IP Library Granted Patent US 8,717,864
Granted Patent B2
US 8,717,864 · App. 13/479,242 · Granted May 6, 2014

Crosstalk mitigation in transmission system

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Quick Facts
Patent No.
US 8,717,864
App. No.
13/479,242
Granted
May 6, 2014
Kind
B2
Abstract

Representative implementations of devices and techniques communication circuitry configured to communicate via a plurality of transmission channels, the communication circuitry includes crosstalk reduction circuitry to reduce crosstalk for a part of the plurality of transmission channels, the part of the plurality of transmission channels is selected from the plurality of transmission channels depending on an error threshold value.

Claims (23)

1. A communication device, comprising:

communication circuitry configured to communicate via a plurality of transmission channels, wherein the communication circuitry comprises crosstalk reduction circuitry to reduce crosstalk for a part of the plurality of transmission channels, wherein the part of the plurality of transmission channels is selected from the plurality of transmission channels depending on an error threshold value.

2. The communication device of claim 1 , wherein each of the transmission channels of the part of the plurality of transmission channels is determined to have an associated error threshold value that exceeds the error threshold value.

3. The communication device of claim 1 , wherein the error threshold value is based on one of a squared absolute error calculation, an absolute error calculation, or an absolute error calculation having real and imaginary parts.

4. The communication device of claim 1 , wherein the crosstalk reduction circuitry is configured to determine an error value associated with each transmission channel of the plurality of transmission channels.

5. The communication device of claim 4 , wherein the determined error value associated with each transmission channel of the plurality of transmission channels is one of a squared absolute error calculation, an absolute error calculation, or an absolute error calculation having real and imaginary parts.

6. The communication device of claim 1 , wherein the communication device is configured to select the part of the plurality of transmission channels from the plurality of transmission channels depending on an error threshold value during a first training phase of a plurality of training phases.

7. The communication device of claim 1 , wherein the plurality of transmission channels are a plurality of xDSL communication lines.

8. A communication device comprising:

a plurality of outputs to couple with a plurality of communication lines,

a plurality of symbol mappers, each symbol mapper being associated with a respective output and configured to map data to be transmitted over the respective communication lines to a data symbol,

a crosstalk precompensator configured to combine data symbols generated by a part of the symbol mappers to generate crosstalk precompensated data symbols for a part of the plurality of communication lines associated with the part of the symbol mappers, and

a control circuit configured to select the part of the plurality of communication lines depending on an error threshold value.

9. The communication device of claim 8 , wherein each of the communication lines of the part of the plurality of communication lines is determined by the control circuit to have an associated error threshold value that exceeds the error threshold value.

10. The communication device of claim 9 , wherein the error threshold value is based on one of a squared absolute error calculation, an absolute error calculation, or an absolute error calculation having real and imaginary parts.

11. The communication device of claim 10 , wherein the communication device is configured to select the part of the plurality of communication lines from the plurality of communication lines depending on an error threshold value during a first training phase of two training phases.

12. The communication device of claim 11 , wherein the first training phase is for training a joining communication line and the second training phase is for active communication lines.

13. A method comprising:

determining an error value for each of a plurality of transmission channels associated with a communication system,

selecting a part of the plurality of transmission channels depending an error threshold value, and

communicating data via the plurality of transmission channels using crosstalk reduction for the part of the plurality of transmission channels.

14. The method of claim 13 , wherein selecting the part of the plurality of transmission channels includes comparing each error value to the error threshold value and selecting the part of the plurality of transmission channels based on the comparison.

15. The method of claim 14 , wherein the selecting the part of the plurality of transmission channels based on the comparison includes selecting transmission channels having an associated error value that exceeds the error threshold value.

Assignments (2)
CHANGE OF NAME Recorded Apr 6, 2022
From: LANTIQ BETEILIGUNGS-GMBH & CO. KG
To: INTEL GERMANY GMBH & CO. KG
Reel/Frame 059645/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2012
From: SCHENK, HEINRICH
To: LANTIQ BETEILIGUNGS-GMBH & CO. KG
Reel/Frame 028913/0051 →