DocumentCode
1596750
Title
Performance of A Robust Variable Step-Size LMS Adaptive Algorithm for Multiple Echo Cancellation in Telephone Network
Author
Tingchan, W. ; Chutchavong, V. ; Benjangkaprasert, C.
Author_Institution
Dept. of Inf. Eng., King Mongkut´´s Inst. of Technol., Bangkok
fYear
2006
Firstpage
3173
Lastpage
3176
Abstract
The used of adaptive echo canceller is to estimate the impulse response of echo path and synthesizes an echo replica to subtracted from the echo signal in telephone network. Moreover, most echo paths change their characteristics frequency according to the noisy environment. To cancel multiple echoes, the number of tap coefficients of a conventional echo canceller must be large. The length of the echo canceller will directly affect both the degree of accuracy and the convergence speed the adaptation process. In this paper presents the comparison of the performance of the robust variable step-size LMS adaptive algorithm and the LMS adaptive algorithm for cancels multiple echoes signal in telephone networks. The core of this paper is a multiple delay estimator, which estimates and distributes delays to each individual fixed length short echo canceller. The simulation results are show that with the delays given, the robust variable step-size LMS adaptive algorithm can update the echo path accurately
Keywords
delay estimation; echo suppression; least mean squares methods; telephone networks; transient response; LMS adaptive algorithm; echo cancellation; impulse response; multiple delay estimator; robust variable step-size; telephone network; Adaptive algorithm; Delay estimation; Echo cancellers; Frequency; Least squares approximation; Network synthesis; Robustness; Signal synthesis; Telephony; Working environment noise; Adaptive algorithm; Echo canceller; Variable step-size algorithm;
fLanguage
English
Publisher
ieee
Conference_Titel
SICE-ICASE, 2006. International Joint Conference
Conference_Location
Busan
Print_ISBN
89-950038-4-7
Electronic_ISBN
89-950038-5-5
Type
conf
DOI
10.1109/SICE.2006.314864
Filename
4108192
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