DocumentCode
2618387
Title
Acoustic echo cancellation using a computationally efficient transform domain LMS adaptive filter
Author
Krishna, E. Hari ; Raghuram, M. ; Madhav, K. Venu ; Reddy, K. Ashoka
Author_Institution
Dept. of ECE, Kakatiya Inst. of Technol. & Sci., Warangal, India
fYear
2010
fDate
10-13 May 2010
Firstpage
409
Lastpage
412
Abstract
Applications such as hands-free telephony, tele-classing and video-conferencing require the use of an acoustic echo canceller (AEC) to eliminate acoustic feedback from the loudspeaker to the microphone. Room acoustic echo cancellation typically requires adaptive filters with thousands of coefficients. Transform domain adaptive filter finds best solution for echo cancellation as it results in a significant reduction in the computational burden. Literature finds different orthogonal transform based adaptive filters for echo cancellation. In this paper, we present Hirschman Optimal Transform (HOT) based adaptive filter for elimination of echo from audio signals. Simulations and analysis show that HOT based LMS adaptive filter is computationally efficient and has fast convergence compared to LMS, NLMS and DFT-LMS. The computed Echo Return Loss Enhancement (ERLE), the general evaluation measure of echo cancellation, established the efficacy of proposed HOT based adaptive algorithm. In addition, the spectral flatness measure showed a significant improvement in cancelling the acoustic echo.
Keywords
acoustic signal processing; adaptive filters; architectural acoustics; echo suppression; least mean squares methods; loudspeakers; microphones; transforms; Hirschman optimal transform; acoustic feedback elimination; audio signal; computationally efficient transform domain LMS adaptive filter; echo return loss enhancement; loudspeaker; microphone; room acoustic echo cancellation; Adaptation model; Adaptive filters; Equations; Filtering algorithms; Least squares approximation; Mathematical model; Transforms; Echo Cancellation; HOT; LMS;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Sciences Signal Processing and their Applications (ISSPA), 2010 10th International Conference on
Conference_Location
Kuala Lumpur
Print_ISBN
978-1-4244-7165-2
Type
conf
DOI
10.1109/ISSPA.2010.5605458
Filename
5605458
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