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A Simplified Method For Online Acoustic Feedback Path Modeling And Neutralization In Multichannel Active Noise Control Systems

机译:多通道有源噪声控制系统中在线声反馈路径建模和中和的简化方法

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The presence of strong acoustic feedback degrades the performance of active noise control (ANC) systems, and in the worst case the ANC system may become unstable. In this paper, we investigate additive-random-noise-based methods for online feedback path modeling and neutralization (FBPMN) in multichannel ANC systems. In existing methods, separate filters are used for each acoustic feedback path: one for online feedback path modeling (FBPM), and another for feedback path neutralization (FBPN). Furthermore, the existing method works well for predictable noise sources but its performance degrades for unpredictable sources. This paper attempts to solve these problems in multichannel ANC systems. The proposed method is a modification and extension of previous work for online FBPMN in single-channel ANC systems. In the proposed method, we combine the two tasks of FBPM and FBPN in one online FBPMN filter, and hence, the computational complexity of the proposed method is lower than existing methods. Computer simulations are carried out to demonstrate the effectiveness of the proposed method. It is shown that the proposed method achieves better performance than existing methods for both predictable and unpredictable noise sources. Furthermore, this improved performance is achieved at somewhat reduced computational complexity.
机译:强声反馈的存在会降低有源噪声控制(ANC)系统的性能,在最坏的情况下,ANC系统可能会变得不稳定。在本文中,我们研究了基于加法随机噪声的多通道ANC系统中在线反馈路径建模和中和(FBPMN)的方法。在现有方法中,单独的滤波器用于每个声音反馈路径:一个用于在线反馈路径建模(FBPM),另一个用于反馈路径中和(FBPN)。此外,现有方法对于可预测的噪声源效果很好,但是对于不可预测的噪声源,其性能会下降。本文试图解决多通道ANC系统中的这些问题。所提出的方法是对单通道ANC系统中在线FBPMN的先前工作的修改和扩展。在该方法中,我们将FBPM和FBPN的两个任务结合在一个在线FBPMN滤波器中,因此,该方法的计算复杂度低于现有方法。进行计算机仿真以证明所提出方法的有效性。结果表明,对于可预测和不可预测的噪声源,该方法均比现有方法具有更好的性能。此外,在某种程度上降低了计算复杂度的情况下实现了这种改进的性能。

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