IP Library Granted Patent US 8,665,906
Granted Patent B1
US 8,665,906 · App. 12/869,491 · Granted Mar 4, 2014

Method and apparatus for multi-user frame aggregation

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Quick Facts
Patent No.
US 8,665,906
App. No.
12/869,491
Granted
Mar 4, 2014
Kind
B1
Abstract

A plurality of individual physical layer (PHY) data units having independent data for a plurality of stations are generated. The plurality of individual PHY data units includes a first individual PHY data unit corresponding to a first station, a second individual PHY data unit corresponding to a second station, and a third individual PHY data unit corresponding to a third station. The second individual PHY data unit includes a first midamble of an aggregated PHY data unit, and the third individual PHY data unit includes a second midamble of the aggregated PHY data unit. The aggregated PHY data unit is generated to include the plurality of individual PHY data units, wherein the first midamble includes information that indicates a location within the aggregated PHY data unit of the third individual PHY data unit.

Claims (24)

1. A method, comprising:

generating a plurality of individual physical layer (PHY) data units having independent data for a plurality of stations, wherein

the plurality of individual PHY data units includes a first individual PHY data unit corresponding to a first station, a second individual PHY data unit corresponding to a second station, and a third individual PHY data unit corresponding to a third station,

the second individual PHY data unit includes a first midamble of an aggregated PHY data unit, and

the third individual PHY data unit includes a second midamble of the aggregated PHY data unit;

generating the aggregated PHY data unit to include the plurality of individual PHY data units, wherein the first midamble includes (i) a first set of training fields, (ii) a signal field having information that indicates a location within the aggregated PHY data unit of the third individual PHY data unit, and (iii) a second set of training fields; and

controlling beamforming while the aggregated PHY data unit is being transmitted, wherein controlling beamforming while the aggregated PHY data unit is being transmitted includes

(i) causing transmission in an omnidirectional or quasi-omnidirectional manner while the first set of training fields of the first midamble is transmitted,

(ii) causing transmission in an omnidirectional or quasi-omnidirectional manner while the signal field of the first midamble is transmitted,

(iii) beamforming to the second station while the second set of training fields of the first midamble is transmitted, and

(iv) beamforming to the second station while a payload of the second individual PHY data unit is transmitted.

2. An apparatus, comprising:

a physical layer (PHY) processing unit to generate aggregated PHY data units, the PHY processing unit configured to

generate a plurality of individual physical layer (PHY) data units having independent data for a plurality of stations, wherein

the plurality of individual PHY data units includes a first individual PHY data unit corresponding to a first station, a second individual PHY data unit corresponding to a second station, and a third individual PHY data unit corresponding to a third station,

the second individual PHY data unit includes a first midamble of the aggregated PHY data unit,

and

the third individual PHY data unit includes a second midamble of the aggregated PHY data unit, and

generate the aggregated PHY data unit to include the plurality of individual PHY data units, wherein the first midamble includes (i) a first set of training fields, (ii) a signal field having information that indicates a location within the aggregated PHY data unit of the third individual PHY data unit, and (iii) a second set of training fields; and

wherein the PHY processing unit comprises a beamforming unit configured to control beamforming while the aggregated PHY data unit is transmitted at least by

(i) causing transmission in an omnidirectional or quasi-omnidirectional manner while the first set of training fields of the first midamble is transmitted,

(ii) causing transmission in an omnidirectional or quasi-omnidirectional manner while the signal field of the first midamble is transmitted,

(iii) beamforming to the second station while the second set of training fields of the first midamble is being transmitted, and

(iv) beamforming to the second station while a payload of the second individual PHY data unit is transmitted.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2019
From: MARVELL INTERNATIONAL LTD.
To: NXP USA, INC.
Reel/Frame 051536/0001 →