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Robustness of a mixed-order Ambisonics microphone array for sound field reproduction

机译:用于声场再现的混合级野蛮人麦克风阵列的鲁棒性

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Spherical microphone arrays can be used to capture and reproduce the spatial characteristics of acoustic scenes. A mixed-order Ambisonics (MOA) approach was recently proposed to improve the horizontal spatial resolution of microphone arrays with a given number of transducers. In this paper, the performance and robustness of an MOA array to variations in microphone characteristics as well as self-noise was investigated. Two array processing strategies were evaluated. Results showed that the expected performance benefits of MOA are achieved at mid to high frequencies, and that robustness to various errors was similar to that of HOA arrays with both strategies. The approach based on minimizing the error of the reproduced spherical harmonic functions showed better performance at high frequencies for the MOA layout.
机译:球形麦克风阵列可用于捕获和再现声学场景的空间特征。 最近提出了一种混合阶VAMIsissics(MOA)方法,以改善具有给定数量的换能器的麦克风阵列的水平空间分辨率。 本文研究了MOA阵列对麦克风特性变化以及自噪声的变化的性能和鲁棒性。 评估了两种阵列处理策略。 结果表明,MOA的预期性能效益在中高频上实现,各种误差的鲁棒性与两种策略的HOA阵列相似。 基于最小化再现球形谐波函数误差的方法在MOA布局的高频下表现出更好的性能。

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