Resource units for wide band transmission in a wireless network

US2020383003A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2020383003-A1
Application numberUS-202016878285-A
CountryUS
Kind codeA1
Filing dateMay 19, 2020
Priority dateMay 31, 2019
Publication dateDec 3, 2020
Grant date

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Abstract

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Embodiments of the present invention provide an apparatus and method for WLAN transmission over 320 MHz channels that use encoding and modulation schemes of existing 160 MHz tone plans defined in the IEEE 802.11ax standard. For example, 320 MHz transmissions on a contiguous 320 MHz channel or a non-contiguous 160 MHz+160 MHz channel can be performed using a 320 MHz PPDU, or a 160 MHz+160 MHz PPDU, and the 320 MHz/160 MHz+160 MHz PPDU can be defined using the 160 MHz tone plan according to the IEEE 802.11ax standard. The existing tone plan of the IEEE 802.11ax standard is modified as described herein according to embodiments of the present invention. According to some embodiment, the 160 MHz tone plan can be repurposed to support multi-link aggregation including 80 MHz+240 MHz transmission, or 160 MHz+160 MHz transmission using two or more links.

First claim

Opening claim text (preview).

What is claimed is: 1 . A method of transmitting data in a wireless network over a 320 MHz channel in the wireless network, the method comprising: defining a first new RU and a second new RU of the 320 MHz channel, wherein the 320 MHz channel comprises: a first resource unit (RU); a second RU; a first set of null tones between the first RU and the second RU; a third RU; a fourth RU; and a second set of null tones between the third RU and the fourth RU, wherein the first new RU comprises the first set of null tones, and wherein the second new RU comprises the second set of null tones; associating the first new RU with a first RU ID and associating the second new RU with a second RU ID; and transmitting a PPDU over the wireless network, wherein the PPDU comprises: the first, second, third, and fourth RUs; the first and second new RUs; and the first and second new RU IDs. 2 . The method described in claim 1 , wherein the first, second, third, and fourth RUs comprise 996+5 tones, and wherein the transmitting comprises transmitting the PPDU in a single user (SU) mode. 3 . The method described in claim 1 , wherein the first, second, third, and fourth RUs comprise 994+7 tones, and wherein the transmitting comprises transmitting the PPDU in a multi user (MU) mode. 4 . The method described in claim 1 , wherein the 320 MHz channel comprises a first 160 MHz segment and a second 160 MHz segment. 5 . The method described in claim 1 , wherein the first, second, third, and fourth RUs of the 320 MHz channel are defined according to an 802.11ax 160 MHz tone plan. 6 . The method described in claim 4 , wherein the transmitting comprises transmitting the first 160 MHz segment over a first band and transmitting the second 160 MHz segment over a second band. 7 . The method described in claim 6 , wherein the first band comprises a 5 GHz band and the second band comprises a 6 GHz band. 8 . The method described in claim 1 , wherein the 320 MHz channel comprises an 80 MHz segment and a 240 MHz segment, and wherein the transmitting comprises transmitting the first RU and the second RU using multi-link aggregation. 9 . The method described in claim 1 , wherein the 320 MHz channel comprises a 160+160 MHz channel, and wherein the PPDU comprises a 160+160 MHz PPDU. 10 . The method described in claim 1 , wherein the first RU ID and the second RU ID are included in an EHT-SIGs field of the PPDU, and the PPDU comprises a 320 MHz PPDU. 11 . The method described in claim 1 , wherein the first RU ID and the second RU ID are included in at least one of: a PHY header and a MAC header. 12 . The method described in claim 1 , wherein the first new RU and the second new RU comprise at least one of: data and control information. 13 . The method described in claim 1 , wherein the first new RU and the second new RU further comprise a set of direct current (DC) tones between the second RU and the third RU. 14 . A method of transmitting data in a wireless network over a 320 MHz channel in the wireless network, the method comprising: defining a new RU of the 320 MHz channel, wherein the 320 MHz channel comprises: a first resource unit (RU); a second RU; a first set of null tones between the first RU and the second RU; a third RU; a fourth RU; and a second set of null tones between the third RU and the fourth RU, and wherein the new RU comprises the first set of null tones, the second set of null tones, and a set of direct current (DC) tones between the second RU and the third RU; associating the new RU with a RU ID; and transmitting a PPDU over the wireless network, wherein the PPDU comprises: the first, second, third, and fourth RUs; the new RU; and the new RU ID. 15 . The method described in claim 14 , wherein the first, second, third, and fourth RUs comprise 996+5 tones, and wherein the transmitting comprises transmitting the PPDU in a single user (SU) mode. 16 . The method described in claim 14 , wherein the first, second, third, and fourth RUs comprise 994+7 tones, and wherein the transmitting comprise transmitting the PPDU in a multi user (MU) mode. 17 . The method described in claim 14 , wherein the transmitting comprises using an encoding and modulation scheme defined according to 802.11ax. 18 . The method described in claim 14 , wherein the RU ID is included in at least one of: a PHY header and a MAC header. 19 . The method described in claim 14 , wherein the new RU comprises at least one of: data and control information. 20 . A wireless communication device, comprising: a processor; and a memory coupled to the processor and comprising instructions executed by the processor to perform a method of wireless communication over a 320 MHz channel in a wireless network, the method comprising: defining a first new RU and a second new RU of the 320 MHz channel, wherein the 320 MHz channel comprises: a first resource unit (RU); a second RU; a first set of null tones between the first RU and the second RU; a third RU; a fourth RU; and a second set of null tones between the third RU and the fourth RU, and wherein the first new RU comprises the first set of null tones, and wherein the second new RU comprises the second set of null tones; associating the first new RU with a first RU ID and associating the second new RU with a second RU ID; and transmitting a PPDU over the wireless network, wherein the PPDU comprises: the first, second, third, and fourth RUs; the first and second new RUs; and the first and second new RU IDs.

Assignees

Inventors

Classifications

  • H04W16/10Primary

    Dynamic resource partitioning · CPC title

  • Resources in frequency domain, e.g. a carrier in FDMA · CPC title

  • H04L5/003Primary

    Arrangements for allocating sub-channels of the transmission path · CPC title

  • Allocation or use of connection identifiers · CPC title

  • the frequencies being arranged in component carriers · CPC title

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What does patent US2020383003A1 cover?
Embodiments of the present invention provide an apparatus and method for WLAN transmission over 320 MHz channels that use encoding and modulation schemes of existing 160 MHz tone plans defined in the IEEE 802.11ax standard. For example, 320 MHz transmissions on a contiguous 320 MHz channel or a non-contiguous 160 MHz+160 MHz channel can be performed using a 320 MHz PPDU, or a 160 MHz+160 MHz PP…
Who is the assignee on this patent?
Mediatek Singapore Pte Ltd
What technology area does this patent fall under?
Primary CPC classification H04W16/10. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Dec 03 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).