IP Library › Granted Patent US 11,528,174
Granted Patent B2
US 11,528,174 · App. 17/036,996 · Granted Dec 13, 2022

Information transmission method and apparatus

Inventors: Ming Gan (Shenzhen, CN); Xin Zuo (Shenzhen, CN); Xun Yang (Shenzhen, CN)
Assignee: Huawei Technologies Co., Ltd.
H04L27/2614H04L27/261H04L27/2613H04L27/2603
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,528,174
App. No.
17/036,996
Granted
Dec 13, 2022
Kind
B2
Abstract

Embodiments of this application provide information transmission methods and apparatuses. One method includes: generating, by a first communications device, a physical layer protocol data unit (PPDU) with a bandwidth of X MHz, wherein X>160, some or all fields in the PPDU are rotated in the bandwidth of X MHz by using a rotation factor sequence, the bandwidth of X MHz comprises n bandwidths of Y MHz, the rotation factor sequence comprises n rotation factors, and each of the n bandwidths corresponds to one rotation factor; and sending, by the first communications device, the PPDU to a second communications device.

Claims (20)

1. An information transmission method, comprising:

generating, by a first communications device, a physical layer protocol data unit (PPDU) with a bandwidth of 320 MHz, wherein some or all fields in the PPDU are rotated in the bandwidth by using a rotation factor sequence comprising 16 rotation factors, the bandwidth comprises 16 subchannels of 20 MHz corresponding to the 16 rotation factors, wherein the first four rotation factors in the rotation factor sequence are [1 −1 −1 −1]; and

sending, by the first communications device, the PPDU to a second communications device.

2. The method according to claim 1 , wherein the PPDU comprises a legacy short training field (L-STF), a legacy long training field (L-LTF), and a legacy signal field (L-SIG), the L-STF, the L-LTF, and the L-SIG are duplicated in the 16 subchannels and are rotated by using the rotation factor sequence.

3. The method according to claim 1 , wherein fields in at least one of the 16 subchannels are rotated.

4. The method according to claim 1 , wherein the rotation factor sequence is one of the following sequences: [1 −1 −1 −1 1 1 j −j 1 −1 1 1 1 1 −j j], [1 −1 −1 −1 1 1 −j j 1 −1 1 1 1 1 j −j], [1 −1 −1 −1 1j1 −1 −1 1 1 −j 1 j],[1 −1 −1 −1 1 j −j1 1 1 1 −1 1 −j j 1], [1 −1 −1 −1 1 31 j 1 j 1 1 −1 1 1 j 1 −j], [1 −1 −1 −1 1 −j j 1 1 1 1 −1 1 j −j 1], [1 −1 −1 −1 j 1 j −1 −1 −1 1 −1 −j 1 −j −1], [1 −1 −1 −1 j 1 −1 j −1 −1 −1 1 −j 1 −1 −j], [1 −1 −1 −1 j j 1 −1 −1 1 −1 −1 −j −j 1 − 1 ], [1 −1 −1 −1 j j −1 1 −1 1 −1 −1 −j −j −1 1], [1 −1 −1 −1 j −1 1 j −1 −1 −1 1 −j −1 1 −j], [1 −1 −1 −1 j −1 j 1 −1 −1 1 −1 −j −1 −j 1], [1 −1 −1 −1 −1 j −1 −j 1 1 −1 1 −1 −j −1 j], [1 −1 −1 −1 −1 j −j −1 1 1 1 −1 −1 −j j −1], [1 1 1 1 1 1 j j 1 −1 1 1 −1 −1 −j j], [1 −1 −1 −1 −1 −1 −j j 1 −1 1 1 −1 −1 j −j], [1 1 1 1 1 j j 1 1 1 1 1 j j 1], [1 1 1 1 1 j 1 j 1 1 −1 1 −1 j −1 −j], [1 −1 −1 −1 −j 1 −1 −j −1 −1 −1 1 j 1 −1 j], [1 −1 −1 −1 −j 1 −j −1 −1 −1 1 −1 j 1 j − 1 ], [1 −1 −1 −1 −j −1 1 −j −1 −1 −1 1 j −1 1 j], [1 −1 −1 −1 −j −1 −j 1 −1 −1 1 −1 j −1 j 1], [1 −1 −1 −1 −j −j 1 −1 −1 1 −1 −1 j j 1 −1], and [1 −1 −1 −1 −j −j −1 1 −1 1 −1 −1 j j −1 1].

5. A first communications device, comprising:

at least one processor;

a non-transitory computer-readable storage medium coupled to the at least one processor and storing programming instructions for execution by the at least one processor, the programming instructions instruct the at least one processor to:

generate a physical layer protocol data unit (PPDU) with a bandwidth of 320 MHz, wherein some or all fields in the PPDU are rotated in the bandwidth by using a rotation factor sequence comprising 16 rotation factors, the bandwidth comprises subchannels of 20 MHz corresponding to the 16 rotation factors, wherein the first four rotation factors in the rotation factor sequence are [1 −1 −1 −1]; and

send the PPDU to a second communications device.

6. The first communications device according to claim 5 , wherein the PPDU comprises a legacy short training field (L-STF), a legacy long training field (L-LTF), and a legacy signal field (L-SIG), the L-STF, the L-LTF, and the L-SIG are duplicated in the 16 subchannels and are rotated by using the rotation factor sequence.

7. The first communications device according to claim 5 , wherein fields in at least one of the 16 subchannels are rotated.

8. The first communications device according to claim 5 , wherein the rotation factor sequence is one of the following sequences: [1 −1 −1 −1 1 1 j −j 1 −1 1 1 1 1 −j j],[1 −1 −1 −1 1 1 −j j 1 −1 1 1 1 1 −j], [1 −1 −1 −1 1 j 1 −j 1 1 −1 1 1 −j 1 j], [1 −1 −1 −1 1 j −j 1 1 1 1 −1 1 −j j 1], [1 −1 −1 −1 1 −j 1 j 1 1 −1 1 1 j 1 −j], [1 −1 −1 −1 1 −j j 1 1 1 1 −1 1 j−j 1],[1 −1 −1 −1 j 1 j −1 −1 −1 1 −1 −j −1],[1 −1 −1−1 −1 j −1 −1 −1 1 −j 1 −1 −j], [1 −1 −1 −1 j j 1 −1 −1 1 −1 −1 −j −j 1 −1], [1 −1 −1 −1 j j −1 1 −1 1 −1 −1 −j −j −1 1], [1 −1 −1 −1 j −1 1 j −1 −1 1 1 −j −1 1 −j], [1 −1 −1 −1j −1 j 1 −1 −1 1 −1 −j −1 −j 1], [1 −1 −1 −1 −1 j −1 −j 1 1 −1 1 −1 −j −1j],[1 −1 −1 −1 −1 j −j −1 1 1 1 −1 −1 −j j −1],[1 1 1 1 1 1 j −j 1 −1 1 1 −1 −1 −j j], [1 1 1 1 1 1 j j 1 1 1 1 1 j j],[1 1 1 1 1 j j − 1 1 1 1 − 1 −1 j −j −1], [1 −1 −1 −1 −1 j 1 j 1 1 −1 1 −1 j −1 −j], [1 −1 −1 −1 −j 1 −1 −j −1 −1 −1 1 j 1 −1 j], [1 −1 −1 −1 −j 1 −j −1 −1 −1 1 −1 j 1 j −1], [1 −1 −1 −1 −j −1 1 −j −1 −1 −1 1 j −1 1 j], [1 −1 −1 −1 −j −1 −j 1 −1 −1 1 −1 j −1 j 1], [1 −1 −1 −1 −j −j 1 −1 −1 1 −1 −1 j j 1 −1], and [1 −1 −1 −1 −j −j −1 1 −1 1 −1 −1 j j −1 1].

9. A non-transitory computer-readable storage medium storing one or more instructions executable by at least one processor to perform operations comprising:

generate a physical layer protocol data unit (PPDU) with a bandwidth of 320 MHz, wherein some or all fields in the PPDU are rotated in the bandwidth by using a rotation factor sequence comprising 16 rotation factors, the bandwidth comprises 16 subchannels of 20 MHz corresponding to the 16 rotation factors, wherein the first four rotation factors in the rotation factor sequence are [1 −1 −1 −1]; and

send the PPDU to a second communications device.

10. The non-transitory computer-readable storage medium according to claim 9 , wherein the PPDU comprises a legacy short training field (L-STF), a legacy long training field (L-LTF), and a legacy signal field (L-SIG), the L-STF, the L-LTF, and the L-SIG are duplicated in the 16 subchannels and are rotated by using the 16 rotation factors.

11. The non-transitory computer-readable storage medium according to claim 9 , wherein fields in at least one of the 16 subchannels are rotated.

12. The non-transitory computer-readable storage medium according to claim 9 , wherein the rotation factor sequence is one of the following sequences: [1 −1 −1 −1 1 1 j −j 1 −1 1 1 1 1 −j j], [1 −1 −1 −1 1 1 −j j 1 −1 1 1 1 1 j −j], [1 −1 −1 −1 1 j 1 −j 1 1 −1 1 1 −j 1 j], [1 −1 −1 −1 1 j−j 1 1 1 1 −1 1 −j j 1],[1 −1 −1 −1 1 −j 1j 1 1 −1 1 1 j 1 −j],[1 −1 −1 −1 1 −j j 1 1 1 1 −1 1 j −j 1], [1 −1 −1 −1 j 1 j −1 −1 −1 1 −1 −j 1 −j −1], [1 −1 −1 −1 j 1 −1 j −1 −1 −1 1 −j 1 −1 −j], [1 −1 −1 −1 j j 1 −1 −1 1 −1 −1 −j −j 1 −1], [1 −1 −1 −1 j j −1 1 −1 1 −1 −1 −j −j −1 1], [1 −1 −1 −1 j −1 1 j −1 −1 −1 1 −j −1 1 −j], [1 −1 −1 −1 j −1 −1 −1 1 −1 −j −1 −j 1], [1 −1 −1 −1 −1 j −1−1 −1 1 −1 −j −1 j], [1 −1 −1 −1 −1 j −j −1 1 1 1 −1 −1 −j j −1], [1 −1 −1 −1 −1 −1 j j 1 −1 1 1 −1 −1 −j j],[1 −1 −1 −1 −1 −1 j j −1 1 1 1 −1 j j],[1 −1 −1 −1 −1 j j 1 1 1 1 −1 −1 j−j −1],[1 −1 −1 −1 −1 −j −1 j 1 1 −1 1 −1 j −1 −j], [1 −1 −1 −1 −j 1 −1 −j −1 −1 −1 1 j 1 −1 j], [1 −1 −1 −1 −j 1 −j −1 −1 −1 1 −1 j 1 j −1], [1 −1 −1 −1 −j −1 1 −j −1 −1 −1 1 j −1 1 j], [1 −1 −1 −1 −j −1 −j 1 −1 −1 1 −1 j −1 j 1], [1 −1 −1 −1 −j −j 1 −1 −1 1 −1 −1 j j 1 −1], and [1 −1 −1 −1 −j −j −1 1 −1 1 −1 −1 j j −1 1].

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF FIRST LISTED ASSIGNOR PREVIOUSLY RECORDED AT REEL: 054652 FRAME: 0792. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 22, 2020
From: GAN, MING; ZUO, XIN; YANG, XUN
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 054828/0272 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2020
From: GAN, MIN; ZUO, XIN; YANG, XUN
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 054652/0792 →
Priority Claims (1)
CN 201810278595.5 · Mar 31, 2018 · national
Continuity (2)
Continuation PCTCN2019075498 · Feb 19, 2019
Related Publication 20210014097A1 · Jan 14, 2021
Cited By (1)
US 12,316,557