IP Library Granted Patent US 11,770,732
Granted Patent B2
US 11,770,732 · App. 17/004,009 · Granted Sep 26, 2023

Link condition announcement method employed by wireless fidelity multi-link device and associated apparatus

Inventors: Chien-Fang Hsu (Hsinchu, TW); Yongho Seok (San Jose, CA); James Chih-Shi Yee (San Jose, CA)
Assignee: MEDIATEK INC.
H04W28/0236H04L5/0055H04W76/15H04W84/12
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Quick Facts
Patent No.
US 11,770,732
App. No.
17/004,009
Granted
Sep 26, 2023
Kind
B2
Abstract

A link condition announcement method is employed by a wireless fidelity (WiFi) multi-link device (MLD), and includes: obtaining information of a traffic condition of each of a plurality of links owned by the WiFi MLD according to traffic statistics of each of the plurality of links, and transmitting the information of the traffic condition of each of the plurality of links to another WiFi MLD that communicates with the WiFi MLD.

Claims (24)

1. A link condition announcement method employed by a wireless fidelity (WiFi) multi-link device (MLD) comprising:

obtaining information of a traffic condition of each of a plurality of links owned by the WiFi MLD according to traffic statistics of said each of the plurality of links; and

transmitting the information of the traffic condition of said each of the plurality of links to another WiFi MLD that communicates with the WiFi MLD, wherein information of traffic conditions of the plurality of links transmitted from the WiFi MLD to said another WiFi MLD comprises a plurality of values indicative of the traffic conditions of the plurality of links.

2. The link condition announcement method of claim 1 , wherein the WiFi MLD is an access point (AP), and said another WiFi MLD is a non-AP station (STA).

3. The link condition announcement method of claim 1 , wherein the traffic statistics of said each of the plurality of links comprise latency statistics.

4. The link condition announcement method of claim 3 , wherein the latency statistics are derived from overall latency, said overall latency comprises queuing latency and channel access latency, said queuing latency starts from an instant when a media access control service data unit (MSDU) enters a queue of an access category (AC) and ends at an instant when the MSDU enters an enhanced distributed channel access (EDCA) function and is ready to access a wireless medium (WM), and said channel access latency starts from an instant when the MSDU enters the EDCA function and is ready to access the WM and ends at an instant when the MSDU is sent out to the WM.

5. The link condition announcement method of claim 4 , wherein the instant when the MSDU is sent out to the WM is not confirmed as an effective end of the said channel access latency until an acknowledgment (ACK) frame indicative of successful transmission of the MSDU is received from said another WiFi MLD.

6. The link condition announcement method of claim 5 , wherein said overall latency further comprises ACK delay, and said ACK delay starts from the instant when the MSDU is sent out to the WM and ends at an instant when the ACK frame is received from said another WiFi MLD.

7. The link condition announcement method of claim 4 , wherein the MSDU is partitioned into a plurality of fragments for transmission, and said channel access latency starts from an instant when a first fragment of the MSDU enters the EDCA function and is ready to access the WM and ends at an instant when a last fragment of the MSDU is sent out to the WM.

8. The link condition announcement method of claim 3 , wherein the information of the traffic condition of said each of the plurality of links comprises at least one mean latency value.

9. The link condition announcement method of claim 3 , wherein the information of the traffic condition of said each of the plurality of links comprises at least one M th percentile latency value, where M is a positive integer smaller than 100.

10. The link condition announcement method of claim 3 , wherein the information of the traffic condition of said each of the plurality of links comprises percentage of latency data locates in each of a plurality of latency segments for a same access category (AC).

11. The link condition announcement method of claim 1 , wherein the traffic statistics of said each of the plurality of links comprise timeout dropped media access control service data unit (MSDU) statistics.

12. The link condition announcement method of claim 11 , wherein the information of the traffic condition of said each of the plurality of links comprises at least one mean MSDU timeout dropped rate.

13. The link condition announcement method of claim 1 , wherein the information of the traffic condition of said each of the plurality of links is carried by a beacon frame sent from the WiFi MLD.

14. The link condition announcement method of claim 1 , wherein the information of the traffic condition of said each of the plurality of links is carried by a response frame that is sent from the WiFi MLD in response to a request frame generated by said another WiFi MLD.

15. The link condition announcement method of claim 14 , wherein the request frame is a probe request frame, and the response frame is a probe response frame.

16. A wireless fidelity (WiFi) multi-link device (MLD) comprising:

a processing circuit, arranged to obtain information of a traffic condition of each of a plurality of links owned by the WiFi MLD according to traffic statistics of said each of the plurality of links; and

a transmit circuit, arranged to transmit the information of the traffic condition of said each of the plurality of links to another WiFi MLD that communicates with the WiFi MLD, wherein information of traffic conditions of the plurality of links transmitted from the WiFi MLD to said another WiFi MLD comprises a plurality of values indicative of the traffic conditions of the plurality of links.

17. The WiFi MLD of claim 16 wherein the WiFi MLD is an access point (AP), and said another WiFi MLD is a non-AP station (STA).

18. The WiFi MLD link of claim 16 , wherein the traffic statistics of said each of the plurality of links comprise latency statistics.

19. The WiFi MLD of claim 18 , wherein the latency statistics are derived from overall latency, said overall latency comprises queuing latency and channel access latency, said queuing latency starts from an instant when a media access control service data unit (MSDU) enters a queue of an access category (AC) and ends at an instant when the MSDU enters an enhanced distributed channel access (EDCA) function and is ready to access a wireless medium (WM), and said channel access latency starts from an instant when the MSDU enters the EDCA function and is ready to access the WM and ends at an instant when the MSDU is sent out to the WM.

20. The WiFi MLD of claim 19 , wherein said overall latency further comprises ACK delay, and said ACK delay starts from the instant when the MSDU is sent out to the WM and ends at an instant when an acknowledgment (ACK) frame indicative of successful transmission of the MSDU is received from said another WiFi MLD.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2020
From: HSU, CHIEN-FANG; SEOK, YONGHO; YEE, JAMES CHIH-SHI
To: MEDIATEK INC.
Reel/Frame 053608/0825 →
Continuity (2)
Provisional Application 62896639 · Sep 6, 2019
Related Publication 20210076249A1 · Mar 11, 2021