Improved adaptive algorithm for active noise control of impulsive noise

M. Akhtar, W. Mitsuhashi
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引用次数: 10

Abstract

The paper concerns active control of impulsive noise. The most famous filtered-x least mean square (FxLMS) algorithm for active noise control (ANC) systems is based on the minimization of variance of mean-squared-error signal. The impulsive noise can be modeled using non-Gaussian stable process for which second order moments do not exist. The FxLMS algorithm, therefore, becomes unstable for the impulsive noise. Among the existing algorithms for ANC of impulsive noise, one is based on the minimizing least mean p-power (LMP) of the error signal, resulting in FxLMP algorithm. The other is based on modifying; on the basis of statistics properties; the reference signal in the update equation of the FxLMS algorithm. In this paper, the proposed algorithm is an extension of the later approach. Extensive simulations are carried out, which demonstrate the effectiveness of the proposed algorithm. It achieves the best performance among the existing algorithms, and at the same computational complexity as that of FxLMS algorithm.
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改进的自适应脉冲噪声主动控制算法
本文主要研究脉冲噪声的主动控制。在主动噪声控制(ANC)系统中,最著名的滤波最小均方(FxLMS)算法是基于均方误差信号方差的最小化。脉冲噪声可以用不存在二阶矩的非高斯稳定过程来建模。因此,FxLMS算法在脉冲噪声下变得不稳定。在现有的脉冲噪声降噪算法中,有一种是基于误差信号的最小平均p-幂(LMP)的最小化,即FxLMP算法。另一种是基于修改;基于统计性质;FxLMS算法更新方程中的参考信号。在本文中,所提出的算法是后一种方法的扩展。大量的仿真结果证明了该算法的有效性。该算法在现有算法中性能最好,且计算复杂度与FxLMS算法相当。
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