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A multi-resolution filtered-x LMS algorithm based on discrete wavelet transform for active noise control

delete2016-01-01
delete54
PRE
AI
C
C.-M. Lee *
Z
Zhaorui Xu
DOI:10.1016/j.ymssp.2015.05.024delete
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Abstract

Abstract

En 中文
We have developed a new active control algorithm based on discrete wavelet transform (DWT) for both stationary and non-stationary noise control. First, the Mallat pyramidal algorithm is introduced to implement the DWT, which can decompose the reference signal into several sub-bands with multi-resolution and provides a perfect reconstruction (PR) procedure. To reduce the extra computational complexity introduced by DINT, an efficient strategy is proposed that updates the adaptive filter coefficients in the frequency domainDeepthi B.B using a fast Fourier transform (FFT). Based on the reference noise source, a 'Haar' wavelet is employed and by decomposing the noise signal into two sub-band (3-band), the proposed DWT-FFT-based FXLMS (DWT-FFT-FXLMS) algorithm has greatly reduced complexity and a better convergence performance compared to a time domain filtered-x least mean square (TD-FXLMS) algorithm. As a result of the outstanding time-frequency characteristics of wavelet analysis, the proposed DWT-FFT-FXLMS algorithm can effectively cancel both stationary and non-stationary noise, whereas the frequency domain FXLMS (FD-FXLMS) algorithm cannot approach this point. (C) 2015 Elsevier Ltd. All rights reserved.
Keywords:
Active noise control
Discrete wavelet transform
Multi-resolution
FXLMS algorithm
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Journal

Mechanical Systems and Signal Processing cover
Mechanical Systems and Signal Processing
IF:
8.9
Papers:
1.3W
Citations:
6.6W

Organization

U
University of Ulsan
Scholars:
1.8W
Papers: 1.7W
Citations: 1.4W