Multi-link communication method and multi-link communication apparatus
The multi-link communication method includes determining a first message frame on one link of multiple links, where the first message frame includes identification information for indicating that data is buffered for a device in a sleep state on at least one link of the multiple links, and a Tunneled Direct Link Setup (TDLS) function is supported on the at least one link; and sending the first message frame.
1 . A multi-link communication method, comprising:
determining a first message frame on one link of multiple links, wherein the first message frame comprises identification information for indicating that data is buffered for a device in a sleep state on at least one link of the multiple links, and a Tunneled Direct Link Setup (TDLS) function is supported on the at least one link; and
sending the first message frame, wherein
the identification information comprises a TDLS Peer Unscheduled-Automatic Power Save Delivery (U-APSD) (TPU) information element,
the TPU information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, and TPU buffer status information, and
the TPU buffer status information indicates buffer statuses for traffics of different access categories on a respective link.
2 . The multi-link communication method according to claim 1 , wherein
the identification information further comprises a Peer Traffic Indication (PTI) information element;
the PTI information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, a transmission identifier, and sequence number control information; and
the transmission identifier indicates a traffic buffered for the device in the sleep state on a respective link.
3 . The multi-link communication method according to claim 1 , wherein each basic service set identifier indicates an identifier of a basic service set to which an access point on a respective link belongs.
4 . The multi-link communication method according to claim 1 , further comprising at least one of:
sending a second message frame; or
receiving a third message frame, wherein
at least one of the second message frame and the third message frame comprises information identifying support for a multi-link communication.
5 . A multi-link communication method, comprising:
receiving a first message frame on one link of multiple links, wherein the first message frame comprises identification information for indicating that data is buffered for a device in a sleep state on at least one link of the multiple links, and a Tunneled Direct Link Setup (TDLS) function is supported on the at least one link; and
performing a communication operation based on the first message frame, wherein
the identification information comprises a TDLS Peer Unscheduled-Automatic Power Save Delivery (U-APSD) (TPU) information element,
the TPU information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, and TPU buffer status information, and
the TPU buffer status information indicates buffer statuses for traffics of different access categories on a respective link.
6 . The multi-link communication method according to claim 5 , wherein
the identification information further comprises a Peer Traffic Indication (PTI) information element,
the PTI information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, a transmission identifier, and sequence number control information, and
the transmission identifier indicates a traffic buffered for the device in the sleep state on a respective link.
7 . The multi-link communication method according to claim 5 , wherein each basic service set identifier indicates an identifier of a basic service set to which an access point on a respective link belongs.
8 . The multi-link communication method according to claim 5 , further comprising at least one of:
receiving a second message frame; or
sending a third message frame, wherein
at least one of the second message frame and the third message frame comprises information identifying support for a multi-link communication.
9 . An electronic device, comprising a memory, a processor, and a computer program stored on the memory and executable by the processor, wherein the processor is configured to, when executing the computer program, implement the multi-link communication method according to claim 5 .
10 . An electronic device, comprising a memory, a processor, and a computer program stored on the memory and executable by the processor, wherein the processor is configured to, when executing the computer program, implement a multi-link communication method, comprising:
determining a first message frame on one link of multiple links, wherein the first message frame comprises identification information for indicating that data is buffered for a device in a sleep state on at least one link of the multiple links, and a Tunneled Direct Link Setup (TDLS) function is supported on the at least one link; and
sending the first message frame, wherein
the identification information comprises a TDLS Peer Unscheduled-Automatic Power Save Delivery (U-APSD) (TPU) information element,
the TPU information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, and TPU buffer status information, and
the TPU buffer status information indicates buffer statuses for traffics of different access categories on a respective link.
11 . The electronic device according to claim 10 , wherein
the identification information further comprises a Peer Traffic Indication (PTI) information element;
the PTI information element comprises: a basic service set identifier or link identification corresponding to each link of the at least one link, a transmission identifier, and sequence number control information; and
the transmission identifier indicates a traffic buffered for the device in the sleep state on a respective link.
12 . The electronic device according to claim 10 , wherein each basic service set identifier indicates an identifier of a basic service set to which an access point on a respective link belongs.
13 . The electronic device according to claim 10 , wherein the multi-link communication method further comprises at least one of:
sending a second message frame; or
receiving a third message frame, wherein
at least one of the second message frame and the third message frame comprises information identifying support for a multi-link communication.