DocumentCode :
990394
Title :
Performance analysis of an echo-cancellation arrangement that compensates for frequency offset in the far echo
Author :
Wang, Jin-Der ; Werner, Jean-Jacques
Author_Institution :
AT&T Inf. Syst., Middletown, NJ, USA
Volume :
36
Issue :
3
fYear :
1988
fDate :
3/1/1988 12:00:00 AM
Firstpage :
364
Lastpage :
372
Abstract :
Analytical and experimental results are presented for the performance of one echo canceller arrangement. It consists of a data-driven echo canceller having a so-called cross-coupled structure, which is followed by a rotator and a phase-locked loop (PLL). A cross-coupled echo canceller structure without a PLL is analyzed first. Expressions for speed of convergence and achievable echo-return-loss enhancement (ERLE) in the presence of frequency offset are derived. These results are compared in previously published results for a noncross-coupling echo canceller structure. Specifically, it is shown that the cross-coupled structure converges twice as fast as the noncross-coupled structure and provide an achievable ERLE that is about 6 dB better. The joint adaptation of the echo canceller and the PLL is then studied. It is shown that it is always possible to choose design parameters for the echo canceller which are consistent with adaptation requirements under double-talking conditions, provided that the PLL is properly engineered. The sensitivity of the performance of PLL to the power level of the far echo, as well as possible solutions to this problem, are discussed
Keywords :
echo suppression; phase-locked loops; signal processing; telephone station equipment; PLL; cross-coupled structure; echo canceller; echo-return-loss enhancement; far echo; frequency offset; modems; phase-locked loop; rotator; Baseband; Convergence; Demodulation; Design engineering; Echo cancellers; Frequency modulation; Modems; Performance analysis; Phase locked loops; Power engineering and energy;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/26.1461
Filename :
1461
Link To Document :
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