IP Library › Granted Patent US 12,177,014
Granted Patent B2
US 12,177,014 · App. 17/756,748 · Granted Dec 24, 2024

Method and apparatus for receiving PPDU in wireless LAN system

Inventors: Eunsung Park (Seoul, KR); Jinyoung Chun (Seoul, KR); Jinsoo Choi (Seoul, KR); Dongguk Lim (Seoul, KR); Jinmin Kim (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04L1/0068H04L5/0044H04W84/12
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Quick Facts
Patent No.
US 12,177,014
App. No.
17/756,748
Granted
Dec 24, 2024
Kind
B2
Abstract

A method and apparatus for receiving a PPDU in a wireless LAN system are proposed. Specifically, a receiving STA receives a PPDU from a transmitting STA through a first band, and decodes the PPDU. The PPDU comprises first to third fields. The first field comprises information on the bandwidth of the first band. The second field comprises information on whether preamble puncturing is performed in the first band. The third field comprises information about a pattern of preamble puncturing.

Claims (50)

1. A method in a wireless Local Area Network (LAN) system, the method comprising:

receiving, by a receiving station (STA), a Physical Protocol Data Unit (PPDU) from a transmitting STA; and

decoding, by the receiving STA, the PPDU,

wherein the PPDU includes a Universal-Signal (U-SIG) field and an Extremely High Throughput-Signal (EHT-SIG) field,

wherein the U-SIG field includes first information on a bandwidth of the PPDU, second information on a PPDU type, whether the PPDU is single user (SU) PPDU or multi user (MU) PPDU and third information

on a pattern of a preamble puncturing for each 80 MHz frequency subblock,

wherein the each 80 MHz frequency subblock includes first to fourth 20 MHz channels,

wherein based on the PPDU being the MU PPDU, the EHT-SIG field includes first signal information for the first 20 MHz channel and second signal information for the second 20 MHz channel, the first signal information for the first 20 MHz channel is duplicated for the third 20 MHz channel, and the second signal information for the second 20 MHz channel is duplicated for the fourth 20 MHz channel, and

wherein based on the PPDU being the SU PPDU, the EHT-SIG field includes third signal information duplicated on every 20 MHz channel of the first to fourth 20 MHz channels.

2. The method of claim 1 , wherein the PPDU further includes a data field,

wherein the data field is received through a resource unit determined based on the U-SIG and the EHT-SIG field.

3. The method of claim 1 , wherein the information on the bandwidth of PPDU consists of 3 bits,

wherein the bandwidth of the PPDU is determined as one of 20 MHZ, 40 MHz, 80 MHz, 160 MHz, and 320 MHz based on the 3 bits.

4. The method of claim 1 , wherein the third information is set as a 4-bit bitmap for the each 80 MHz frequency subblock,

wherein based on the 4-bit bitmap being set to 0111, the first 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the third 20 MHz channel and the second signal information for the second and fourth 20 MHz channels,

wherein based on the 4-bit bitmap being set to 1011, the second 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first and third 20 MHz channels and the second signal information for the fourth 20 MHz channel,

wherein based on the 4-bit bitmap being set to 1101, the third 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first 20 MHz channel and the second signal information for the second and fourth 20 MHz channels,

wherein based on the 4-bit bitmap being set to 1110, the fourth 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first and third 20 MHz channels and the second signal information for the second 20 MHz channel.

5. The method of claim 4 , wherein the pattern of the preamble puncturing is a pattern in which the preamble puncturing is performed in units of 20 MHz in a channel except for a primary 20 MHz channel.

6. The method of claim 1 , wherein the PPDU is transmitted based on a non-OFDMA (Orthogonal Frequency Division Multiple Access) scheme.

7. A receiving station (STA) in a wireless Local Area Network (LAN), the receiving STA comprising:

a memory;

a transceiver; and

a processor operatively coupled to the memory and the transceiver,

wherein the processor is configured to:

receive a Physical Protocol Data Unit (PPDU) from a transmitting STA; and decode the PPDU,

wherein the PPDU includes a Universal-Signal (U-SIG) field and an Extremely High Throughput-Signal (EHT-SIG) field,

wherein the U-SIG field includes first information on a bandwidth of the PPDU, second information on a PPDU type, whether the PPDU is single user (SU) PPDU or multi user (MU) PPDU and third information on a pattern of a preamble puncturing for each 80 MHz frequency subblock,

wherein the each 80 MHz frequency subblock includes first to fourth 20 MHz channels,

wherein based on the PPDU being the MU PPDU, the EHT-SIG field includes first signal information for the first 20 MHz channel and second signal information for the second 20 MHz channel, the first signal information for the first 20 MHz channel is duplicated for the third 20 MHz channel, and the second signal information for the second 20 MHz channel is duplicated for the fourth 20 MHz channel, and

wherein based on the PPDU being the SU PPDU, the EHT-SIG field includes third signal information duplicated on every 20 MHz channel of the first to fourth 20 MHz channels.

8. A method in a wireless Local Area Network (LAN), the method comprising:

generating, by a transmitting station (STA), a Physical Protocol Data Unit (PPDU); and

transmitting, by the transmitting STA, the PPDU to a receiving STA,

wherein the PPDU includes a Universal-Signal (U-SIG) field and an Extremely High Throughput-Signal (EHT-SIG) field,

wherein the U-SIG field includes first information on a bandwidth of the PPDU, second information on a PPDU type, whether the PPDU is single user (SU) PPDU or multi user (MU) PPDU and third information on a pattern of a preamble puncturing for each 80 MHz frequency subblock,

wherein the each 80 MHz frequency subblock includes first to fourth 20 MHz channels,

wherein based on the PPDU being the MU PPDU, the EHT-SIG field includes first signal information for the first 20 MHz channel and second signal information for the second 20 MHz channel, the first signal information for the first 20 MHz channel is duplicated for the third 20 MHz channel, and the second signal information for the second 20 MHz channel is duplicated for the fourth 20 MHz channel, and

wherein based on the PPDU being the SU PPDU, the EHT-SIG field includes third signal information duplicated on every 20 MHz channel of the first to fourth 20 MHz channels.

9. The method of claim 8 , wherein the PPDU further includes a data field,

wherein the data field is received through a resource unit determined based on the U-SIG and the EHT-SIG field.

10. The method of claim 8 , wherein the information on the bandwidth of PPDU consists of 3 bits,

wherein the bandwidth of the PPDU is determined as one of 20 MHZ, 40 MHZ, 80 MHZ, 160 MHz, and 320 MHz based on the 3 bits.

11. The method of claim 8 , wherein the third information is set as a 4-bit bitmap for the each 80 MHz frequency subblock,

wherein based on the 4-bit bitmap being set to 0111, the first 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the third 20 MHz channel and the second signal information for the second and fourth 20 MHz channels,

wherein based on the 4-bit bitmap being set to 1011, the second 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first and third 20 MHz channels and the second signal information for the fourth 20 MHz channel,

wherein based on the 4-bit bitmap being set to 1101, the third 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first 20 MHz channel and the second signal information for the second and fourth 20 MHz channels,

wherein based on the 4-bit bitmap being set to 1110, the fourth 20 MHz channel is punctured, and the EHT-SIG field includes the first signal information for the first and third 20 MHz channels and the second signal information for the second 20 MHz channel.

12. The method of claim 11 , wherein the pattern of the preamble puncturing is a pattern in which the preamble puncturing is performed in units of 20 MHz in a channel except for a primary 20 MHz channel.

13. The method of claim 8 , wherein the PPDU is transmitted based on a non-OFDMA (Orthogonal Frequency Division Multiple Access) scheme.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2022
From: PARK, EUNSUNG; CHUN, JINYOUNG; CHOI, JINSOO; LIM, DONGGUK; KIM, JINMIN
To: LG ELECTRONICS INC.
Reel/Frame 060075/0425 →
Priority Claims (3)
KR 10-2019-0160162 · Dec 4, 2019 · national
KR 10-2020-0002497 · Jan 8, 2020 · national
KR 10-2020-0028006 · Mar 5, 2020 · national
Continuity (1)
Related Publication 20230006770A1 · Jan 5, 2023