IP Library Granted Patent US 12,149,354
Granted Patent B2
US 12,149,354 · App. 18/206,081 · Granted Nov 19, 2024

Wireless communication method and wireless communication terminal for coexistence with legacy wireless communication terminal

Inventors: Geonjung Ko (Gyeonggi-do, KR); Jinsam Kwak (Gyeonggi-do, KR); Juhyung Son (Gyeonggi-do, KR)
Assignee: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
H04L1/0079H04L5/0046H04L5/0048H04L5/0053H04L5/0092H04L27/18H04L27/2602H04L27/2603H04L27/2613H04L69/18H04L69/323H04L1/08H04L27/26025H04L27/26132H04L27/26136H04W80/045H04W84/12
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Quick Facts
Patent No.
US 12,149,354
App. No.
18/206,081
Granted
Nov 19, 2024
Kind
B2
Abstract

A wireless communication terminal for wireless communication is disclosed. The wireless communication terminal includes: a transceiver; and a processor. The processor is configured to transmit a non-legacy physical layer frame including a legacy signaling field including information decodable by a legacy wireless communication terminal by using the transceiver.

Claims (155)

1. A wireless communication terminal that communicates wirelessly, the wireless communication terminal comprising:

a transceiver; and

a processor,

wherein the processor is configured to:

receive a non-legacy physical layer frame by using the transceiver,

obtain a legacy signaling field including information decodable by a legacy wireless communication terminal from the non-legacy physical layer frame,

obtain length information indicating information on a duration of the non-legacy physical layer frame, from the legacy signaling field,

determine a format of the non-legacy physical layer frame based on a modulation method of a third symbol after the legacy signaling field and a remaining value obtained by dividing the length information by a data size transmittable by one symbol of a legacy physical layer frame, wherein the modulation method is Binary Phase Shift Keying (BPSK) or Quadrature Binary Phase Shift Keying (QBPSK), and

determine a number of symbols of data of the non-legacy physical layer frame according to a following equation when the remaining value is non-zero,

N

SYM

=

(

L_LENGTH

+

m

+

3

D

size

×

4

-

T

HE_PREAMBLE

)

/

T

SYM

-

b

PE_Disambiguity

where └x┘ denotes a largest integer less than or equal to x,

L_LENGTH denotes the length information,

m denotes a value equal to a value obtained by subtracting the remaining value from the data size transmittable by one symbol of the legacy physical layer frame,

D size denotes the data size transmittable by one symbol of the legacy physical layer frame,

b PE_Disambiguity denotes a value of PE (packet extension) Disambiguity field,

T HE_PREAMBLE denotes a duration of a non-legacy preamble of the non-legacy physical layer frame,

T SYM denotes a duration of one symbol of the data of the non-legacy physical layer frame,

wherein the PE Disambiguity field is set based on the duration of one symbol of the data of the non-legacy physical layer frame and an increment of duration to set a value of the length information based on a duration of one symbol of the legacy physical layer frame.

2. The wireless communication terminal of claim 1 , wherein the processor is configured to obtain a duration of a packet extension which is a padding of the non-legacy physical layer frame, according to a following equation when the remaining value is non-zero,

T

PE

=

(

L_LENGTH

+

m

+

3

D

size

×

4

-

T

HE_PREAMBLE

)

-

N

SYM

×

T

SYM

4

×

4

where └x┘ denotes a largest integer less than or equal to x,

L_LENGTH denotes the length information,

m denotes the value equal to the value obtained by subtracting the remaining value from the data size transmittable by one symbol of the legacy physical layer frame,

D size denotes the data size transmittable by one symbol of the legacy physical layer frame,

T HE_PREAMBLE denotes the duration of the non-legacy preamble of the non-legacy physical layer frame,

T SYM denotes the duration of one symbol of the data of the non-legacy physical layer frame.

3. The wireless communication terminal of claim 2 , wherein the data size transmittable by one symbol of the legacy physical layer frame is 3 octets when a data rate of the legacy physical layer frame is 6 Mbps.

4. The wireless communication terminal of claim 1 , wherein the increment of duration is a value obtained by multiplying a difference between a value obtained by performing a ceiling operation on a value obtained by dividing the duration of the non-legacy physical layer frame after the legacy signaling field by the duration of one symbol of the legacy physical layer frame and the value obtained by dividing the duration of the non-legacy physical layer frame after the legacy signaling field by the duration of one symbol of the legacy physical layer frame by the duration of one symbol of the legacy physical layer frame.

5. A method for operating a wireless communication terminal that communicates wirelessly, the method comprising:

receiving a non-legacy physical layer frame by using the transceiver,

obtaining a legacy signaling field including information decodable by a legacy wireless communication terminal from the non-legacy physical layer frame,

obtaining length information indicating information on a duration of the non-legacy physical layer frame after a legacy signaling field, from the legacy signaling field,

determining a format of the non-legacy physical layer frame based on a modulation method of a third symbol after the legacy signaling field and a remaining value obtained by dividing the length information by a data size transmittable by one symbol of a legacy physical layer frame, wherein the modulation method is Binary Phase Shift Keying (BPSK) or Quadrature Binary Phase Shift Keying (QBPSK), and

determining a number of symbols of the data of the non-legacy physical layer frame according to a following equation when the remaining value is non-zero,

N

SYM

=

(

L_LENGTH

+

m

+

3

D

size

×

4

-

T

HE_PREAMBLE

)

/

T

SYM

-

b

PE_Disambiguity

where denotes a largest integer less than or equal to x,

L_LENGTH denotes the length information,

m denotes a value equal to a value obtained by subtracting the remaining value from the data size transmittable by one symbol of the legacy physical layer frame,

D size denotes the data size transmittable by one symbol of the legacy physical layer frame,

b PE_Disambiguity denotes a value of PE (packet extension) Disambiguity field,

T HE_PREAMBLE denotes a duration of a non-legacy preamble of the non-legacy physical layer frame,

T SYM denotes a duration of one symbol of the data of the non-legacy physical layer frame,

wherein the PE Disambiguity field is set based on the duration of one symbol of the data of the non-legacy physical layer frame and an increment of duration to set a value of the length information based on a duration of one symbol of legacy physical layer frame.

6. The method of claim 5 , the method further comprises obtaining a duration of a packet extension which is a padding of the non-legacy physical layer frame, according to a following equation when the remaining value is non-zero,

T

PE

=

(

L_LENGTH

+

m

+

3

D

size

×

4

-

T

HE_PREAMBLE

)

-

N

SYM

×

T

SYM

4

×

4

where denotes a largest integer less than or equal to x,

L_LENGTH denotes the length information,

m denotes the value equal to the value obtained by subtracting the remaining value from the data size transmittable by one symbol of the legacy physical layer frame,

D size denotes the data size transmittable by one symbol of the legacy physical layer frame,

T HE_PREAMBLE denotes the duration of the non-legacy preamble of the non-legacy physical layer frame,

T SYM denotes the duration of one symbol of the data of the non-legacy physical layer frame.

7. The method of claim 6 , wherein the data size transmittable by one symbol of the legacy physical layer frame is 3 octets when a data rate of the legacy physical layer frame is 6 Mbps.

8. The method of claim 5 , wherein the increment of duration is a value obtained by multiplying a difference between a value obtained by performing a ceiling operation on a value obtained by dividing the duration of the non-legacy physical layer frame after the legacy signaling field by the duration of one symbol of the legacy physical layer frame and the value obtained by dividing the duration of the non-legacy physical layer frame after the legacy signaling field by the duration of one symbol of the legacy physical layer frame by the duration of one symbol of the legacy physical layer frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2024
From: SK TELECOM CO., LTD.
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
Reel/Frame 067790/0700 →
Priority Claims (2)
KR 10-2015-0092525 · Jun 29, 2015 · national
KR 10-2015-0117434 · Aug 20, 2015 · national
Continuity (6)
Continuation 17408296 · Aug 20, 2021
Continuation 16835305 · Mar 31, 2020
Continuation 16396635 · Apr 27, 2019
Continuation 15854662 · Dec 26, 2017
Continuation PCTKR2016006976 · Jun 29, 2016
Related Publication 20230318744A1 · Oct 5, 2023