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基于分数阶低阶矩的脉冲噪声源有源噪声控制自适应算法。

Fractional lower order moment based adaptive algorithms for active noise control of impulsive noise sources.

机构信息

The University of Electro-Communications, Chofugaoka 1-5-1, Chofu-shi, Tokyo 182-8585, Japan.

出版信息

J Acoust Soc Am. 2012 Dec;132(6):EL456-62. doi: 10.1121/1.4766275.

Abstract

This letter deals with active noise control (ANC) for impulsive noise sources being modeled using non-Gaussian stable process. The filtered-x least mean square algorithm is based on minimization of the variance of the error signal and becomes unstable for impulsive noise. The filtered-x least mean p-power algorithm-based on minimizing the fractional lower order moment-gives a robust performance for impulsive ANC; however, its convergence speed is very slow. This letter proposes modifying and employing a generalized normalized LMP algorithm for impulsive ANC. Extensive simulations are carried out which demonstrate the effectiveness of the proposed algorithm.

摘要

这封信讨论了使用非高斯稳定过程对脉冲噪声源进行主动噪声控制(ANC)的问题。滤波-x 最小均方算法基于误差信号方差的最小化,对于脉冲噪声是不稳定的。基于最小化分数低阶矩的滤波-x 最小 p 次方算法在脉冲 ANC 中具有稳健的性能,但其收敛速度非常缓慢。本信提出了修改和应用广义归一化 LMP 算法用于脉冲 ANC。进行了广泛的模拟,证明了所提出算法的有效性。

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