IP Library Granted Patent US 6,990,062
Granted Patent B2
US 6,990,062 · App. 09/904,924 · Granted Jan 24, 2006

Reduced complexity DMT/OFDM transceiver

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Quick Facts
Patent No.
US 6,990,062
App. No.
09/904,924
Granted
Jan 24, 2006
Kind
B2
Abstract

A DMT/OFDM transceiver wherein communication occurs between stations in the form of symbols distributed and transmitted in channels which are allocated when making a link between the stations, each channel supporting a number of bits depending on the spectral response of the link when established. Instead of providing separate modules for performing iFFT's and FFT's, the transceiver has only a single FFT, or iFFT which operates on real and imaginary parts of the data stream; the outputs of the FFT or iFFT being supplied to a post processing stage where simultaneous equations having real and imaginary terms for the transmit and receive data, are solved in order to separate the transmit and receive data.

Claims (17)

1. A discrete multitone (DMT) and orthogonal frequency division multiplex (OFDM) transceiver wherein communication occurs between stations in the form of symbols; the symbols being distributed and transmitted in channels which are allocated when making a link between the stations, each channel supporting a number of bits depending on the spectral response of the link when it is established; said transceiver having a transmit mode where, according to the channel allocations, variable length sequences of bits are encoded and inverse fast Fourier transforms (iFFT's) are normally performed, and a receive mode, in which the received symbols are sampled and fast Fourier transforms (FFT's) are normally performed on the samples to produce a data sequence, said sequence being decoded into variable length sequences;

characterised in that only a single FFT, or iFFT operates on real and imaginary parts of the data stream; the outputs of the FFT or iFFT being supplied to a post processing stage for solving simultaneous equations having real and imaginary terms, in order to derive parameters for separating the transmit and receive data.

2. A transceiver according to claim 1 , wherein the FFT's are performed on the complex conjugate QAM pairs, and the FFT's are also performed on received QAM pairs.

3. A transceiver according to claim 2 , wherein the output from the FFT's are of the form y[x]=P+jQ and y[N−x]=R+jS, and including a stage of post processing which separates the transmit data, tx data[x], from the receive data, rxdata[x], on the basis of solving:

A =( Q+S )/2

B =( Q−S )/2

Where,

rx data[ x]=A+jB

tx data[ x]=P−S and tx data[ N−x]=R−Q.

4. A method of discrete multitone (DMT) and orthogonal frequency division multiplex (OFDM) communication between stations, wherein symbols are distributed and transmitted in channels which are allocated when making a link between the stations, each channel supporting a number of bits depending on the spectral response of the link when it is established; the method having a transmit mode where, according to the channel allocations, variable length sequences of bits are encoded and inverse fast Fourier transforms (iFFT's) are normally performed, and a receive mode, in which the received symbols are sampled and fast Fourier transforms (FFT's) are normally performed on the samples to produce a data sequence, said sequence being decoded into variable length sequences; characterised by performing only a single FFT, or iFFT on real and imaginary parts of the data stream; and supplying the outputs of the FFT or iFFT to a post processing stage for solving simultaneous equations having real and imaginary terms, in order to derive parameters for separating the transmit and receive data.

5. A method according to claim 4 , wherein the FFT's are performed on the complex conjugate QAM pairs, and the FFT's are also performed on received QAM pairs.

6. A method according to claim 5 , wherein the output from the FFT's are of the form y[x]=P+jQ and y[N−x]=R+jS, wherein the post processing separates the transmit data, tx data[x], from the receive data, rxdata[x], on the basis of solving:

A =( Q+S )/2

B =( Q−S )/2

Where,

rx data[ x]=A+jB

tx data[ x]=P−S and tx data[ N−x]=R−Q

Assignments (11)
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2015
From: SILICON VALLEY BANK
To: IKANOS COMMUNICATIONS, INC.
Reel/Frame 036733/0031 →
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2015
From: ALCATEL-LUCENT USA, INC.
To: IKANOS COMMUNICATIONS, INC.
Reel/Frame 036732/0876 →
SECURITY INTEREST Recorded Jun 10, 2015
From: IKANOS COMMUNICATIONS, INC.
To: SILICON VALLEY BANK
Reel/Frame 035874/0351 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded May 5, 2015
From: IKANOS COMMUNICATIONS, INC.
To: ALCATEL-LUCENT USA, INC.
Reel/Frame 035581/0710 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2009
From: CONEXANT SYSTEMS UK LTD.
To: IKANOS COMMUNICATIONS, INC.
Reel/Frame 023163/0795 →
RELEASE OF SECURITY INTEREST Recorded Aug 24, 2009
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
To: BROOKTREE BROADBAND HOLDING, INC
Reel/Frame 023148/0566 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2008
From: GLOBESPANVIRATA LIMITED
To: CONEXANT SYSTEMS UK LIMITED
Reel/Frame 021050/0374 →
CHANGE OF NAME Recorded Jun 5, 2008
From: VIRATA LIMITED
To: GLOBESPANVIRATA LIMITED
Reel/Frame 021050/0310 →
SECURITY AGREEMENT Recorded Nov 21, 2006
From: BROOKTREE BROADBAND HOLDING, INC.
To: BANK OF NEW YORK TRUST COMPANY, N.A., THE
Reel/Frame 018573/0337 →
MERGER Recorded Nov 2, 2006
From: VIRATA LIMITED
To: CONEXANT SYSTEMS, INC.
Reel/Frame 018471/0358 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2001
From: GREAVES, DAVID; JACKSON, MARTIN K.
To: VIRATA LIMITED
Reel/Frame 012233/0484 →