Title :
Acoustic Echo Cancellation using time and frequency domain adaptive filter methods on Tms320c6713dsk
Author :
Gopalaiah ; Suresh, K.
Author_Institution :
Dayananda Sagar Coll. of Eng., Bangalore, India
Abstract :
Acoustic Echo Cancelation is a typical event in today´s telecommunication fields. The input speech signal interference caused by acoustic echo is disturbing for both users side and causes a reduction in the quality of the original signal. The adaptive filtering techniques are used to reduce the unwanted echo, and increasing quality of the speech signal. This Paper focus on different Adaptive filters algorithms and characterized by the Normalized Least Mean Square (NLMS) and Variable Step Size Least Mean Square (VSSLMS) and also This Paper actualizes Real Time Acoustic Echo Cancellation on Tms320c6713dsk. The primary modules of this reverberation canceller are a versatile channel framework utilizing Normalized Least Mean Square (NLMS) calculation, a Double-Talk Detector (DTD) and a Non-Linear Processor (NLP). The Setup of NLMS based versatile framework, Modified NLMS with Variable Step Size calculations and Frequency Domain based Fast LMS algorithms are to be actualized on the DSP equipment. This implementation shows fast response, speed, convergence of time and good tracking capability. The calculation of different adaptive algorithms must be analysed utilizing MATLAB.
Keywords :
acoustic signal processing; adaptive filters; echo; frequency-domain analysis; speech processing; time-domain analysis; Double Talk Detector; MATLAB; NonLinear Processor; Normalized Least Mean Square; Tms320c6713dsk; Variable Step Size Least Mean Square; acoustic echo cancellation; frequency domain adaptive filter method; input speech signal interference; reverberation canceller; signal quality; telecommunication fields; time domain adaptive filter method; Adaptive filters; Algorithm design and analysis; Echo cancellers; Frequency-domain analysis; Least squares approximations; Signal processing algorithms; Acoustic echo cancellation; Adaptive filters; DTD and NLP; LMS; Modified NLMS Algorithm; NLMS;
Conference_Titel :
Electronics,Communication and Computational Engineering (ICECCE), 2014 International Conference on
DOI :
10.1109/ICECCE.2014.7086623