IP Library Granted Patent US 8,571,086
Granted Patent B2
US 8,571,086 · App. 12/802,938 · Granted Oct 29, 2013

System and method for DIDO precoding interpolation in multicarrier systems

Inventors: Antonio Forenza (Palo Alto, CA); Stephen G. Perlman (Palo Alto, CA)
Assignee: Rearden, LLC
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Quick Facts
Patent No.
US 8,571,086
App. No.
12/802,938
Granted
Oct 29, 2013
Kind
B2
Abstract

A system and machine-implemented method are described for performing precoding interpolation in a DIDO system which employs orthogonal frequency-division multiplexing (OFDM) and DIDO precoding to communicate with a plurality of distributed-input-distributed-output (DIDO) clients. For example, a system according to one embodiment of the invention comprises: selecting a first subset of ODFM tones to determine a first subset of precoding weights; deriving a second subset of precoding weights for a second subset of ODFM tones by interpolating between the first subset of precoding weights; and using a combination of the first subset of precoding weights and the second subset of precoding weights to precode a data stream prior to transmitting the data stream to a DIDO client.

Claims (14)

1. A machine-implemented method for performing precoding interpolation in a multicarrier multiuser (MU) multiple antenna system (MU-MAS) which employs precoding to communicate between a plurality of distributed antennas and a plurality of client devices comprising:

selecting a first subset of subcarriers to determine a first subset of precoding weights;

deriving a second subset of precoding weights for a second subset of subcarriers by interpolating between the first subset of precoding weights; and

using a combination of the first subset of precoding weights and the second subset of precoding weights to precode a data stream prior to transmitting the data stream to a client device.

2. The method in claim 1 wherein singular value decomposition (SVD) is performed on the first subset of subcarriers to determine the first subset of precoding weights.

3. The method as in claim 1 wherein the distributed antennas are grouped into clusters and precoding is implemented to remove inter-cluster interference while transmitting from a first plurality of distributed antennas to create zero RF energy at the location of the client devices.

4. The method as in claim 1 further comprising transmitting from M distributed antennas to create up to (M-1) locations of zero RF energy.

5. The method as in claim 4 wherein the locations with zero RF energy correspond to the location of each of a plurality of client devices and precoding is used to create points of zero RF energy at each of the plurality of client devices.

6. The method as in claim 5 wherein locations of zero RF energy are created to remove interference between adjacent clusters.

7. The method in claim 1 wherein block diagonalization (BD) is performed on the first subset of subcarriers to determine the first subset of precoding weights.

8. The method in claim 1 wherein the multicarrier system employs orthogonal frequency division multiplexing (OFDM) modulation and the subcarriers are OFDM tones.

9. The method as in claim 1 wherein the distributed antennas are aware of the channel state information (CSI) between the transmitters and the receivers, and the transmitters utilize the CSI to determine interfering signals to be simultaneously transmitted.

10. The method as in claim 9 wherein the downlink CSI is estimated at the client devices and fed back to the distributed antennas.

11. The method as in claim 9 wherein the downlink CSI is derived at the distributed antennas from the uplink CSI by exploiting uplink/downlink channel reciprocity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2010
From: FORENZA, ANTONIO; PERLMAN, STEPHEN G.
To: REARDEN, LLC
Reel/Frame 025007/0282 →
Continuity (8)
Continuation In Part 12630627 · Dec 3, 2009
Continuation In Part 12143503 · Jun 20, 2008
Continuation In Part 11894394 · Aug 20, 2007
Continuation In Part 11894362 · Aug 20, 2007
Continuation In Part 11894540 · Aug 20, 2007
Continuation In Part 11256478 · Oct 21, 2005
Continuation In Part 10817731 · Apr 2, 2004
Related Publication 20100316163A1 · Dec 16, 2010