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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Source Number Detectability by an Acoustic Vector Sensor Linear Array and Performance Analysis
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Source Number Detectability by an Acoustic Vector Sensor Linear Array and Performance Analysis

机译:声矢量传感器线性阵列对源数的可检测性及性能分析

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摘要

The motivation of this work is to investigate the source number detectability by an oversampled or undersampled linear acoustic vector sensor (AVS) array. Sufficient conditions that ensure the extension of existing source number estimators and beamforming techniques from the acoustic pressure sensor (APS) array to the AVS array are established based on the linear independence of steering vectors of the AVS array, an issue closely related to the number of sources whose parameters [e.g., the direction of arrival (DOA)] can be uniquely determinable. The upper bound on the detectable number of sources with distinct DOAs under oversampled and undersampled array configurations is derived, where the difference of definitions of the distinct DOAs between the APS array and the AVS array is clarified. The number constraint on detectable sources with distinct spatial aliasing DOAs using the undersampled AVS array is also investigated. Under these conditions, advantages of eigenvalue-based source number estimators using AVS arrays are demonstrated, and the minimum description length (MDL) estimator is extended to the AVS array as an illustration to verify the established theories.
机译:这项工作的目的是研究通过超采样或采样不足的线性声矢量传感器(AVS)阵列进行的源数目可检测性。基于AVS阵列的引导向量的线性独立性,建立了确保现有声源数估计器和波束形成技术从声压传感器(APS)阵列扩展到AVS阵列的充分条件。参数[例如,到达方向(DOA)]可以唯一确定的源。推导了在过采样和欠采样阵列配置下具有不同DOA的可检测源数量的上限,其中阐明了APS阵列和AVS阵列之间不同DOA定义的区别。还研究了欠采样AVS阵列对具有不同空间混叠DOA的可检测源的数量约束。在这种情况下,展示了使用AVS阵列的基于特征值的源数估计器的优势,并将最小描述长度(MDL)估计器扩展到AVS阵列,以验证建立的理论。

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