IP Library Granted Patent US 8,467,438
Granted Patent B2
US 8,467,438 · App. 12/963,729 · Granted Jun 18, 2013

System and method for iterative nonlinear compensation for intermodulation distortion in multicarrier communication systems

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Quick Facts
Patent No.
US 8,467,438
App. No.
12/963,729
Granted
Jun 18, 2013
Kind
B2
Abstract

A receiver is provided that can receive a first signal transmitted on a first carrier and a second signal transmitted on a second carrier. The receiver includes a channel estimation portion, a multicarrier nonlinear equalizer, a first log likelihood computing portion and a second log likelihood computing portion. The channel estimation portion can output a first estimation. The multicarrier nonlinear equalizer can output a first equalized signal and a second equalized signal. The first log likelihood ratio computing portion can output a first log likelihood ratio signal based on the first equalized signal. The second log likelihood ratio computing portion can output a second log likelihood ratio signal based on the second equalized signal. The multicarrier nonlinear equalizer can further output a third equalized signal and a fourth equalized signal. The third equalized signal is based on the first signal, the second signal and the first estimation. The fourth equalized signal is based on the first signal, the second signal and the first estimation.

Claims (47)

1. A receiver operable to receive a first signal transmitted on a first carrier and to receive a second signal transmitted on a second carrier, said receiver comprising:

a channel estimation portion operable to output a first channel estimation based on the first signal and a second channel estimation based on the second signal;

a multicarrier nonlinear equalizer operable to output a first equalized signal based on the first signal and the first channel estimation, and based on interference effects associated with one or more adjacent signals including the second signal, and a second equalized signal based on the second signal and the second channel estimation, and based on interference effects associated with one or more adjacent signals including the first signal;

a first log likelihood ratio computing portion operable to output a first log likelihood ratio signal based on the first equalized signal;

a second log likelihood ratio computing portion operable to output a second log likelihood ratio signal based on the second equalized signal;

wherein said multicarrier nonlinear equalizer is further operable to output a third equalized signal based on the first signal, the first channel estimation and the first log likelihood ratio signal, and a fourth equalized signal based on the second signal, the second channel estimation and the second log likelihood ratio signal;

wherein the first log likelihood ratio computing portion is further operable to output a third log likelihood ratio signal based on the third equalized signal and the first log likelihood ratio signal; and

wherein the second log likelihood ratio computing portion is operable to output a fourth log likelihood ratio signal based on the fourth equalized signal and the second log likelihood ratio signal.

2. The receiver of claim 1 , further comprising:

a first deinterleaver operable to output a first deinterleaved signal based on the first log likelihood ratio signal; and

a second deinterleaver operable to output a second deinterleaved signal based on the second log likelihood ratio signal.

3. The receiver of claim 2 , further comprising:

a first decoder operable to output a first decoded signal based on the first deinterleaved signal; and

a second decoder operable to output a second decoded signal based on the second deinterleaved signal.

4. The receiver of claim 3 , further comprising:

a first interleaver operable to output a first interleaved signal based on the first decoded signal; and

a second interleaver operable to output a second interleaved signal based on the second decoded signal.

5. The receiver of claim 4 ,

wherein said first log likelihood ratio computing portion is operable to output the third log likelihood ratio signal based on the third equalized signal and the first decoded signal, and wherein said second log likelihood ratio computing portion is operable to output the fourth log likelihood ratio signal based on the fourth equalized signal and the second decoded signal.

6. The receiver of claim 3 , wherein said first decoder comprises a soft-in soft-out decoder.

7. The receiver of claim 3 , wherein said first decoder comprises a soft-in hard-out decoder.

8. The receiver of claim 1 , wherein said first log likelihood ratio computing portion is operable to compute the first log likelihood ratio based on a conditional probability density function based on a Bivariate distribution.

9. The receiver of claim 1 , wherein said multicarrier nonlinear equalizer comprises a multicarrier Volterra equalizer.

10. A method of receiving a first signal transmitted on a first carrier and a second signal transmitted on a second carrier, said method comprising:

outputting, via a channel estimation portion, a first channel estimation based on the first signal and a second channel estimation based on the second signal;

outputting, via a multicarrier nonlinear equalizer, a first equalized signal based on the first signal and the first channel estimation, and based on interference effects associated with one or more adjacent signals including the second signal, and a second equalized signal based on the second signal and the second channel estimation, and based on interference effects associated with one or more adjacent signals including the first signal;

outputting, via a first log likelihood ratio computing portion, a first log likelihood ratio signal based on the first equalized signal;

outputting, via a second log likelihood ratio computing portion, a second log likelihood ratio signal based on the second equalized signal;

outputting, via the multicarrier nonlinear equalizer, a third equalized signal based on the first signal, the first channel estimation and the first log likelihood ratio signal, and a fourth equalized signal based on the second signal, the second channel estimation and the second log likelihood ratio signal;

outputting, via the first log likelihood ratio computing portion, a third log likelihood ratio signal based on the third equalized signal and the first log likelihood ratio signal; and

outputting, via the second log likelihood ratio computing portion, a fourth log likelihood ratio signal based on the fourth equalized signal and the second log likelihood ratio signal.

11. The method of claim 10 , further comprising:

outputting, via a first deinterleaver, a first deinterleaved signal based on the first log likelihood ratio signal; and

outputting, via a second deinterleaver, a second deinterleaved signal based on the second log likelihood ratio signal.

12. The method of claim 11 , further comprising:

outputting, via a first decoder, a first decoded signal based on the first deinterleaved signal; and

outputting, via a second decoder, a second decoded signal based on the second deinterleaved signal.

13. The method of claim 12 , further comprising:

outputting, via a first interleaver, a first interleaved signal based on the first decoded signal; and

outputting, via a second interleaver, a second interleaved signal based on the second decoded signal.

14. The method of claim 13 ,

wherein the third log likelihood ratio signal is based on the third equalized signal and the first decoded signal, and

wherein the fourth log likelihood ratio signal is based on the fourth equalized signal and the second decoded signal.

15. The method of claim 12 , wherein the first decoded signal is output via a soft-in soft-out decoder.

16. The method of claim 12 , wherein the first decoded signal is output via a soft-in hard-out decoder.

17. The method of claim 10 , wherein the first log likelihood ratio signal is further based on a conditional probability density function based on a Bivariate distribution.

18. The method of claim 10 , wherein the first equalized signal, the second equalized signal, the third equalized signal and the fourth equalized signal are output via a multicarrier Volterra equalizer.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION NUMBER 15649418 PREVIOUSLY RECORDED ON REEL 050600 FRAME 0314. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF PATENT SECURITY AGREEMENTS. Recorded Sep 3, 2020
From: WELLS FARGO, NATIONAL BANK ASSOCIATION
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 053703/0367 →
ASSIGNMENT OF PATENT SECURITY AGREEMENTS Recorded Oct 1, 2019
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 050600/0314 →
SECURITY INTEREST Recorded Feb 18, 2016
From: HUGHES NETWORK SYSTEMS LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION - AS COLLATERAL AGENT
Reel/Frame 037847/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2010
From: BEIDAS, BASSEL F
To: HUGHES NETWORK SYSTEMS, LLC
Reel/Frame 025482/0652 →