DocumentCode :
1380839
Title :
On Signal-to-Noise Ratio-Assisted Crosstalk Channel Estimation in Downstream DSL Systems
Author :
Guenach, Mamoun ; Louveaux, Jerome ; Vandendorpe, Luc ; Whiting, Phil ; Maes, Jochen ; Peeters, Michael
Author_Institution :
Alcatel-Lucent Bell Labs. Fixed Access, Antwerp, Belgium
Volume :
58
Issue :
4
fYear :
2010
fDate :
4/1/2010 12:00:00 AM
Firstpage :
2327
Lastpage :
2338
Abstract :
Downstream (DS) crosstalk channels of digital subscriber line systems can be estimated based on the reported signal-to-noise ratio (SNR). In the case of an already active victim line (VL) impacted by the joining of a new disturber line (DL), sending perturbing signals on the VL and reporting the SNRs allow the estimation of the crosstalk channel from the DL to the VL. This paper generalizes that concept to include full startup, tracking and joining scenarios as well as the impact of different perturbation signal choices. Additionally, the sensitivity of the algorithm to different sources of imperfection is analyzed. Simulation results reveal that starting without precoding, and updating the precoder matrix based on the DS crosstalk channel estimates, the far-end crosstalk-free SNR can be reached in a limited number of iterations (e.g., 36 SNR measurements are needed for the four lines case). The SNR-assisted method is documented in an informative appendix of the draft G.vector recommendation as a backward compatible method for very high speed digital subscriber lines (VDSL2) and, hence, can be used for channel acquisition today.
Keywords :
channel estimation; crosstalk; digital subscriber lines; G.vector; SNR; channel acquisition; channel estimation; crosstalk; digital subscriber line systems; disturber line; downstream DSL systems; signal-to-noise ratio; very high speed digital subscriber lines; victim line; Channel estimation; digital subscriber lines (DSLs); vectoring;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2010.2040408
Filename :
5378619
Link To Document :
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