IP Library › Granted Patent US 11,997,712
Granted Patent B2
US 11,997,712 · App. 17/823,311 · Granted May 28, 2024

Techniques of improving EDCA mechanism in spatial reuse

Inventors: Kaiying Lv (Guangdong, CN); Bo Sun (Guangdong, CN); Yonggang Fang (Guangdong, CN)
Assignee: ZTE Corporation
H04W74/02H04B17/318H04W52/245H04W52/246H04W74/0808H04W16/28H04W72/046H04W84/12
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Quick Facts
Patent No.
US 11,997,712
App. No.
17/823,311
Granted
May 28, 2024
Kind
B2
Abstract

A transmitting wireless device provides channel spatial reuse information to a receiving wireless device for the receiving wireless device to make a determination of how to contend the medium for spatial reuse transmission, when to transmit and what transmissions parameters to use for the transmission in the spatial reuse. A timer is designated to track the remaining time for inter-ESS and/or intra-ESS spatial reuse. The spatial reuse information may include fields indicative of color code identifying BSS, transmission power used, signal to noise ratio headroom available and so on. With the spatial reuse information, the wireless device can calculate the target transmit power for initiating spatial reuse transmission without interrupting the on-going transmission, perform EDCA in spatial reuse condition to assess the channel status for contending the medium over the on-going transmission(s), tracking the spatial reuse duration and initiate a new spatial reuse transmission over the on-going transmission without interruption.

Claims (30)

1. A method for wireless communication, comprising:

receiving, by a station configured with spatial reuse (SR), a first physical layer protocol data unit (PPDU) or part of the first PPDU from a first network device in a first spatial reuse group (SRG) of a first extended service set, the station being in a second SRG of a second extended service set,

starting, by the station, a first SR transmission period during which a first target transmit power is to be used for a SR transmission;

receiving a second PPDU or a part of the second PPDU from a second network device in the second SRG by the station;

starting, by the station, a second SR transmission period during which a second target transmit power is to be used for the SR transmission, wherein the first SR transmission period and the second SR transmission period overlap in time; and

performing, by the station, the SR transmission upon determining that a backoff timer reaches zero, the performing comprising using an adjusted transmit power that is a minimum of the first target transmit power and the second target transmit power.

2. The method of claim 1 , wherein the first target transmit power or the second target transmit power is determined based on a maximum value for an overlapping basic service set (OBSS) Preamble Detection (PD), a minimum value for the OB SS PD, and a reference transmit power value.

3. The method of claim 2 , wherein the maximum value for the OBSS PD is equal to −62 dBm.

4. The method of claim 2 , wherein the minimum value for the OB SS PD is equal to −82 dBm.

5. The method of claim 1 , wherein the adjusted transmit power is used for the SR transmission until an end of an SR transmission opportunity (TxOP).

6. A wireless station configured with Spatial Reuse (SR) in a second SRG of a second extended service set, comprising a processor that is configured to:

receive a first physical layer protocol data unit (PPDU) or part of the first PPDU from a first network device in a first spatial reuse group (SRG) of a first extended service set;

start a first SR transmission period in which a first target transmit power is to be used for a SR transmission;

receive a second PPDU or a part of the second PPDU from a second network device in the second SRG;

start a second SR transmission period in which a second target transmit power is to be used for the SR transmission, wherein the first SR transmission period and the second SR transmission period overlap in time;

perform the SR transmission upon determining that a backoff timer reaches zero, the performing comprising using an adjusted transmit power that is a minimum of the first target transmit power and the second target transmit power.

7. The wireless station of claim 6 , wherein the first target transmit power or the second target transmit power is determined based on a maximum value for an overlapping basic service set (OBSS) Preamble Detection (PD), a minimum value for the OB SS PD, and a reference transmit power value.

8. The wireless station of claim 7 , wherein the maximum value for the OBSS PD is equal to −62 dBm.

9. The wireless station of claim 7 , wherein the minimum value for the OBSS PD is equal to −82 dBm.

10. The wireless station of claim 7 , wherein the adjusted transmit power is used for the SR transmission until an end of an SR transmission opportunity (TxOP).

11. A non-transitory storage medium having code stored thereon, the code upon execution by a processor, causing the processor to:

receive a first physical layer protocol data unit (PPDU) or part of the first PPDU from a first network device in a first spatial reuse group (SRG) of a first extended service set;

start a first SR transmission period in which a first target transmit power is to be used for a SR transmission;

receive a second PPDU or a part of the second PPDU from a second network device in the second SRG;

start a second SR transmission period in which a second target transmit power is to be used for the SR transmission, wherein the first SR transmission period and the second SR transmission period overlap in time;

perform the SR transmission upon determining that a backoff timer reaches zero, the performing comprising using an adjusted transmit power that is a minimum of the first target transmit power and the second target transmit power.

12. The non-transitory storage medium of claim 11 , wherein the first target transmit power or the second target transmit power is determined based on a maximum value for an overlapping basic service set (OBSS) Preamble Detection (PD), a minimum value for the OBSS PD, and a reference transmit power value.

13. The non-transitory storage medium of claim 11 , wherein the maximum value for the OBSS PD is equal to −62 dBm.

14. The non-transitory storage medium of claim 11 , wherein the minimum value for the OBSS PD is equal to −82 dBm.

15. The non-transitory storage medium of claim 11 , wherein the adjusted transmit power is used for the SR transmission until an end of an SR transmission opportunity (TxOP).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2022
From: LV, KAIYING; SUN, BO; FANG, YONGGANG
To: ZTE CORPORATION
Reel/Frame 060951/0001 →
Priority Claims (3)
WO PCT/CN2016/101170 · Sep 30, 2016 · international
WO PCT/CN2016/103378 · Oct 26, 2016 · international
WO PCT/CN2016/000605 · Nov 3, 2016 · international
Continuity (3)
Continuation 16370865 · Mar 29, 2019
Continuation PCTCN2017105053 · Sep 30, 2017
Related Publication 20230037649A1 · Feb 9, 2023
Cited By (4)
US 12,363,546 US 12,532,271 US 12,563,506 US 12,641,638