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Experimental determination of the effects of boundary reflection on the angular resolution of microphone arrays

机译:实验确定边界反射对麦克风阵列角分辨率的影响

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摘要

The Rayleigh criterion has long been considered the standard criterion for angular resolution of imaging systems, including microphone arrays. However, advanced beamforming methods have been developed in the past 20 years that have dramatically improved the angular resolution of microphone array systems. In this investigation, the angular resolution performance of three scaled microphone arrays and one alternative array geometry were tested with both approximately free-field and reflective boundary conditions. All of the arrays were subjected to a thorough regimen of testing with broadband acoustic sources. Beamforming analysis was performed with the Delay-and-Sum, TIDY, DAMAS, DAMAS2, and CLEAN-SC algorithms. The Delay-and-Sum algorithm is shown to offer the lowest angular resolution performance because it does not separate the acoustic source map from the point spread function of the array. The DAMAS algorithm offers the greatest angular resolution because it numerically deconvolutes the acoustic source map from the point spread function. However, deconvolution-based algorithms (DAMAS and DAMAS2) were the most negatively affected by boundary reflection effects. The logarithmic spiral array is shown to offer versatile performance across a wide range of frequencies, while an alternative quasi-periodic array yields results that are highly frequency-dependent. It is demonstrated that this is because of gaps in the source-to-element differences coverage, and the gaps in coverage correspond to half-wavelengths of frequency bands with significantly lower angular resolution performance.
机译:长期以来,瑞利标准一直被认为是包括麦克风阵列在内的成像系统角分辨率的标准标准。然而,在过去的20年中,已经开发出了先进的波束成形方法,这些方法极大地改善了麦克风阵列系统的角分辨率。在这项研究中,在大约自由场和反射边界条件下,测试了三个缩放麦克风阵列和一个可选阵列几何形状的角分辨率性能。所有的阵列都经过了宽带声源的彻底测试。波束成形分析使用“延迟与和”,TIDY,DAMAS,DAMAS2和CLEAN-SC算法进行。延迟与和算法显示出最低的角分辨率性能,因为它没有将声源图与阵列的点扩散函数分开。 DAMAS算法提供了最大的角分辨率,因为它在数字上从点扩展函数对声源图进行了反卷积。但是,基于反卷积的算法(DAMAS和DAMAS2)受到边界反射效应的负面影响最大。对数螺旋阵列显示出可在各种频率范围内提供通用性能,而另一种准周期阵列产生的结果高度依赖于频率。事实证明,这是由于源到元素差异覆盖范围内的间隙所致,并且该覆盖范围内的间隙对应于具有明显较低的角分辨率性能的频带的半波长。

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