IP Library Granted Patent US 11,470,643
Granted Patent B2
US 11,470,643 · App. 17/100,880 · Granted Oct 11, 2022

Wireless communication terminal and wireless communication method for random access-based uplink multi-user transmission

Inventors: Woojin Ahn (Gyeonggi-do, KR); Juhyung Son (Gyeonggi-do, KR); Jinsam Kwak (Gyeonggi-do, KR); Geonjung Ko (Gyeonggi-do, KR)
Assignees: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.; SK TELECOM CO., LTD.
H04W74/0816H04W74/08H04W74/0833H04W84/12H04W74/0808
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Quick Facts
Patent No.
US 11,470,643
App. No.
17/100,880
Granted
Oct 11, 2022
Kind
B2
Abstract

Provided are a wireless communication terminal including: a processor; and a communication unit, wherein the processor obtains a backoff counter for an OFDMA-based random access of the terminal, wherein the backoff counter is obtained within a range of a contention window for the uplink OFDMA-based random access, receives a trigger frame indicating an uplink multi-user transmission, when one or more resource unit(s) in which random access can be performed is indicated by the trigger frame, decrements the backoff counter based on a number of resource units(s) in which random access can be performed, and when the backoff counter is 0 or decremented to 0, performs an uplink multi-user transmission through a selected resource unit among the resource units(s) and a wireless communication method using the same.

Claims (65)

1. A wireless communication terminal, the terminal comprising:

a processor; and

a communication unit,

wherein the processor is configured to:

receive contention window information related to a contention window for performing an uplink orthogonal frequency division multiple access (OFDMA)-based random access(UORA) of the terminal,

wherein the contention window information includes a minimum value of the contention window, and

wherein the contention window is configured based on the minimum value,

select OFDMA random access backoff(OBO) counter within a range of the contention window, and

receive a trigger frame including resource allocation information,

wherein the resource allocation information is used to allocate one or more resources units,

wherein the OBO counter is decremented by a number of the one or more resource units, and

wherein the OBO counter is set to ‘0’ when a value of the OBO counter is smaller than the number of one or more resource units allocated based on the resource allocation information.

2. The wireless communication terminal of claim 1 ,

wherein an initial value of the contention window is set to the minimum value.

3. The wireless communication terminal of claim 1 , wherein the processor is further configured to:

select a resource unit among the one or more resource units, and

perform carrier sensing on a channel containing the selected resource unit when a specific field included in the trigger frame indicates performing the carrier sensing,

wherein the OBO counter is decremented by the number of the one or more resource units.

4. The wireless communication terminal of claim 3 ,

wherein a new OBO counter is determined within the range of the contention window before a next trigger frame is received when the channel including the selected resource unit for uplink multi-user transmission in response to the trigger frame among the one or more resource units is busy according to the carrier sensing and the OBO counter is 0 or decreased to 0.

5. The wireless communication terminal of claim 4 , wherein the processor is further configured to:

participate in a subsequent UORA using the new OBO counter,

wherein the uplink multi-user transmission does not performed through the selected resource unit when the channel is determined to be busy based on the carrier sensing, and

wherein the new OBO counter is randomly determined within the range of the contention window.

6. The wireless communication terminal of claim 5 ,

wherein the contention window for determining the new OBO counter has the same size as an existing contention window.

7. The wireless communication terminal of claim 3 ,

wherein the uplink multi-user transmission is performed based on the selected resource unit when the channel including the resource unit is idle according to the carrier sensing and the OBO counter is 0 or decremented to 0.

8. The wireless communication terminal of claim 3 ,

wherein the carrier sensing is performed during a SIFS time between the trigger frame and a PHY protocol data unit (PPDU) transmitted in response to the trigger frame.

9. The wireless communication terminal of claim 1 ,

wherein the OBO counter does not decrement when the trigger frame is received but there is no pending data to be transmitted to a base wireless communication terminal.

10. The wireless communication terminal of claim 1 ,

wherein the minimum value of the contention window is transmitted through a random access parameter set.

11. A wireless communication method of a wireless communication terminal, the method comprising:

receiving contention window information related to a contention window for performing an uplink orthogonal frequency division multiple access (OFDMA)-based random access(UORA) of the terminal,

wherein the contention window information includes a minimum value of the contention window, and

wherein the contention window is configured based on the minimum value; and

selecting OFDMA random access backoff(OBO) counter within a range of the contention window; and

receiving a trigger frame including resource allocation information,

wherein the resource allocation information is used to allocate one or more resources units,

wherein the OBO counter is decremented by a number of the one or more resource units, and

wherein the OBO counter is set to ‘0’ when a value of the OBO counter is smaller than the number of one or more resource units allocated based on the resource allocation information.

12. The wireless communication method of claim 11 ,

wherein an initial value of the contention window is set to the minimum value.

13. The wireless communication method of claim 11 , the method further comprising:

selecting a resource unit among the one or more resource units; and

performing carrier sensing on a channel containing the selected resource unit when a specific field included in the trigger frame indicates performing the carrier sensing,

wherein the OBO counter is decremented by the number of the one or more resource units.

14. The wireless communication method of claim 11 ,

wherein a new OBO counter is determined within the range of the contention window before a next trigger frame is received when the channel including the selected resource unit for uplink multi-user transmission in response to the trigger frame among the one or more resource units is busy according to the carrier sensing and the OBO counter is 0 or decreased to 0.

15. The wireless communication method of claim 14 , the method further comprising:

participating in a subsequent UORA using the new OBO counter,

wherein the uplink multi-user transmission does not performed through the selected resource unit when the channel is determined to be busy based on the carrier sensing, and

wherein the new OBO counter is randomly determined within the range of the contention window.

16. The wireless communication method of claim 15 ,

wherein the contention window for determining the new OBO counter has the same size as an existing contention window.

17. The wireless communication method of claim 13 ,

wherein the uplink multi-user transmission is performed based on the selected resource unit when the channel including the resource unit is idle according to the carrier sensing and the OBO counter is 0 or decremented to 0.

18. The wireless communication method of claim 13 ,

wherein the carrier sensing is performed during a SIFS time between the trigger frame and a PHY protocol data unit (PPDU) transmitted in response to the trigger frame.

19. The wireless communication method of claim 11 ,

wherein the OBO counter does not decrement when the trigger frame is received but there is no pending data to be transmitted to a base wireless communication terminal.

20. The wireless communication method of claim 11 ,

wherein the minimum value of the contention window is transmitted through a random access parameter set.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE AGREEMENT DATE OF THE EXCLUSIVE LICENSE NOVEMBER 1, 2022 WRITTEN IN THE RECORDED AGREEMENT SHOULD BE CORRECTED TO AUGUST 31, 2020. PREVIOUSLY RECORDED ON REEL 62152 FRAME 1. ASSIGNOR(S) HEREBY CONFIRMS THE EXCLUSIVE LICENSE. Recorded Feb 26, 2025
From: SK TELECOM CO., LTD.
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
Reel/Frame 070827/0861 →
LICENSE Recorded Dec 18, 2022
From: SK TELECOM CO., LTD.
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
Reel/Frame 062152/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2022
From: AHN, WOOJIN; SON, JUHYUNG; KWAK, JINSAM; KO, GEONJUNG
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.; SK TELECOM CO., LTD.
Reel/Frame 059577/0419 →
Priority Claims (3)
KR 10-2016-0057759 · May 11, 2016 · national
KR 10-2016-0117898 · Sep 13, 2016 · national
KR 10-2017-0002720 · Jan 9, 2017 · national
Continuity (3)
Continuation 16188274 · Nov 12, 2018
Continuation PCTKR2017004889 · May 11, 2017
Related Publication 20210076423A1 · Mar 11, 2021