Title :
An approach to implement LMS and NLMS adaptive noise cancellation algorithm in frequency domain
Author :
Nagal, Rachana ; Kumar, Pranaw ; Bansal, Poonam
Author_Institution :
Dept. of ECE/ICE, ASET, New Delhi, India
Abstract :
This paper presents the implementation of adaptive algorithms like Least Mean Square (LMS) and Normalized Least Mean Square (NLMS) in the frequency domain and their comparison to that implemented in the time domain. Adaptive filtering using adaptive algorithm in frequency domain can be done by taking Fourier Transform of input signal and independent weigh coefficient. By frequency domain approach significant reduction in mathematical computation has been achieved. An expression for updating the weights is implemented in the frequency domain and statistical analysis has been performed. The SNR (Signal to Noise Ratio) is a parameter used to evaluate the performance with different step size. The signal power and noise power has also been calculated using MATLAB. The SNR of output signal rises about 8-9 times in frequency domain than the time domain.
Keywords :
Fourier transforms; adaptive filters; adaptive signal processing; frequency-domain analysis; least mean squares methods; noise abatement; statistical analysis; time-domain analysis; Fourier transform; MATLAB; NLMS adaptive noise cancellation algorithm; SNR; adaptive algorithms; adaptive filtering; frequency domain; independent weigh coefficient; input signal; mathematical computation; noise power; normalized least mean square; signal power; signal to noise ratio; statistical analysis; time domain; Adaptive filters; Filtering algorithms; Frequency-domain analysis; Least squares approximations; Signal to noise ratio; Time-domain analysis; Frequency Domain; LMS algorithm; NLMS algorithm; SNR; Signal to Noise Ratio; Time Domain;
Conference_Titel :
Confluence The Next Generation Information Technology Summit (Confluence), 2014 5th International Conference -
Conference_Location :
Noida
Print_ISBN :
978-1-4799-4237-4
DOI :
10.1109/CONFLUENCE.2014.6949268