IP Library Granted Patent US 11,140,718
Granted Patent B2
US 11,140,718 · App. 16/595,405 · Granted Oct 5, 2021

Wireless communication terminal for multi-user uplink transmission, and wireless communication method

Inventors: Woojin Ahn (Seoul, KR); Yongho Kim (Incheon, KR); Jinsam Kwak (Gyeonggi-do, KR); Juhyung Son (Gyeonggi-do, KR)
Assignees: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.; SK TELECOM CO., LTD.
H04W74/0833H04W28/0278H04W52/0216H04W52/0219H04W52/0229H04W72/04H04W84/12Y02D30/70
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Quick Facts
Patent No.
US 11,140,718
App. No.
16/595,405
Granted
Oct 5, 2021
Kind
B2
Abstract

The present invention relates to a wireless communication terminal and a wireless communication method for efficiently scheduling simultaneous uplink transmissions of a plurality of terminals. To this end, provided are a wireless communication terminal, the terminal including: a transceiver; and a processor, wherein the processor receives, through the transceiver, a trigger frame transmitted by a base wireless communication terminal, and performs a multi-user uplink transmission based on the received trigger frame, wherein the trigger frame includes a predetermined field indicating whether an additional trigger frame is present or not, and a wireless communication method using the same.

Claims (52)

1. A base wireless communication terminal, comprising:

a transceiver; and

a processor,

wherein the processor is configured to:

transmit, through the transceiver, a first trigger frame, and

receive a multi-user uplink transmission in response to the first trigger frame,

wherein when the first trigger frame allocates one or more N resource unit(s) for a random access based multi-user uplink transmission, each terminal participating in the random access based multi-user uplink transmission decrements a backoff counter for the random access based multi-user uplink transmission by a maximum of N in response to the first trigger frame, and

wherein the random access based multi-user uplink transmission is performed in response to the first trigger frame by one or more terminals of which the backoff counter is decremented to 0.

2. The base wireless communication terminal of claim 1 , wherein the first trigger frame includes a predetermined field indicating whether a second trigger frame follows the first trigger frame within a predetermined period.

3. The base wireless communication terminal of claim 2 , wherein a state of a first terminal is determined based on a value of the predetermined field when the first trigger frame does not indicate uplink transmission of the first terminal.

4. The base wireless communication terminal of claim 3 , wherein an awake state of the first terminal is maintained when the predetermined field indicates that the second trigger frame follows the first trigger frame within the predetermined period, and

wherein the state of the first terminal is switched to a doze state when the predetermined field indicates that the second trigger frame does not follow the first trigger frame within the predetermined period.

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

transmit an additional trigger frame requesting a buffer status report of at least one terminal, and

receive buffer status information of each of the at least one terminal in response to the additional trigger frame.

6. The base wireless communication terminal of claim 5 , wherein the buffer status information of each of the at least one terminal includes at least one of identifier information of each of the at least one terminal, size information of data to be transmitted by each of the at least one terminal, and access category information of data to be transmitted by each of the at least one terminal.

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

transmitting a first trigger frame; and

receiving a multi-user uplink transmission in response to the first trigger frame,

wherein when the first trigger frame allocates one or more N resource unit(s) for a random access based multi-user uplink transmission, each terminal participating in the random access based multi-user uplink transmission decrements a backoff counter for the random access based multi-user uplink transmission by a maximum of N in response to the first trigger frame, and

wherein the random access based multi-user uplink transmission is performed in response to the first trigger frame by one or more terminals of which the backoff counter is decremented to 0.

8. The wireless communication method of claim 7 , wherein the first trigger frame includes a predetermined field indicating whether a second trigger frame follows the first trigger frame within a predetermined period.

9. The wireless communication method of claim 8 , wherein a state of a first terminal is determined based on a value of the predetermined field when the first trigger frame does not indicate uplink transmission of the first terminal.

10. The wireless communication method of claim 9 , wherein an awake state of the first terminal is maintained when the predetermined field indicates that the second trigger frame follows the first trigger frame within the predetermined period, and

wherein the state of the first terminal is switched to a doze state when the predetermined field indicates that the second trigger frame does not follow the first trigger frame within the predetermined period.

11. The wireless communication method of claim 7 , the method further comprising:

transmitting an additional trigger frame requesting a buffer status report of at least one terminal; and

receiving buffer status information of each of the at least one terminal in response to the additional trigger frame.

12. The wireless communication method of claim 11 , wherein the buffer status information of each of the at least one terminal includes at least one of identifier information of each of the at least one terminal, size information of data to be transmitted by each of the at least one terminal, and access category information of data to be transmitted by each of the at least one terminal.

13. A wireless communication terminal, comprising:

a transceiver; and

a processor,

wherein the processor is configured to:

receive, through the transceiver, a first trigger frame, and

perform a multi-user uplink transmission in response to the first trigger frame,

wherein when the first trigger frame allocates one or more N resource unit(s) for a random access based multi-user uplink transmission and the terminal participates in the random access based multi-user uplink transmission, the processor is further configured to:

decrement a backoff counter for the random access based multi-user uplink transmission by a maximum of N in response to the first trigger frame, and

perform the random access based multi-user uplink transmission in response to the first trigger frame when the backoff counter is decremented to 0.

14. The wireless communication terminal of claim 13 , wherein the first trigger frame includes a predetermined field indicating whether a second trigger frame follows the first trigger frame within a predetermined period.

15. The wireless communication terminal of claim 14 , wherein a state of the terminal is determined based on a value of the predetermined field when the first trigger frame does not indicate uplink transmission of the terminal.

16. The wireless communication terminal of claim 15 , wherein an awake state of the terminal is maintained when the predetermined field indicates that the second trigger frame follows the first trigger frame within the predetermined period, and

wherein the state of the terminal is switched to a doze state when the predetermined field indicates that the second trigger frame does not follow the first trigger frame within the predetermined period.

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

receiving a first trigger frame; and

performing a multi-user uplink transmission in response to the first trigger frame,

wherein when the first trigger frame allocates one or more N resource unit(s) for a random access based multi-user uplink transmission and the terminal participates in the random access based multi-user uplink transmission, the method further comprising:

decrementing a backoff counter for the random access based multi-user uplink transmission by a maximum of N in response to the first trigger frame; and

performing the random access based multi-user uplink transmission in response to the first trigger frame when the backoff counter is decremented to 0.

18. The wireless communication method of claim 17 , wherein the first trigger frame includes a predetermined field indicating whether a second trigger frame follows the first trigger frame within a predetermined period.

19. The wireless communication method of claim 18 , wherein a state of the terminal is determined based on a value of the predetermined field when the first trigger frame does not indicate uplink transmission of the terminal.

20. The wireless communication method of claim 19 , wherein an awake state of the terminal is maintained when the predetermined field indicates that the second trigger frame follows the first trigger frame within the predetermined period, and

wherein the state of the terminal is switched to a doze state when the predetermined field indicates that the second trigger frame does not follow the first trigger frame within the predetermined period.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2020
From: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.; SK TELECOM CO., LTD.
Reel/Frame 051726/0672 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2020
From: AHN, WOOJIN; KIM, YONGHO; KWAK, JINSAM; SON, JUHYUNG
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
Reel/Frame 051622/0471 →
Priority Claims (3)
KR 10-2015-0022343 · Feb 13, 2015 · national
KR 10-2015-0085453 · Jun 16, 2015 · national
KR 10-2015-0101502 · Jul 17, 2015 · national
Continuity (3)
Continuation 15676985 · Aug 14, 2017
Continuation PCTKR2016001515 · Feb 15, 2016
Related Publication 20200068618A1 · Feb 27, 2020