Title :
Efficient Adaptive Nonlinear Filters for Nonlinear Active Noise Control
Author :
Zhou, Dayong ; DeBrunner, Victor
Author_Institution :
Oklahoma Univ., Norman, OK
fDate :
3/1/2007 12:00:00 AM
Abstract :
In this paper, we treat nonlinear active noise control (NANC) with a linear secondary path (LSP) and with a nonlinear secondary path (NSP) in a unified structure by introducing a new virtual secondary path filter concept and using a general function expansion nonlinear filter. We discover that using the filtered-error structure results in greatly reducing the computational complexity of NANC. As a result, we extend the available filtered-error-based algorithms to solve NANC/LSP problems and, furthermore, develop our adjoint filtered-error-based algorithms for NANC/NSP. This family of algorithms is computationally efficient and possesses a simple structure. We also find that the computational complexity of NANC/NSP can be reduced even more using block-oriented nonlinear models, such as the Wiener, Hammerstein, or linear-nonlinear-linear (LNL) models for the NSP. Finally, we use the statistical properties of the virtual secondary path and the robustness of our proposed methods to further reduce the computational complexity and simplify the implementation structure of NANC/NSP when the NSP satisfies certain conditions. Computational complexity and simulation results are given to confirm the efficiency and effectiveness of all of our proposed methods
Keywords :
active noise control; adaptive filters; adaptive signal processing; nonlinear control systems; nonlinear filters; statistical analysis; vibration control; adaptive nonlinear filters; block-oriented nonlinear models; filtered-error structure; general function expansion nonlinear filter; linear secondary path; nonlinear active noise control; nonlinear secondary path; Acoustic noise; Active noise reduction; Adaptive control; Adaptive filters; Automatic voltage control; Computational complexity; Control systems; Noise cancellation; Nonlinear filters; Programmable control; Active noise control (ANC); adaptive filters; nonlinear filters; nonlinear systems;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2006.887636