IP Library Patent Application 19086103
Patent Application
App. No. 19/086,103

DISTRIBUTED RESOURCE UNIT CONFIGURATIONS

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Quick Facts
Patent No.
US None
App. No.
19/086,103
Abstract

This disclosure provides methods, devices and systems for configuring tones for a distributed resource unit (RU) across a channel bandwidth to improve frequency diversity and available transmit power. A distributed RU may include a set of tones that may be allocated across a bandwidth that is greater than a bandwidth of the aggregate quantity of tones. The set of tones may include a set of data tones grouped into contiguous groups of one or more data tones and a set of non-contiguous pilot tones. The data tones may be mapped to useful tones over a center portion of a half-bandwidth of the channel. The pilot tones may be mapped near edge tones at edges of the channel bandwidth or near direct current tones at a center of the channel bandwidth. A system bandwidth may include one or more channel bandwidths associated with distributed RUs.

Claims (60)

1 . A first wireless communication device comprising:

at least one modem;

at least one processor; and

at least one memory communicatively coupled with the at least one processor and storing processor-readable code that, when executed by the at least one processor in conjunction with the at least one modem, is configured to:

determine a first distributed resource unit that comprises a first set of tones associated with a first resource unit size and a second distributed resource unit that comprises a second set of tones associated with a second resource unit size, wherein the first set of tones are distributed across a channel bandwidth associated with a third resource unit size greater than the first resource unit size and the second resource unit size, wherein the second set of tones are distributed across the channel bandwidth, and wherein the first set of tones are interleaved with the second set of tones; and

communicate first data with a second wireless communication device via the first distributed resource unit simultaneously with communication of second data with a third wireless communication device via the second distributed resource unit.

2 . The first wireless communication device of claim 1 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

transmit, to the second wireless communication device, first control information that allocates the first distributed resource unit to the second wireless communication device; and

transmit, to the second wireless communication device, second control information that allocates the first distributed resource unit to the second wireless communication device.

3 . The first wireless communication device of claim 2 , wherein the first control information is conveyed via a first trigger frame addressed to the second wireless communication device, and wherein the second control information is conveyed via a second trigger frame addressed to the second wireless communication device.

4 . The first wireless communication device of claim 2 , wherein, to simultaneously communicate the first data with the second wireless communication device via the first distributed resource unit and the second data with the third wireless communication device via the second distributed resource unit, the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

receive the first data from the second wireless communication device; and

receive the second data from the third wireless communication device.

5 . The first wireless communication device of claim 1 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

determine a third distributed resource unit that comprises a third set of tones associated with a fourth resource unit size, wherein the third set of tones are distributed across the channel bandwidth, wherein the third resource unit size is greater than the fourth resource unit size, and wherein the third set of tones are interleaved with the first set of tones and the second set of tones.

6 . The first wireless communication device of claim 5 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate third data with a fourth wireless communication device via the third distributed resource unit simultaneously with the communication of the first data with the second wireless communication device via the first distributed resource unit and simultaneously with the communication of the second data with the third wireless communication device via the second distributed resource unit.

7 . The first wireless communication device of claim 5 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate third data with the second wireless communication device via the third distributed resource unit simultaneously with the communication of the first data with the second wireless communication device via the first distributed resource unit and simultaneously with the communication of the second data with the third wireless communication device via the second distributed resource unit.

8 . The first wireless communication device of claim 1 , wherein the first resource unit size is a same as the second resource unit size.

9 . The first wireless communication device of claim 1 , wherein the first resource unit size is larger than the second resource unit size.

10 . The first wireless communication device of claim 1 , wherein:

the first set of tones comprises a first set of pilot tones and a first set of data tones, the first set of data tones comprising a first plurality of first groups of data tones, each first group of data tones being spaced apart from each other first group of data tones within the channel bandwidth by at least one tone; and

the second set of tones comprises a second set of pilot tones and a second set of data tones, the second set of data tones comprising a second plurality of second groups of data tones, each second group of data tones being spaced apart from each other second group of data tones within the channel bandwidth by at least one tone.

11 . The first wireless communication device of claim 1 , wherein each first group of data tones is spaced apart from each other first group of data tones within the channel bandwidth by at least one second group of data tones.

12 . The first wireless communication device of claim 10 , wherein, to simultaneously communicate the first data with the second wireless communication device via the first distributed resource unit and the second data with the third wireless communication device via the second distributed resource unit, the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate the first data over the first set of data tones; and

communicate the second data over the second set of data tones, wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate first pilot symbols over the first set of pilot tones; and

communicate second pilot symbols over the second set of pilot tones.

13 . The first wireless communication device of claim 12 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate first respective 4× long training fields in each of the first set of data tones;

communicate second respective 4× long training fields in each of the first set of pilot tones;

communicate third respective 4× long training fields in each of the second set of data tones; and

communicate fourth respective 4× long training fields in each of the second set of pilot tones.

14 . The first wireless communication device of claim 12 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate a first 20 megahertz short training field via the first set of data tones; and

communicate a second 20 megahertz short training field via the first set of data tones.

15 . The first wireless communication device of claim 12 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

communicate a first respective 20 megahertz short training field for each 20 megahertz bandwidth of the first distributed resource unit; and

communicate a second respective 20 megahertz short training field for each 20 megahertz bandwidth of the second distributed resource unit.

16 . The first wireless communication device of claim 12 , wherein the processor-readable code is executable by the at least one processor to cause the first wireless communication device to:

determine the first set of tones and the second set of tones based at least in part on one or more sets of defined tone indices, the one or more sets of defined tone indices associated with determining tone positions for one or more non-distributed resource units.

17 . The first wireless communication device of claim 16 , wherein the processor-readable code to determine the first set of tones and the second set of tones is executable by the at least one processor to cause the first wireless communication device to:

shift the one or more sets of defined tone indices, wherein shifting the one or more sets of defined tone indices comprises shifting tones associated with the one or more sets of defined tone indices in a frequency domain; and

determine the first set of data tones, the first set of pilot tones, the second set of data tones, and the second set of pilot tones based at least in part on shifting the one or more sets of defined tone indices.

18 . The first wireless communication device of claim 1 , wherein:

the channel bandwidth comprises:

one or more leading unallocated edge tones;

a first contiguous set of useful tones;

one or more unallocated direct current tones;

a second contiguous set of useful tones; and

one or more following unallocated edge tones; and

the first set of tones and the second set of tones comprise tones from the first contiguous set of useful tones and the second contiguous set of useful tones.

19 . A method for wireless communication by a first wireless communication device, comprising:

determining a first distributed resource unit that comprises a first set of tones associated with a first resource unit size and a second distributed resource unit that comprises a second set of tones associated with a second resource unit size, wherein the first set of tones are distributed across a channel bandwidth associated with a third resource unit size greater than the first resource unit size and the second resource unit size, wherein the second set of tones are distributed across the channel bandwidth, and wherein the first set of tones are interleaved with the second set of tones; and

communicating first data with a second wireless communication device via the first distributed resource unit simultaneously with communication of second data with a third wireless communication device via the second distributed resource unit.

20 . A non-transitory computer-readable medium storing code for wireless communications by a first wireless communication device, the code comprising instructions executable by at least one processor to cause the first wireless communication device to:

determine a first distributed resource unit that comprises a first set of tones associated with a first resource unit size and a second distributed resource unit that comprises a second set of tones associated with a second resource unit size, wherein the first set of tones are distributed across a channel bandwidth associated with a third resource unit size greater than the first resource unit size and the second resource unit size, wherein the second set of tones are distributed across the channel bandwidth, and wherein the first set of tones are interleaved with the second set of tones; and

communicate first data with a second wireless communication device via the first distributed resource unit simultaneously with communication of second data with a third wireless communication device via the second distributed resource unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2025
From: YANG, LIN; TIAN, BIN
To: QUALCOMM INCORPORATED
Reel/Frame 070651/0130 →