International Journal of Electrical and Computer Engineering
Vol 2, No 3: June 2012

An Efficient Adaptive Noise Cancellation Scheme Using ALE and NLMS Filters

Jafar Ramadhan Mohammed (University of Mosul)
Muhammad Safder Shafi (COMSATS Institute of InformationTechnology (CIIT), Islamabad, PAKISTAN)
Sahar Imtiaz (COMSATS Institute of InformationTechnology (CIIT)
Rafay Iqbal Ansari (COMSATS Institute of InformationTechnology (CIIT))
Mansoor Khan (COMSATS Institute of InformationTechnology (CIIT))



Article Info

Publish Date
15 Mar 2012

Abstract

The basic theme of our paper is to implement a new idea of noise reduction in the real time applications using the concepts of adaptive filters.  Our model which is presented as one of the solutions is based on two stages of operation with the first stage based on the ALE (Adaptive Line Enhancer) filters and the second stage on NLMS (Normalized Least Mean Square) filter. The first stage reduces the sinusoidal noise from the input signal and the second stage reduces the wideband noise. Two input sources of voice are used; one for the normal speech and the other for the noise input, using separate microphones for both signals. The first signal is of the corrupted speech signal and the second signal is of only the noise containing both wideband and narrowband noise. In the first stage the narrowband noise is reduced by using the ALE technique. The second stage gets a signal with ideally only the wideband noise which is reduced using the NLMS technique.  In both the stages the concerned algorithms are used to update the filter coefficients in such a way that the noise is cancelled out from the signal and a clean speech signal is heard at the output.DOI:http://dx.doi.org/10.11591/ijece.v2i3.246

Copyrights © 2012






Journal Info

Abbrev

IJECE

Publisher

Subject

Computer Science & IT Electrical & Electronics Engineering

Description

International Journal of Electrical and Computer Engineering (IJECE, ISSN: 2088-8708, a SCOPUS indexed Journal, SNIP: 1.001; SJR: 0.296; CiteScore: 0.99; SJR & CiteScore Q2 on both of the Electrical & Electronics Engineering, and Computer Science) is the official publication of the Institute of ...