DocumentCode :
698412
Title :
Low-power implementation of a subband Fast Affine Projection algorithm for acoustic echo cancellation
Author :
Hermann, David ; Cornu, Etienne ; Soltani, Tina ; Sheikhzadeh, Hamid
Author_Institution :
AMI Semicond., Waterloo, ON, Canada
fYear :
2005
fDate :
4-8 Sept. 2005
Firstpage :
1
Lastpage :
4
Abstract :
Recent results have demonstrated the performance benefits of using Fast Affine Projection (FAP) algorithms for echo cancellation in oversampled filterbanks. Low-power, low resource implementations of these algorithms are useful for solving acoustic echo problems in size and resource constrained applications such as portable wireless headsets and portable or low-power hands-free phones. This paper describes a novel real-time subband implementation of the Gauss-Seidel Fast Affine Projection (GSFAP) algorithm. The algorithm uses online regularization to eliminate the need for voice activity detectors and greatly simplifies the calibration and deployment of the system. The algorithm is deployed on a DSP system with three processing units, including a filterbank co-processor customized for subband adaptive filtering. The resulting system consumes less than 7 mW while providing up to 30 dB of echo return loss enhancement in a typical hands-free speakerphone application.
Keywords :
acoustic signal processing; channel bank filters; echo suppression; DSP system; GSFAP algorithm; Gauss-Seidel fast affine projection algorithm; acoustic echo cancellation; echo return loss enhancement; filterbank co-processor; hands-free speakerphone application; novel real-time subband implementation; online regularization; subband adaptive filtering; subband fast affine projection algorithm; voice activity detectors; Coprocessors; Digital signal processing; Filter banks; Frequency synthesizers; Indexes; Microphones; Receivers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference, 2005 13th European
Conference_Location :
Antalya
Print_ISBN :
978-160-4238-21-1
Type :
conf
Filename :
7077997
Link To Document :
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