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Spherical-Harmonic-Domain Feedforward Active Noise Control Using Sparse Decomposition of Reference Signals from Distributed Sensor Arrays

机译:球面谐波域前馈激活噪声控制,使用来自分布式传感器阵列的参考信号的稀疏分解

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摘要

Active acoustic noise attenuation over a sizable space is a challenging problem in signal processing. The noise attenuation performance of feedforward active noise control (ANC) relies on the preciseness of a reference signal of a primary noise field. To capture the precise reference signal for controlling a sizable space, a large number of reference microphones are required, which reduces system viability. In this study, we exploit an efficient representation of the reference signal in spherical harmonic (SH) domain by utilizing the inherent sparseness of the noise field. The main contributions of this work are as follows. (1) A general reference microphone geometry can be used. The implementation difficulty in the array structure, which is recognized as the common issue of SH-domain signal processing, e.g., use of a fully surrounding spherical array, is reduced by using the fields translation based on the addition theorem. (2) The accuracy of low-frequency signal decomposition is improved. The low accuracy of low-frequency signal decomposition in compressive sensing (CS), which is commonly reported in the literature, is improved by applying signal representation in SH domain. (3) System robustness is increased. The robustness of the system is increased by considering a noise source spatial distribution of both the interior and exterior sound fields, which is not possible in the case of a general signal representation in SH domain. Experimental results indicate that the noise attenuation performance of our proposed method exceeds that of existing solutions. The flexibility of the array structure is also increased, which leads to a more feasible practical system setup.
机译:在相当大的空间上的主动声噪声衰减是信号处理中有挑战性的问题。前馈活动噪声控制(ANC)的噪声衰减性能依赖于主噪声场的参考信号的精确性。为了捕获用于控制可大量空间的精确参考信号,需要大量参考麦克风,这减少了系统的存活率。在这项研究中,我们利用噪声场的固有稀疏来利用球面谐波(SH)域中参考信号的高效表示。这项工作的主要贡献如下。 (1)可以使用一般参考麦克风几何形状。阵列结构的实现难度被识别为SH-域信号处理的常见问题,例如,通过使用基于添加定理的字段转换来减少完全围绕球形阵列的使用。 (2)低频信号分解的准确性得到改善。通过在SH域中应用信号表示,改善了在文献中普遍报道的压缩感测(CS)中的低频信号分解的低精度。 (3)系统鲁棒性增加。通过考虑内部和外部声场的噪声源空间分布,可以提高系统的鲁棒性,这在SH域中的一般信号表示的情况下是不可能的。实验结果表明,我们提出的方法的噪声衰减性能超过了现有解决方案的噪声衰减性能。阵列结构的灵活性也增加,这导致更可行的实际系统设置。

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