Title
Multi-frequency narrowband active noise control with online feedback-path modeling using IIR adaptive notch filters
Abstract
In this paper, a multi-frequency narrowband active noise control (ANC, NANC) system is proposed which consists of an online feedback-path modeling (FBPM) subsystem and a cascaded adaptive IIR notch filter (ANF) bank. An auxiliary white Gaussian noise (AWGN) scaled by a nonlinear function of the residual noise is injected into the secondary source to implement and facilitate the FBPM. The coupling between the FBPM subsystem and the controller is significantly reduced by the cascaded ANF bank. The bandpass output produced by each ANF bank cell is fed to a two-weight sub-controller or magnitude and phase adjuster (MPA). The normalized gradient (NG) and the FXLMS algorithm are applied to the ANFs and the NANC controller, respectively. The FBPM subsystem is updated by the LMS algorithm. Extensive simulations reveal the superior effectiveness of the proposed ANC system over a recently developed NANC system.
Year
DOI
Venue
2019
10.1109/APCCAS47518.2019.8953160
2019 IEEE Asia Pacific Conference on Circuits and Systems (APCCAS)
Keywords
Field
DocType
Active noise control (ANC),feedback path modeling (FBPM),IIR notch filter,auxiliary white Gaussian noise,noise reduction performance,magnitude / phase adjuster (MPA)
Least mean squares filter,Band-stop filter,Control theory,Narrowband,Band-pass filter,Computer science,Control theory,Infinite impulse response,Electronic engineering,Active noise control,Additive white Gaussian noise
Conference
ISBN
Citations 
PageRank 
978-1-7281-2941-9
0
0.34
References 
Authors
4
5
Name
Order
Citations
PageRank
James Z. Wang17526403.00
Y. Xiao200.68
Lifei Ma3157.45
Khorasani Khorasani400.34
Y. Ma500.68