DocumentCode :
788471
Title :
A New Robust Narrowband Active Noise Control System in the Presence of Frequency Mismatch
Author :
Xiao, Yegui ; Ma, Liying ; Khorasani, K. ; Ikuta, Akira
Author_Institution :
Dept. of Manage. & Inf. Syst., Hiroshima Prefectural Univ.
Volume :
14
Issue :
6
fYear :
2006
Firstpage :
2189
Lastpage :
2200
Abstract :
Narrowband active noise control (ANC) systems have many real-life applications where the noise signals generated by rotating machines are modeled as sinusoidal signals in additive noise. However, when the timing signal sensor, such as a tachometer used to identify the signal frequencies, and the cosine wave generator contain errors, the frequencies of reference sinusoids fed to each ANC channel will then be different from the real primary noise signal frequencies. This difference is referred to as frequency mismatch (FM). In this paper, through extensive simulations, we first demonstrate that the performance capabilities of a conventional parallel form narrowband ANC system using the filtered-x LMS (FxLMS) algorithm degrades significantly even for an FM as small as 1 %. Convergence of the algorithm in the mean sense is also analytically investigated for a better understanding of its performance degradation. Next, we propose a new narrowband ANC system that successfully compensates for the performance degradations due to the FM. The amplitude/phase adjustment of reference sinusoids and the FM mitigations in the proposed system are performed simultaneously in a harmonic fashion such that the influence of the FM can be removed almost completely. Simulations as well as application to a real noise signal are provided to demonstrate the effectiveness of the proposed new system
Keywords :
acoustic signal processing; active noise control; electric machines; filtering theory; frequency modulation; least mean squares methods; signal denoising; FM; amplitude-phase adjustment; cosine wave generator; filtered-x LMS; frequency mismatch; noise signals; phase adjustment; robust narrowband active noise control system; rotating machines; Active noise reduction; Additive noise; Control systems; Degradation; Frequency; Narrowband; Noise generators; Noise robustness; Robust control; Signal processing; Convergence analysis; filtered-x least mean square (FxLMS); frequency mismatch; narrowband active noise control; sinusoidal signal;
fLanguage :
English
Journal_Title :
Audio, Speech, and Language Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1558-7916
Type :
jour
DOI :
10.1109/TASL.2006.872604
Filename :
1709906
Link To Document :
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