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Passive Broadband Acoustic Source Localization Based on Orthogonal Propagator Method

机译:基于正交传播方法的被动宽带声学源定位

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In the field of underwater acoustic signal processing, broadband array signal processing is an important research issue, which is more complex than that of narrowband. Broadband passive localization of underwater acoustic sources is investigated in this study. In order to improve the ability to locate multiple radiation sources which are emitted from ships, the orthogonal propagator method (OPM) is proposed to estimate direction of arrival (DOA) for the target. Based on the theory of spatial spectrum estimation, the linear decomposition of the covariance matrix is adopted to form the orthogonal propagator, and the spatial spectrum is constructed according to orthogonality of subspaces. Then, the directions of ship radiation noises are determined by searching the extreme points of the spatial spectrum. For broadband underwater acoustic signals, the non-coherent subspace method is used to average the effective frequency points in bandwidth to reduce noise interference, and OPM algorithm operating in broadband underwater acoustic signal, on arbitrary sonar array, is derived. In order to verify this method, numerical simulations are conducted to test its performance in localization accuracy, beam width and spatial resolution. During the simulations, a uniform linear array consisting of 96 elements is designed. Additionally, comparisons between the proposed method and conventional beamforming technique are conducted. Comparison results show that the OPM method performs better in spatial directivity and spatial resolution.
机译:在水下声信号处理领域,宽带阵列信号处理是一个重要的研究问题,其比窄带更复杂。本研究研究了水下声学来源的宽带被动定位。为了改善定位从船舶发射的多个辐射源的能力,提出了正交传播方法(OPM)来估计目标的到达方向(DOA)。基于空间谱估计理论,采用协方差矩阵的线性分解形成正交传播者,并且根据子空间的正交构造空间谱。然后,通过搜索空间谱的极端点来确定船舶辐射噪声的方向。对于宽带水下声学信号,非相干子空间方法用于平均带宽的有效频率点,以降低噪声干扰,并且导出在任意声纳阵列上的宽带水下声学信号中操作的OPM算法。为了验证这种方法,进行数值模拟以测试其在本地化精度,光束宽度和空间分辨率中的性能。在模拟期间,设计由96个元件组成的均匀线性阵列。另外,进行所提出的方法和传统波束形成技术之间的比较。比较结果表明,OPM方法在空间方向性和空间分辨率中执行更好。

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