IP Library Granted Patent US 9,749,874
Granted Patent B2
US 9,749,874 · App. 13/943,872 · Granted Aug 29, 2017

Multi-band management of wireless relaying networks

Inventors: Shu Du (Milpitas, CA); Ning Zhang (Saratoga, CA); Zhen Xie (San Jose, CA); James Simon Cho (Mountain View, CA); Chin-Hung Chen (San Jose, CA); Kai Shi (San Jose, CA)
Assignee: QUALCOMM Incorporated
H04W16/26H04L45/304H04L47/24H04W28/0205H04W76/025H04W84/047H04W84/12H04W88/10
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,749,874
App. No.
13/943,872
Granted
Aug 29, 2017
Kind
B2
Abstract

Methods, systems, devices, and apparatuses are described for wireless communications in which first type of traffic may be transmitted from a gateway access point (AP) directly to a station. Beacon signals transmitted to the station are transmitted as part of the first type of traffic. A second type of traffic may be transmitted from the gateway AP to the station via at least one relay AP. The first type of traffic may include low-throughput traffic and may be transmitted over a long-range radio link (e.g., 2 GHz band link or sub-1 GHz band link). The second type of traffic may include high-throughput traffic and may be transmitted over at least one short-range radio link (e.g., 5 GHz band link). The gateway AP may receive low-throughput traffic directly from the station and high-throughput traffic from the station via the at least one relay AP.

Claims (136)

1. A method for wireless communications, comprising:

associating with a station to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from a gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

identifying traffic buffered at the gateway access point for the station as the beacon signals or the second type of traffic;

transmitting the traffic identified as the beacon signals from the gateway access point directly to the station; and

transmitting the traffic identified as the second type of traffic from the gateway access point to the station via the at least one relay access point.

2. The method of claim 1 , wherein:

transmitting the second type of traffic comprises transmitting high-throughput traffic.

3. The method of claim 1 , wherein transmitting the first type of traffic comprises transmitting the beacon signals over a long-range radio link.

4. The method of claim 3 , wherein the long-range radio link comprises a 2 GHz band link or a sub-1 GHz band link.

5. The method of claim 1 , wherein transmitting the second type of traffic comprises transmitting the second type of traffic over at least one short-range radio link.

6. The method of claim 5 , wherein the at least one short-range radio link comprises a 5 GHz band link.

7. The method of claim 1 , wherein the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic.

8. The method of claim 1 , wherein transmitting the second type of traffic comprises transmitting one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

9. The method of claim 1 , further comprising:

receiving the beacon signals at the gateway access point directly from the station over a long-range radio link; and

receiving high-throughput traffic at the gateway access point from the station via the at least one relay access point and over at least one short-range radio link.

10. A method for wireless communications, comprising:

associating with a gateway access point to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to a station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

receiving the beacon signals at the station directly from the gateway access point; and

receiving the second type of traffic at the station from the gateway access point via at least one relay access point, wherein the gateway access point has identified traffic buffered at the gateway access point for the station as beacon signals to transmit directly to the station or the second type of traffic to transmit to the station via the at least one relay access point.

11. The method of claim 10 , wherein:

receiving the second type of traffic comprises receiving high-throughput traffic.

12. The method of claim 10 , wherein receiving the first type of traffic comprises receiving the beacon signals over a long-range radio link.

13. The method of claim 12 , wherein the long-range radio link comprises a 2 GHz band link or a sub-1 GHz band link.

14. The method of claim 10 , wherein receiving the second type of traffic comprises receiving the second type of traffic over at least one short-range radio link.

15. The method of claim 14 , wherein the at least one short-range radio link comprises a 5 GHz band link.

16. The method of claim 10 , wherein the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic.

17. The method of claim 10 , wherein receiving the second type of traffic comprises receiving one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

18. The method of claim 10 , further comprising:

transmitting the beacon signals from the station directly to the gateway access point over a long-range radio link; and

transmitting the high-throughput traffic from the station to the gateway access point via the at least one relay access point and over at least one short-range radio link.

19. A device for wireless communications, comprising:

a gateway access point configured to:

associate with a station to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic

identify traffic buffered at the gateway access point for the station as the beacon signals or the second type of traffic;

transmit the traffic identified as the beacon signals from the gateway access point directly to the station; and

transmit the traffic identified as the second type of traffic from the gateway access point to the station via the at least one relay access point.

20. The device of claim 19 , wherein the gateway access point is configured to transmit the beacon signals directly to the station over a 2 GHz band link or a sub-1 GHz band link.

21. The device of claim 19 , wherein the gateway access point is configured to transmit the second type of traffic to the at least one relay access point over at least one 5 GHz band link.

22. The device of claim 19 , wherein:

the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic; and

the second type of traffic comprises one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

23. A device for wireless communications, comprising:

a station configured to:

associate with a gateway access point to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

receive the beacon signals at the station directly from the gateway access point; and

receive the second type of traffic at the station from the gateway access point via at least one relay access point, wherein the gateway access point has identified traffic buffered at the gateway access point for the station as beacon signals to transmit directly to the station or the second type of traffic to transmit to the station via the at least one relay access point.

24. The device of claim 23 , wherein the station is configured to receive the beacon signals directly from the gateway access point over a 2 GHz band link or a sub-1 GHz band link.

25. The device of claim 23 , wherein the station is configured to receive the second type of traffic from the gateway access point via the at least one relay access point and over at least one 5 GHz band link.

26. The device of claim 23 , wherein:

the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic; and

the second type of traffic comprises one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

27. A system for wireless communications, comprising:

a station;

a gateway access point communicatively coupled with the station, wherein the gateway access point is configured to

associate with the station to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

identify traffic buffered at the gateway access point for the station as the beacon signals or the second type of traffic; and

transmit the traffic identified as the beacon signals from the gateway access point directly to the station; and

the at least one relay access point communicatively coupled with the gateway access point and the station, the gateway access point being configured to

transmit the traffic identified as the second type of traffic to the station via the at least one relay access point and over at least one short-range radio link.

28. An apparatus for wireless communications, comprising:

means for associating with a station to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from a gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

means for identifying traffic buffered at the gateway access point for the station as the beacon signals or the second type of traffic;

means for transmitting the traffic identified as the beacon signals from the gateway access point directly to the station; and

means for transmitting the traffic identified as the second type of traffic from the gateway access point to the station via the at least one relay access point.

29. The apparatus of claim 28 , wherein:

the means for transmitting the second type of traffic comprises means for transmitting high-throughput traffic.

30. The apparatus of claim 28 , wherein the means for transmitting the beacon signals comprises means for transmitting the first type of traffic over a 2 GHz band link or a sub-1 GHz band link.

31. The apparatus of claim 28 , wherein the means for transmitting the second type of traffic comprises means for transmitting the second type over at least one 5 GHz band link.

32. The apparatus of claim 28 , wherein:

the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic; and

the means for transmitting the second type of traffic comprises means for transmitting one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

33. An apparatus for wireless communications, comprising:

means for associating with a gateway access point to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to a station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

means for receiving the beacon signals at the station directly from the gateway access point; and

means for receiving the second type of traffic at the station from the gateway access point via at least one relay access point, wherein the gateway access point has identified traffic buffered at the gateway access point for the station as beacon signals to transmit directly to the station or the second type of traffic to transmit to the station via the at least one relay access point.

34. The apparatus of claim 33 , wherein:

the means for receiving the second type of traffic comprises means for receiving high-throughput traffic.

35. The apparatus of claim 33 , wherein the means for receiving the first type of traffic comprises means for receiving the first type of traffic over a 2 GHz band link or a sub-1 GHz band link.

36. The apparatus of claim 33 , wherein the means for receiving the second type of traffic comprises means for receiving the second type over at least one 5 GHz band link.

37. The apparatus of claim 33 , wherein:

the first type of traffic comprises one or more of:

low bursts of broadcast traffic;

low bursts of multicast traffic; and

low bursts of unicast traffic; and

the means for receiving the second type of traffic comprises means for receiving one or more of:

high bursts of unicast data traffic;

high bursts of broadcast data traffic;

unicast traffic with low latency; and

broadcast traffic with low latency.

38. A computer program product, comprising:

a non-transitory computer-readable medium comprising:

code for causing at least one computer to associate with a station to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from a gateway access point to the station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

code for causing the at least one computer to identify traffic buffered at the gateway access point for the station as the beacon signals or the second type of traffic;

code for causing the at least one computer to transmit the traffic identified as the beacon signals from the gateway access point directly to the station; and

code for causing the at least one computer to transmit the traffic identified as the second type of traffic from the gateway access point to the station via the at least one relay access point.

39. A computer program product, comprising:

a non-transitory computer-readable medium comprising:

code for causing at least one computer to associate with a gateway access point to establish a first wireless link in a wireless local area network (WLAN) concurrently with a second wireless link in the WLAN, the first wireless link directly from the gateway access point to a station to transmit a first type of traffic comprising beacon signals, and the second wireless link between the gateway access point and the station via at least one relay access point in the WLAN to transmit a second type of traffic;

code for causing the at least one computer to receive the beacon signals at the station directly from the gateway access point; and

code for causing the at least one computer to receive the second type of traffic at the station from the gateway access point via at least one relay access point, wherein the gateway access point has identified traffic buffered at the gateway access point for the station as beacon signals to transmit directly to the station or the second type of traffic to transmit to the station via the at least one relay access point.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE FIFTH INVENTOR'S FIRST NAME PREVIOUSLY RECORDED ON REEL 031096 FRAME 0561. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 23, 2014
From: CHEN, CHIN-HUNG
To: QUALCOMM INCORPORATED
Reel/Frame 033390/0531 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2013
From: DU, SHU; ZHANG, NING; XIE, ZHEN; CHO, JAMES SIMON; CHEN, CHING-HUNG; SHI, KAI
To: QUALCOMM INCORPORATED
Reel/Frame 031096/0561 →
Continuity (1)
Related Publication 20150023245A1 · Jan 22, 2015