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Array geometry impact on music in the presence of spatially distributed sources

机译:在空间分布源存在下,阵列几何对音乐的影响

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摘要

The MUltiple Signal Classification (MUSIC) estimator has been widely studied for a long time for its high resolution capability in the domain of the direction of arrival (DOA) estimation, with the sources assumed to be point. However, when the actual sources are spatially distributed with angular dispersion, the performance of the conventional MUSIC is degraded. In this paper, the impact of the array geometry on the DOA estimation of spatially distributed sources impinging on a sensor array is considered. Taking into account a coherently distributed source model, we establish closed-form expressions of the MUSIC-based DOA estimation error as a function of the positions of the array sensors in the presence of model errors due to the angular dispersion of the signal sources. The impact of the array geometry is studied and particular array designs are proposed to make DOA estimation more robust to source dispersion. The analytical results are validated by numerical simulations.(1) (C) 2017 Elsevier Inc. All rights reserved.
机译:多个信号分类(音乐)估计器已经广泛研究了很长一段时间,以便其在到达方向(DOA)估计的域中的高分辨率能力,并且源被认为是点。然而,当实际源在空间地分布角度分散时,传统音乐的性能劣化。在本文中,考虑了阵列几何体对冲击传感器阵列的空间分布源的DOA估计的影响。考虑到一个相干分布的源模型,我们建立了基于音乐的DOA估计误差的闭合形式表达式,因为由于信号源的角度分散,在存在模型误差时阵列传感器的位置的函数。研究了阵列几何的影响,并提出了特定的阵列设计,使DOA估计更加坚固地源分散。通过数值模拟验证了分析结果。(1)(c)2017 Elsevier Inc.保留所有权利。

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