IP Library › Granted Patent US 10,536,932
Granted Patent B2
US 10,536,932 · App. 15/241,010 · Granted Jan 14, 2020

Method for feeding back channel state in wireless communication system and device therefor

Inventors: Jinyoung Chun (Seoul, KR); Kiseon Ryu (Seoul, KR); Jeongki Kim (Seoul, KR); Jinsoo Choi (Seoul, KR); Dongguk Lim (Seoul, KR); Hangyu Cho (Seoul, KR); Jinmin Kim (Seoul, KR); Eunsung Park (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04W72/0413H04L1/0025H04L1/0026H04L1/0075H04L1/0618H04L5/0023H04L5/0053H04W4/70H04W28/10H04W72/048H04W72/082H04W84/12H04B7/063H04B7/0626H04B7/0639H04L5/0007H04L5/0055H04W88/08
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Quick Facts
Patent No.
US 10,536,932
App. No.
15/241,010
Granted
Jan 14, 2020
Kind
B2
Abstract

Disclosed herein is an operating method of a station (STA) in a wireless LAN (WLAN) system. The method includes receiving a downlink (DL) physical protocol data unit (PPDU) and sending an uplink (UL) PPDU as a response to the DL PPDU. The DL PPDU may include at least one MAC protocol data unit (MPDU) and the at least one MPDU may include a first high efficiency (HE) control field. The UL PPDU may include at least one MAC protocol data unit (MPDU) and the at least one MPDU may include a second high efficiency (HE) control field. The each of the first and second HE control fields corresponds to an HT control field and comprises a plurality of aggregated HE control subfield. The HT control field includes VHT subfield value set to “1” and HE subfield value set to “1”.

Claims (40)

1. An operating method of a station (STA) in a wireless local area network (WLAN) system, the method comprising:

receiving a downlink (DL) physical protocol data unit (PPDU); and

transmitting an uplink (UL) PPDU as a response to the DL PPDU,

wherein the DL PPDU comprises at least one MAC protocol data unit (MPDU) that includes a first high efficiency (HE) control field,

wherein the UL PPDU comprises at least one MAC protocol data unit (MPDU) that includes a second high efficiency (HE) control field,

wherein each of the first and second HE control fields comprises at least one HE control subfield,

wherein the first or second HE control field includes a plurality of aggregated HE control subfields,

wherein each of the plurality of aggregated HE control subfields includes a control information field including control information and a control type field indicating a control type of the control information,

wherein one of the plurality of aggregated HE control subfields of the first HE control field includes feedback request information as the control information,

wherein one of the plurality of HE control subfields of the second HE control field includes channel state information as the control information,

wherein the channel state information is generated with respect to a partial transmission band of the DL PPDU,

wherein the partial transmission band corresponds to at least one frequency resource unit indicated by the feedback request information, and

wherein the channel state information includes at least a recommended number of spatial streams or a recommended modulation and coding scheme (MCS) level.

2. The operating method of claim 1 , wherein the one HE control subfield of each of the first and the second HE control fields includes an MCS feedback request (MRQ) field indicating whether the corresponding first or second control field requests feedback of the channel state information or feeds back the channel state information.

3. The operating method of claim 1 , wherein the one HE control subfield of the first HE control field includes a band indication field indicating whether the channel state information is to be generated with respect to a full transmission band or partial transmission band of the DL PPDU.

4. The operating method of claim 1 , wherein the at least one HE control subfield of the second HE control field includes an unsolicited MCS feedback (MFB) field indicating that the channel state information is based on a request.

5. The operating method of claim 1 , wherein the at least one HE control subfield of the second HE control field includes identifier (ID) information related to the DL PPDU.

6. The operating method of claim 5 , wherein the ID information includes transmit opportunity (TXOP) duration information related to the DL PPDU.

7. The operating method of claim 1 , wherein the channel state information further includes at least a signal to noise ratio (SNR) value or a beamforming feedback matrix for a full transmission band or a partial transmission band of the UL PPDU.

8. A station (STA) device in a wireless LAN (WLAN) system, the STA comprising:

an RF unit configured to transmit and receive a radio signal; and

a processor configured to:

control the RF unit to receive a downlink (DL) physical protocol data unit (PPDU); and

control the RF unit to transmit an uplink (UL) PPDU as a response to the DL PPDU,

wherein the DL PPDU comprises at least one MAC protocol data unit (MPDU) that includes a first high efficiency (HE) control field,

wherein the UL PPDU comprises at least one MAC protocol data unit (MPDU) that includes a second high efficiency (HE) control field,

wherein each of the first and second HE control fields comprises at least one HE control subfield,

wherein the first or second HE control field includes a plurality of aggregated HE control subfields,

wherein each of the plurality of aggregated HE control subfields includes a control information field including control information and a control type field indicating a control type of the control information,

wherein one of the plurality of aggregated HE control subfields of the first HE control field includes feedback request information as the control information,

wherein one of the plurality of HE control subfields of the second HE control field includes channel state information as the control information,

wherein the channel state information is generated with respect to a partial transmission band of the DL PPDU,

wherein the partial transmission band corresponds to at least one frequency resource unit indicated by the feedback request information, and

wherein the channel state information includes at least a recommended number of spatial streams or a recommended modulation and coding scheme (MCS) level.

9. The STA device of claim 8 , wherein the at least one HE control subfield of the second HE control field includes identifier (ID) information related to the DL PPDU.

10. The STA device of claim 8 , wherein the channel state information further includes at least a signal to noise ratio (SNR) value or a beamforming feedback matrix for a full transmission band or a partial transmission band of the UL PPDU.

11. The STA device of claim 8 , wherein the at least one HE control subfield of each of the first and the second HE control fields includes an MCS feedback request (MRQ) field indicating whether the corresponding first or second control field requests feedback of the channel state information or feeds back the channel state information.

12. The STA device of claim 8 , wherein the at least one HE control subfield of the second HE control field includes an unsolicited MCS feedback (MFB) field indicating that the channel state information is based on a request.

13. The STA device of claim 8 , wherein the at least one HE control field of the first HE control field includes a band location field indicating whether the channel state information is to be generated with respect to a full transmission band or the partial band of the DL PPDU.

14. The STA device of claim 9 , wherein the ID information includes transmit opportunity (TXOP) duration information related to the DL PPDU.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2016
From: CHUN, JINYOUNG; RYU, KISEON; KIM, JEONGKI; CHOI, JINSOO; LIM, DONGGUK; CHO, HANGYU; KIM, JINMIN; PARK, EUNSUNG
To: LG ELECTRONICS INC.
Reel/Frame 040512/0268 →
Continuity (4)
Provisional Application 62206862 · Aug 19, 2015
Provisional Application 62209899 · Aug 26, 2015
Provisional Application 62264836 · Dec 8, 2015
Related Publication 20170070914A1 · Mar 9, 2017
Cited By (3)
US 12,219,637 US 12,250,719 US 12,451,930