respectively establish a TDLS connection (i.e., a first connection).
- STA1 acts as a TDLS PEER PSM initiator
- STA2 to STAn act as TDLS peer PSM responders
- STA1 and STA2 to STAn can respectively establish a TDLS connection (i.e., a first connection).
- STA1 first executes step 1 and sends a first wireless frame (e.g., a TDLS PEER PSM request frame) to the AP under the second connection.
- the first wireless frame indicates that the first STA requests to communicate with the second STA.
- a TDLS peer PSM mechanism is established under the first connection.
- the AP executes step 2 (2-1, 2-2, ... 2-n, each sub-step can be performed simultaneously or sequentially), and forwards the first wireless frame to STA2 to STAn respectively under the connection with each TDLS peer PSM responder, so that STA2 to STAn can each establish a TDLS peer PSM mechanism with STA1 respectively according to the first wireless frame.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame includes a Link Identifier information element
- connection identification information element includes:
- the Basic Service Sets identifies BSSID information, the address information of the TDLS initiator (TDLS initiator STA Address) of the first connection, and the address information of the TDLS responder (TDLS responder STA Address) of the first connection.
- connection identification information element As an example, the format of the connection identification information element is shown in Table 1 below:
- the TDLS initiator of the first connection is the STA that initiates the establishment of the first connection (hereinafter referred to as the initiator STA), and the TDLS responder of the first connection is the STA that responds to the establishment of the first connection (hereinafter referred to as the responder STA).
- the identifier of its action field is as follows As shown in Table 2:
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame includes a connection identification information element;
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the address information of both is the MAC address information of each under the first connection.
- the TDLS initiator of the first connection is a multi-connection device, for example, the initiator STA is a non-AP MLD, then the TDLS initiator address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS initiator of the first connection is not a multi-connection device, then the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection, that is, the MAC address of the initiator STA under the first connection;
- the TDLS responder of the first connection is a multi-connection device, for example, the responder STA is a non-AP MLD, and the TDLS responder address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS responder of the first connection is not a multi-connection device, and the TDLS responder address information is the MAC address information of the TDLS responder under the first connection, that is, the MAC address of the responder STA under the first connection.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame includes a connection identification information element;
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the BSSID information includes: a BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection, and the third connection is a connection for establishing the first connection (TDLS connection), for example, a connection between an initiating STA and an AP (that is, an AP corresponding to the third connection for establishing the first connection), or a connection between the AP and a responding STA. catch.
- TDLS connection for example, a connection between an initiating STA and an AP (that is, an AP corresponding to the third connection for establishing the first connection), or a connection between the AP and a responding STA. catch.
- the BSSID information includes the BSSID to which the STA belongs.
- a BSS can be composed of an AP and one or more STAs communicating with the AP.
- the BSSID to which the access point device belongs can be the MLD MAC address of the AP MLD in the BSS to which the access point device belongs.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame includes a connection identification information element;
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements; that is, the first wireless frame may include a connected wake-up schedule information element, or multiple connected wake-up schedule information elements; each wake-up schedule information element corresponds to a connection.
- connection identification information element As an example, the format of the connection identification information element is shown in Table 3 below:
- the Maximum Wake-up Window Duration field is set to the maximum duration of the wake-up window in microseconds.
- the Idle Count field is set to the number of consecutive wake-up windows in which no individually addressed frames are received from the TDLS peer STA before the TDLS peer STA deletes the wake-up schedule.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame includes a connection identification information element;
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements.
- the identifier of the wake up schedule information element is set to the value in the BSSID information in the corresponding connection identifier information element, that is, the BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first radio frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first radio frame includes a connection identification information element;
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information element corresponding to each of the wake-up schedule information elements.
- the wake up schedule information element includes a time synchronization function (TSF) parameter, which is used to perform time function synchronization on the corresponding connection; the TSF parameter is set to the TSF parameter value in the beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to the TSF parameter value of the connection that sends the TDLS establishment request frame.
- TSF time synchronization function
- the TDLS peer PSM responder can perform time synchronization based on the TSF parameter.
- the preset time difference between the first connection and the connection that sends the beacon is used to determine the time value of the first connection at the current moment; or, based on the TSF parameter value of the connection that sends the TDLS establishment request frame, the preset time difference between the first connection and the connection that sends the TDLS establishment request frame is used to determine the time value of the first connection at the current moment.
- An embodiment of the present disclosure provides a communication method, which is applied to a first STA and includes:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame is sent under a second connection with the access point device, and the access point device is instructed to forward the first wireless frame to the second STA.
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection information and the TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the BSSID information includes: a BSSID to which an access point device corresponding to a third connection belongs; and the third connection is a connection for establishing the first connection.
- the first wireless frame includes: one or more wake up schedule information elements, and the connection identification information element corresponding to each of the wake up schedule information elements.
- the identifier of the wake up schedule information element is set to the value in the BSSID information in the corresponding connection identifier information element.
- the wake up schedule information element includes a time synchronization function TSF parameter, and the TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- the first wireless frame includes a TDLS peer PSM request frame.
- the first STA sends a first wireless frame under the second connection with the AP, and requests the AP to forward the first wireless frame to the second STA, thereby implementing a TDLS peer PSM mechanism for establishing the first connection under the second connection; on the one hand, the TDLS peer PSM mechanism is established through the second connection, so that the first connection can quickly enter a power saving state; on the other hand, by forwarding the first wireless frame through the AP, the AP can understand whether each connection is in a power saving state, which is convenient for the AP to reasonably plan network resources for each connection.
- an embodiment of the present disclosure provides a communication method.
- the method may Applied to an access point device AP, the method may include the following steps:
- Step 301 receiving a first wireless frame under a second connection with a first station device STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel.
- the TDLS peer PSM mechanism is a power saving mechanism that can be used between TDLS peer STAs, and is based on periodic wake-up scheduling.
- the AP receives a first wireless frame, such as a TDLS peer PSM request frame; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel, that is, the first STA, as a TDLS peer PSM initiator, requests to establish a TDLS peer PSM mechanism with the second STA (as a TDLS peer PSM responder).
- a first wireless frame such as a TDLS peer PSM request frame
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection
- the first connection is a TDLS channel, that is, the first STA, as a TDLS peer PSM initiator, requests to establish a TDLS
- the first STA may establish TDLS connections with multiple second STAs respectively.
- Step 302 forward the first wireless frame to a second STA.
- the AP sends the first wireless frame under the connection with the second STA, that is, the first STA establishes a TDLS peer PSM mechanism of the first connection (TDLS connection) under the second connection through the AP; referring to the aforementioned first example, the AP executes step 2 (2-1, 2-2, ... 2-n, each sub-step can be performed simultaneously or sequentially), and forwards the first wireless frame to STA2 to STAn respectively under the connection with each TDLS peer PSM responder, so that STA2 to STAn can respectively establish a TDLS peer PSM mechanism with STA1 according to the first wireless frame.
- step 2 2-1, 2-2, ... 2-n, each sub-step can be performed simultaneously or sequentially
- the first connection can quickly enter the power saving state.
- the first connection may be in the business data transmission state at the current moment.
- the first connection can quickly enter the power saving state without affecting the business data being transmitted.
- the AP can understand whether each connection is in the power saving state, which is convenient for the AP to reasonably plan the network resources of each connection.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame is received under a second connection with a first station device STA; the first wireless The line frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, where the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information address information of the TDLS initiator (TDLS initiator STA Address) of the first connection, and address information of the TDLS responder (TDLS responder STA Address) of the first connection.
- the format of the connection identification information element is as shown in the aforementioned Table 1, the TDLS initiator of the first connection is the STA that initiates the establishment of the first connection (hereinafter referred to as the initiator STA), and the TDLS responder of the first connection is the STA that responds to the establishment of the first connection (hereinafter referred to as the responder STA).
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the respective address information is the MAC address information of the corresponding multi-connection device.
- the address information of both is the MAC address information of each under the first connection.
- the TDLS initiator of the first connection is a multi-connection device, for example, the initiator STA is a non-AP MLD, then the TDLS initiator address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS initiator of the first connection is not a multi-connection device, then the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection, that is, the MAC address of the initiator STA under the first connection;
- the TDLS responder of the first connection is a multi-connection device, for example, the responder STA is a non-AP MLD, and the TDLS responder address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS responder of the first connection is not a multi-connection device, and the TDLS responder address information is the MAC address information of the TDLS responder under the first connection, that is, the MAC address of the responder STA under the first connection.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the BSSID information includes: the BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection, and the third connection is a connection for establishing the first connection.
- the connection is, for example, a connection between an initiating STA and an AP (ie, the AP corresponding to the third connection for establishing the first connection), or a connection between the AP and a responding STA.
- the BSSID information includes the BSSID to which the STA belongs.
- a BSS may be composed of an AP and one or more STAs communicating with the AP.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first radio frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements. That is, the first radio frame may include a connection wake-up schedule information element, or multiple connection wake-up schedule information elements; each wake-up schedule information element corresponds to a connection.
- connection identification information element is as shown in Table 2 above, and the maximum wake-up window duration field is set to the maximum duration of the wake-up window in microseconds.
- the Idle Count field is set to the number of consecutive wake-up windows in which no individually addressed frames are received from the TDLS peer STA before the TDLS peer STA deletes the wake-up schedule.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame is received under a second connection with a first station device STA; the first wireless The line frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, where the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements.
- the identifier of the wake-up schedule information element is set to the value in the BSSID information in the corresponding connection identification information element, that is, the BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements.
- the wake-up schedule information elements include a time synchronization function TSF parameter, which is used for time function synchronization of the corresponding connection; the TSF parameter is set to the TSF parameter value in the beacon frame (beacon) broadcast by the BSSID in the corresponding connection identification information element, or is set to the TSF parameter value of the connection that sends the TDLS establishment request frame, and the TDLS peer PSM responder can perform time synchronization according to the TSF parameter.
- the first connection is connected to the sending beacon.
- the preset time difference between the connections determines the time value of the first connection at the current moment; or, based on the TSF parameter value of the connection that sends the TDLS establishment request frame, the preset time difference between the first connection and the connection that sends the TDLS establishment request frame determines the time value of the first connection at the current moment.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to an access point device AP.
- the method may include the following steps:
- the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the first radio frame is forwarded to a second STA.
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the BSSID information includes: a BSSID to which an access point device corresponding to a third connection belongs; and the third connection is a connection for establishing the first connection.
- the first wireless frame includes: one or more wake up schedule information elements, and the connection identification information element corresponding to each of the wake up schedule information elements.
- the identifier of the wake up schedule information element is set to the value in the BSSID information in the corresponding connection identifier information element.
- the wake up schedule information element includes a time synchronization function TSF parameter, and the TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- the first wireless frame includes a TDLS peer PSM request frame.
- the AP receives a first wireless frame under a second connection with a first STA, and forwards the first wireless frame to the second STA, thereby implementing a TDLS peer PSM mechanism for establishing the first connection under the second connection; on the one hand, the TDLS peer PSM mechanism is established through the second connection, so that the first connection can quickly enter a power saving state; on the other hand, by forwarding the first wireless frame through the AP, the AP can understand whether each connection is in a power saving state, thereby facilitating the AP to reasonably plan network resources for each connection.
- an embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- Step 401 receiving a first wireless frame forwarded by an access point device AP; the first wireless frame is received by the AP under a second connection with a first STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel.
- the TDLS peer PSM mechanism is a power saving mechanism that can be used between TDLS peer STAs, and it is based on periodic wake-up scheduling.
- the second STA receives a first radio frame forwarded by the AP, and the first radio frame is, for example, a TDLS peer PSM request frame; the first radio frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel, that is, the first STA, as a TDLS peer PSM initiator, requests to establish a TDLS peer PSM mechanism with the second STA (as a TDLS peer PSM responder).
- the first connection can quickly enter a power-saving state.
- the first connection may be in a service data transmission state at the current moment.
- the first connection can quickly enter a power-saving state without affecting the service data being transmitted; on the other hand, by forwarding the first radio frame by the AP, the AP can The AP can understand whether each connection is in a power saving state, so that the AP can reasonably plan the network resources for each connection.
- the first STA may establish TDLS connections with multiple second STAs respectively.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information address information of the TDLS initiator (TDLS initiator STA Address) of the first connection, and address information of the TDLS responder (TDLS responder STA Address) of the first connection.
- the format of the connection identification information element is as shown in the aforementioned Table 1, the TDLS initiator of the first connection is the STA that initiates the establishment of the first connection (hereinafter referred to as the initiator STA), and the TDLS responder of the first connection is the STA that responds to the establishment of the first connection (hereinafter referred to as the responder STA).
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the address information of both is the MAC address information of each under the first connection.
- the TDLS initiator of the first connection is a multi-connection device, for example, the initiator STA is a non-AP MLD, then the TDLS initiator address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS initiator of the first connection is not a multi-connection device, then the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection, that is, the MAC address of the initiator STA under the first connection;
- the TDLS responder of the first connection is a multi-connection device, for example, the responder STA is a non-AP MLD, and the TDLS responder address information is the MAC address information of the multi-connection device, that is, the MAC address of the non-AP MLD; the TDLS responder of the first connection is not a multi-connection device, and the TDLS responder address information is the MAC address information of the TDLS responder under the first connection, that is, the MAC address of the responder STA under the first connection.
- the present disclosure provides a communication method, which can be applied to a second The station device STA, the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the BSSID information includes: the BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection, and the third connection is a connection for establishing the first connection (TDLS connection), for example, a connection between an initiating STA and an AP (i.e., the AP corresponding to the third connection for establishing the first connection), or a connection between the AP and a responding STA.
- the BSSID information includes the BSSID to which the STA belongs.
- a BSS can be composed of an AP and one or more STAs communicating with the AP.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first radio frame includes: one or more wake up schedule information elements, and the connection identifier corresponding to each of the wake up schedule information elements. That is, the first radio frame may include a wake up schedule information element for a connection, or multiple wake up schedule information elements for connections; each wake up schedule information element corresponds to a connection.
- connection identification information element is as shown in Table 2 above, and the maximum wake-up window duration field is set to the maximum duration of the wake-up window in microseconds.
- the Idle Count field is set to the number of consecutive wake-up windows in which no individually addressed frames are received from the TDLS peer STA before the TDLS peer STA deletes the wake-up schedule.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information element corresponding to each of the wake-up schedule information elements.
- the identifier of the wake up schedule information element is set to the value in the BSSID information in the corresponding connection identifier information element, that is, the BSSID to which the access point device corresponding to the third connection belongs; the third connection is a connection for establishing the first connection.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the first wireless frame includes: one or more wake-up schedule information elements, and the connection identification information elements corresponding to each of the wake-up schedule information elements.
- the wake-up schedule information elements include a time synchronization function TSF parameter, which is used for time function synchronization of the corresponding connection; the TSF parameter is set to the TSF parameter value in the beacon frame (beacon) broadcast by the BSSID in the corresponding connection identification information element, or is set to the TSF parameter value of the connection that sends the TDLS establishment request frame, and the TDLS peer PSM responder can perform time synchronization according to the TSF parameter.
- the preset time difference between the first connection and the connection that sends the beacon is used to determine the time value of the first connection at the current moment; or, based on the TSF parameter value of the connection that sends the TDLS establishment request frame, the preset time difference between the first connection and the connection that sends the TDLS establishment request frame is used to determine the time value of the first connection at the current moment.
- the embodiment of the present disclosure provides a communication method.
- the method may be applied to a second station device STA.
- the method may include the following steps:
- the first radio frame includes a connection identification information element
- connection identification information element includes:
- Basic service set identifier BSSID information Basic service set identifier BSSID information, TDLS initiator address information of the first connection, and TDLS responder address information of the first connection.
- the TDLS initiator and the TDLS responder of the first connection are multi-connection devices
- the TDLS initiator address information is the MAC address information of the multi-connection device
- the TDLS responder address information is the MAC address information of the multi-connection device
- the TDLS initiator and/or the TDLS responder is not a multi-connection device
- the TDLS initiator address information is the MAC address information of the TDLS initiator under the first connection
- the TDLS responder address information is the MAC address information of the TDLS responder under the first connection.
- the BSSID information includes: a BSSID to which an access point device corresponding to a third connection belongs; and the third connection is a connection for establishing the first connection.
- the first wireless frame includes: one or more wake up schedule information elements, and the connection identification information element corresponding to each of the wake up schedule information elements.
- the identifier of the wake up schedule information element is set to the value in the BSSID information in the corresponding connection identifier information element.
- the wake up schedule information element includes a time synchronization function TSF parameter, and the TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- TSF parameter is set to a TSF parameter value in a beacon frame broadcast by the BSSID in the corresponding connection identification information element, or is set to a TSF parameter value of a connection that sends a TDLS establishment request frame.
- the first wireless frame includes a TDLS peer PSM request frame.
- the second STA receives the first wireless frame forwarded by the AP, and implements the TDLS peer PSM mechanism for establishing the first connection under the second connection; on the one hand, the TDLS peer PSM mechanism is established through the second connection, so that the first connection can quickly enter the power saving state; on the other hand, by forwarding the first wireless frame through the AP, the AP can understand whether each connection is in the power saving state, which is convenient for the AP to reasonably plan the network resources of each connection.
- the present disclosure implements The embodiment further provides an electronic device, the electronic device is a first station device STA, and the electronic device includes:
- a determination module 501 is used to determine a first wireless frame; the first wireless frame indicates that a first STA requests to establish a TDLS peer PSM mechanism with a second STA under a first connection, and the first connection is a TDLS channel;
- the first sending module 502 is configured to send the first radio frame in a second connection with the access point device, and instruct the access point device to forward the first radio frame to the second STA.
- the embodiment of the present disclosure further provides a communication device, which is applied to a first station device STA, and the device includes:
- a wireless frame determination module configured to determine a first wireless frame; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under a first connection, and the first connection is a TDLS channel;
- the first wireless frame sending module is used to send the first wireless frame under the second connection with the access point device, and instruct the access point device to forward the first wireless frame to the second STA.
- the device also includes other modules of the electronic device in the aforementioned embodiment, which will not be described in detail here.
- the embodiment of the present disclosure further provides an electronic device, the electronic device is a first station device STA, and the electronic device includes:
- the first receiving module 601 is used to receive a first wireless frame under a second connection with a first station device STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel;
- the forwarding module 602 is configured to forward the first radio frame to a second STA.
- the embodiment of the present disclosure further provides a communication device, which is applied to a first station device STA, and the device includes:
- a first wireless frame receiving module is configured to receive a first wireless frame in a second connection with a first station device STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA in the first connection, and the first connection is a TDLS channel;
- a wireless frame forwarding module is used to forward the first wireless frame to the second STA.
- the device also includes other modules of the electronic device in the aforementioned embodiment, which will not be described in detail here.
- the embodiment of the present disclosure further provides an electronic device, the electronic device is a first station device STA, and the electronic device includes:
- the second receiving module 701 is used to receive a first wireless frame forwarded by an access point device AP; the first wireless frame is received by the AP under a second connection with the first STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel.
- the embodiment of the present disclosure further provides a communication device, which is applied to a first station device STA, and the device includes:
- the second wireless frame receiving module is used to receive the first wireless frame forwarded by the access point device AP; the first wireless frame is received by the AP under the second connection with the first STA; the first wireless frame indicates that the first STA requests to establish a TDLS peer PSM mechanism with the second STA under the first connection, and the first connection is a TDLS channel.
- the device also includes other modules of the electronic device in the aforementioned embodiment, which will not be described in detail here.
- the embodiment of the present disclosure further provides an electronic device, as shown in FIG8 , the electronic device 800 shown in FIG8 may be a server, including: a processor 801 and a memory 803. The processor 801 and the memory 803 are connected, such as through a bus 802.
- the electronic device 800 may further include a transceiver 804. It should be noted that in actual applications, the transceiver 804 is not limited to one, and the structure of the electronic device 800 does not constitute a limitation on the embodiment of the present disclosure.
- the processor 801 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array) or other programmable logic devices. Transistor logic devices, hardware components or any combination thereof. It can implement or execute various exemplary logic blocks, modules and circuits described in conjunction with the disclosure of this disclosure. Processor 801 can also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of DSP and microprocessor, etc.
- the bus 802 may include a path for transmitting information between the above components.
- the bus 802 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc.
- the bus 802 may be divided into an address bus, a data bus, a control bus, etc.
- FIG8 is represented by only one thick line, but it does not mean that there is only one bus or one type of bus.
- the memory 803 can be a ROM (Read Only Memory) or other types of static storage devices that can store static information and instructions, a RAM (Random Access Memory) or other types of dynamic storage devices that can store information and instructions, or an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory) or other optical disk storage, optical disk storage (including compressed optical disk, laser disk, optical disk, digital versatile disk, Blu-ray disk, etc.), magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store the desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited to these.
- ROM Read Only Memory
- RAM Random Access Memory
- EEPROM Electrically Erasable Programmable Read Only Memory
- CD-ROM Compact Disc Read Only Memory
- optical disk storage including compressed optical disk, laser disk, optical disk, digital versatile disk, Blu-ray disk, etc.
- magnetic disk storage medium or other magnetic storage device or any other medium
- the memory 803 is used to store application code for executing the solution of the present disclosure, and the execution is controlled by the processor 801.
- the processor 801 is used to execute the application code stored in the memory 803 to implement the content shown in the above method embodiment.
- the electronic devices include, but are not limited to, mobile phones, laptop computers, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), vehicle-mounted terminals (such as vehicle-mounted navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc.
- PDAs personal digital assistants
- PADs tablet computers
- PMPs portable multimedia players
- vehicle-mounted terminals such as vehicle-mounted navigation terminals
- fixed terminals such as digital TVs, desktop computers, etc.
- the electronic device shown in FIG8 is only an example and should not bring any limitation to the functions and scope of use of the embodiments of the present disclosure.
- the server provided by the present disclosure may be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or may provide cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, Cloud servers for basic cloud computing services such as security services, CDN, and big data and artificial intelligence platforms.
- the terminal can be a smart phone, tablet computer, laptop computer, desktop computer, smart speaker, smart watch, etc., but is not limited to them.
- the terminal and the server can be directly or indirectly connected through wired or wireless communication, which is not limited in this disclosure.
- An embodiment of the present disclosure provides a computer-readable storage medium, on which a computer program is stored.
- the computer-readable storage medium is run on a computer, the computer can execute the corresponding contents of the aforementioned method embodiment.
- the computer-readable medium mentioned above in the present disclosure may be a computer-readable signal medium or a computer-readable storage medium or any combination of the above two.
- the computer-readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above.
- Computer-readable storage media may include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above.
- a computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, device or device.
- a computer-readable signal medium may include a data signal propagated in a baseband or as part of a carrier wave, which carries a computer-readable program code. Such a propagated data signal may take a variety of forms, including but not limited to an electromagnetic signal, an optical signal, or any suitable combination of the above.
- a computer-readable signal medium may also be other than a computer-readable storage medium. Any computer-readable medium that can send, propagate or transmit a program for use by or in conjunction with an instruction execution system, apparatus or device.
- the program code contained on the computer-readable medium can be transmitted using any appropriate medium, including but not limited to: wires, optical cables, RF (radio frequency), etc., or any suitable combination of the above.
- the computer-readable medium may be included in the electronic device, or may exist independently without being installed in the electronic device.
- the computer-readable medium carries one or more programs.
- the electronic device executes the method shown in the above embodiment.
- a computer program product or a computer program comprising computer instructions, the computer instructions being stored in a computer-readable storage medium.
- a processor of a computer device reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions, so that the computer device executes the methods provided in the above-mentioned various optional implementations.
- Computer program code for performing the operations of the present disclosure may be written in one or more programming languages, or a combination thereof, including object-oriented programming languages, such as Java, Smalltalk, C++, and conventional procedural programming languages, such as "C" or similar programming languages.
- the program code may be executed entirely on the user's computer, partially on the user's computer, as a separate software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server.
- the remote computer may be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or may be connected to an external computer (e.g., through the Internet using an Internet service provider).
- LAN local area network
- WAN wide area network
- Internet service provider e.g., AT&T, MCI, Sprint, EarthLink, MSN, GTE, etc.
- each box in the flowchart or block diagram may represent a module, a program segment, or a portion of code, which contains one or more executable instructions for implementing the specified logical functions.
- the functions marked in the boxes may also occur in an order different from that marked in the accompanying drawings. For example, two boxes represented in succession may actually be executed substantially in parallel, and they may sometimes be executed in the opposite order. It depends on the functions involved.
- each block in the block diagram and/or flow chart, and combinations of blocks in the block diagram and/or flow chart can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions.
- modules involved in the embodiments described in the present disclosure may be implemented by software or hardware.
- the name of a module does not limit the module itself in some cases.
- module A may also be described as "module A for performing operation B".
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Abstract
Les modes de réalisation de la présente divulgation se rapportent au domaine technique des communications mobiles. La demande concerne un procédé de communication, un dispositif électronique et un support de stockage. Le procédé de communication est appliqué à une première station (STA), et le procédé consiste à : déterminer une première trame radio, dans laquelle il est identifié que la première STA demande l'établissement d'un mécanisme PSM homologue TDLS avec une seconde STA lors d'une première connexion, et la première connexion est un canal TDLS ; et envoyer la première trame radio lors d'une seconde connexion avec un dispositif de point d'accès, et ordonner au dispositif de point d'accès de transférer la première trame radio à la seconde STA. Les modes de réalisation de la présente invention concernent un procédé d'établissement d'un mécanisme PSM homologue TDLS.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2023/082311 WO2024192587A1 (fr) | 2023-03-17 | 2023-03-17 | Procédé de communication, dispositif électronique et support de stockage |
| CN202380008621.1A CN119014118A (zh) | 2023-03-17 | 2023-03-17 | 通信方法、电子设备及存储介质 |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2023/082311 WO2024192587A1 (fr) | 2023-03-17 | 2023-03-17 | Procédé de communication, dispositif électronique et support de stockage |
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| WO2024192587A1 true WO2024192587A1 (fr) | 2024-09-26 |
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| PCT/CN2023/082311 Pending WO2024192587A1 (fr) | 2023-03-17 | 2023-03-17 | Procédé de communication, dispositif électronique et support de stockage |
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| CN (1) | CN119014118A (fr) |
| WO (1) | WO2024192587A1 (fr) |
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| US20210211871A1 (en) * | 2020-01-04 | 2021-07-08 | Nxp Usa, Inc. | Apparatus and method for multi-link management in multi-link communication systems |
| WO2023004643A1 (fr) * | 2021-07-28 | 2023-02-02 | 北京小米移动软件有限公司 | Procédé et dispositif de communication par des connexions multiples |
| WO2023010345A1 (fr) * | 2021-08-04 | 2023-02-09 | 北京小米移动软件有限公司 | Procédé et appareil de communication |
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2023
- 2023-03-17 WO PCT/CN2023/082311 patent/WO2024192587A1/fr active Pending
- 2023-03-17 CN CN202380008621.1A patent/CN119014118A/zh active Pending
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20110038291A1 (en) * | 2009-08-11 | 2011-02-17 | Lg Electronics Inc. | Apparatus and method for power save mode in wireless local area network |
| US20210211871A1 (en) * | 2020-01-04 | 2021-07-08 | Nxp Usa, Inc. | Apparatus and method for multi-link management in multi-link communication systems |
| WO2023004643A1 (fr) * | 2021-07-28 | 2023-02-02 | 北京小米移动软件有限公司 | Procédé et dispositif de communication par des connexions multiples |
| WO2023010345A1 (fr) * | 2021-08-04 | 2023-02-09 | 北京小米移动软件有限公司 | Procédé et appareil de communication |
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| CN119014118A (zh) | 2024-11-22 |
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