Sound Source Identification Method Based on Location Optimization of Equivalent Sources

Wei Pan, Daofang Feng, Yuanwen Li, Min Li
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Abstract

The equivalent source method (ESM) based on nearfield acoustic holography (NAH) is an important technique for sound source identification, and the proper arrangement of the equivalent sources is critical to improve the accuracy of the identification results. Traditional approaches are hard to use for accurately locating low and medium frequency sound sources, therefore, cannot provide reasonable information for the collocation of the equivalent sources. To overcome the issue, a joint iterative regularized sound source localization method based on a combination of constrained L1 and L2 regularization is developed first, followed by the optimal placement of the equivalent sources near the localized sound sources. The sparsity and robustness of results are guaranteed by using the compound regularizers of Li and L2. The simulation results show that the traditional methods have a resolution of roughly 1/2 wavelength, whereas the proposed method has a resolution of just 1/3 wavelength. Two typical cases are analyzed in the measured experiment. The sound source amplitude reconstruction error dropped from 16.67% to 4.17% and from 20.83% to 11.46%, respectively. According to the results of simulation and indoor measurements, the method provides superior spatial resolution, source intensity quantification accuracy, and robustness to traditional methods.
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基于等效声源位置优化的声源识别方法
基于近场声全息技术的等效声源法是声源识别的一项重要技术,合理安排等效声源对提高声源识别结果的准确性至关重要。传统的方法难以准确定位中低频声源,无法为等效声源的配置提供合理的信息。为了克服这一问题,首先提出了一种基于约束L1和L2正则化相结合的联合迭代正则化声源定位方法,然后在局域声源附近优化配置等效声源。利用Li和L2的复合正则化保证了结果的稀疏性和鲁棒性。仿真结果表明,传统方法的分辨率约为1/2波长,而该方法的分辨率仅为1/3波长。在实测实验中对两种典型情况进行了分析。声源振幅重构误差从16.67%下降到4.17%,从20.83%下降到11.46%。仿真和室内实测结果表明,该方法比传统方法具有更高的空间分辨率、源强量化精度和鲁棒性。
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