IP Library Granted Patent US 7,725,091
Granted Patent B2
US 7,725,091 · App. 11/587,256 · Granted May 25, 2010

Method and device for transmitting a signal in a multi-antenna system, signal, and method for estimating the corresponding transmission channels

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Quick Facts
Patent No.
US 7,725,091
App. No.
11/587,256
Granted
May 25, 2010
Kind
B2
Abstract

A method for transmitting a digital signal via n transmit antennas, wherein n is strictly greater than 2, comprising the steps of combining with a source data vector n vectors to be transmitted respectively by each of the transmit antennas by a coding matrix <I>M</I> with a yield equal to 1, using reference symbols known to at least one receiver whereby it is able to estimate at least three transmission channels corresponding respectively to each of said transmit antennas. Said coding matrix <I>M</I> applied a mathematical transformation to the reference symbols prior to the transmission thereof.

Claims (54)

1. Method of estimation of the transmit channels in a multi-antenna system implementing n transmit antennas, where n is strictly greater than 2, and at least one reception antenna, according to which n vectors to be transmitted respectively by each of said transmit antennas are associated with a vector of source data, by an encoding matrix M of rate equal to 1, implementing reference symbols known to at least one receiver and enabling this receiver to estimate n transmit channels corresponding respectively to each of said transmit antennas, wherein the method comprises:

receiving a received reference vector, corresponding to a transmitted reference vector obtained by mathematically transforming reference symbols by said encoding matrix M, and modified by at least one transmission channel for each of said transmit antennas; and

for each of said reception antennas, mathematically transforming said received reference vector by a decoding matrix, which is the inverse of said encoding matrix and takes account of the effect of a transmission channel associated with said reception antenna, to give an estimation of the effects of said transmit channels on said reference symbols.

2. Method of estimation according to claim 1 , wherein said decoding matrix is an inverse matrix integrating an equalization in the sense of the MMSE or ZF criterion.

3. Method of estimation according to claim 2 , wherein said criterion implemented is the MMSE criterion and said decoding matrix is formed by the elements:

h

^

=

M

H

M

H

M

+

I

γ

r

,

with:

r being the received reference vector;

M the encoding matrix;

I a unitary matrix;

γ the signal-to-noise ratio;

H the conjugate transpose.

4. Method of estimation according to claim 2 , wherein said criterion implemented is the ZF criterion and in that said decoding matrix is formed by the elements:

h

^

=

M

H

M

H

M

r

,

with:

r being said received reference vector;

M said encoding matrix;

H the conjugate transpose.

5. Method of estimation according to claim 1 , and further comprising an interpolation step delivering an estimation of said transmission channels, for each of the source data, from the estimation of the reference symbols.

6. Method of estimation according to claim 5 , wherein said interpolation step implements a temporal interpolation and/or a frequency interpolation.

7. Method of estimation according to claim 5 wherein said interpolation step belongs to the group comprising:

linear interpolations;

Wiener interpolations.

8. Reception device in a multi-antenna system, implementing n transmit antennas, where n is strictly greater than 2, and at least one reception antenna in which n vectors to be transmitted respectively by each of said transmit antennas are associated with a vector of source data, an encoding matrix M of rate equal to 1, implementing reference symbols known to said receiver and enabling this receiver to estimate n transmit channels corresponding respectively to each of said transmit antennas, wherein the reception device comprises:

a receiver, which receives a received reference vector, corresponding to a transmitted reference vector obtained by mathematically transforming reference symbols by said encoding matrix M, and modified by at least one transmission channel for each of said transmit antennas, and

a decoder which, for each of said reception antennas, mathematically transforms said received reference vector by a decoding matrix, which is the inverse of the encoding matrix and takes account of the effect of a transmission channel associated with said reception antenna, to give an estimation of the effects of said transmit channels on said reference symbols.

9. Reception device according to claim 8 , wherein the device forms or is integrated into at least one of the installations belonging to the group comprising:

a base station;

a terminal.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2016
From: ORANGE
To: 3G LICENSING S.A.
Reel/Frame 038217/0001 →
CHANGE OF NAME Recorded Mar 3, 2016
From: FRANCE TELECOM
To: ORANGE
Reel/Frame 037884/0628 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2007
From: LEGOUABLE, RODOLPHE; LE NIR, VINCENT; HELARD, MARYLINE; AUFFRAY, JEAN-MICHEL; HELARD, JEAN-FRANCOIS
To: FRANCE TELECOM
Reel/Frame 018796/0444 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2006
From: KAI, AKINORI
To: ARKRAY, INC.
Reel/Frame 018614/0429 →