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High-Resolution Multiple Wideband and Nonstationary Source Localization With Unknown Number of Sources

机译:信号源数量未知的高分辨率多宽带和非平稳信号源定位

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摘要

In this paper, a new algorithm for high-resolution multiple wideband and nonstationary source localization using a sensor array is proposed. The received signals of the sensor array are first converted into the time-frequency domain via short-time Fourier transform (STFT) and we find that a set of short-time power spectrum matrices at different time instants have the joint diagonalization structure in each frequency bin. Based on such joint diagonalization structure, a novel cost function is designed and a new spatial spectrum for direction-of-arrival (DOA) estimation at hand is derived. Compared to the maximum-likelihood (ML) method with high computational complexity, the proposed algorithm obtains the DOA estimates via one-dimensional (1-D) search instead of multidimensional search. Therefore its computational complexity is much lower than the ML method. Unlike the subspace-based high-resolution DOA estimation techniques, it is not necessary to determine the number of sources in advance for the proposed algorithm. Moreover, the proposed method is robust to the effects of reverberation caused by multipath reflections. Hence it is suitable for multiple acoustic source localization in a reverberant room. The results of numerical simulations and experiments in a real room with a moderate reverberation are provided to demonstrate the good performance of the proposed approach.
机译:本文提出了一种使用传感器阵列的高分辨率多宽带非平稳源定位新算法。首先通过短时傅立叶变换(STFT)将传感器阵列的接收信号转换到时频域,我们发现在不同时刻的一组短时功率谱矩阵在每个频率上具有联合对角化结构斌基于这种联合对角化结构,设计了一种新的成本函数,并得出了一种新的用于到达方向(DOA)估计的空间频谱。与具有较高计算复杂度的最大似然(ML)方法相比,该算法通过一维(1-D)搜索而不是多维搜索来获得DOA估计。因此,其计算复杂度远低于ML方法。与基于子空间的高分辨率DOA估计技术不同,对于所提出的算法,不必事先确定源数。此外,所提出的方法对于由多径反射引起的混响的影响是鲁棒的。因此,它适用于混响室内的多个声源定位。提供了在具有中等混响的真实房间中进行数值模拟和实验的结果,以证明所提出方法的良好性能。

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