窄带噪声主动控制系统采用FxLMS算法

E. Priya, V. Saravanan, N. Santhiyakumari
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引用次数: 4

摘要

主动噪声控制(ANC)是一种有效降低噪声的方法。滤波- x最小均方(FxLMS)算法具有较好的鲁棒性和较低的复杂度,是自适应滤波控制器的最佳选择。本文将FxLMS算法应用于窄带噪声检测。系统采用可变学习参数(可变步长)来提高收敛速度和降低噪声。采用变步长FxLMS (VSFxLMS)算法的目的是在保证二次脉冲响应的同时,以新颖的收敛速度降低声源中的噪声水平。利用MATLAB进行了仿真。为了实现有效和高效的噪声控制,首选在窄频带内降低噪声,并给出了与固定步长FxLMS (FSFxLMS)的比较结果。
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Active noise control system for narrowband noise using FxLMS algorithm
An active noise control (ANC) is a method used to reduce noise effectively. The filtered-X least mean square (FxLMS) algorithm is considered to be the best choice for its reduced complexity and robustness, especially for controller in adaptive filter. In this paper FxLMS algorithm is applied for narrow band noise. Also the system uses variable learning parameter (variable step size) to improve the convergence speed and reduction in noise. The objective of using variable step FxLMS (VSFxLMS) algorithm is to reduce the noise level in source with novel convergence speed in addition to secondary impulse response. Simulations are carried out using MATLAB. The reduction of noise in a narrow band is preferred so that effective and efficient noise control will be achieved and a comparative result with fixed step FxLMS (FSFxLMS) is shown.
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