Modified sources number estimation methods of the acoustic vector hydrophone array based on Gerschgorin disk criterion

Xuhu Wang, Yongwei Liu, Qunfei Zhang
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Abstract

The sources number estimation methods of the acoustic vector hydrophone array based on Gerschgorin disk criterion (VGDE) are analyzed in this paper. Since the success detection signal to noise ratio of the original VGDE method is relatively high, the compressed radius VGDE approach (CR-VGDE) and the modified CR-VGDE approach (MCR-VGDE) are proposed to reduce the detectable signal to noise ratio and improve detection performance of the acoustic vector hydrophone array. The radius of Gerschgorin disks are weighted and the Gerschgorin disks are compressed in the CR-VGDE approach, therefore, the signal Gerschgorin disks and noise Gerschgorin disks are further separated in the weighted compression process, which improves the detection performance of the acoustic vector hydrophone array. As the adjustment factor need to be set manually in the CR-VGDE method, a design approach of the dynamic adjustment factor is presented in the MCR-VGDE method. Simulation results indicate the detectable signal to noise ratio of the two modified processing approaches are lower than that of the original VGDE approach.
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基于Gerschgorin圆盘准则的改进声矢量水听器阵列源数估计方法
分析了基于格schgorin圆盘准则的声矢量水听器阵列声源数估计方法。针对原VGDE方法成功检测信噪比较高的问题,提出了压缩半径VGDE方法(CR-VGDE)和改进的CR-VGDE方法(MCR-VGDE),以降低声矢量水听器阵列的检测信噪比,提高检测性能。CR-VGDE方法对Gerschgorin盘半径进行加权并对其进行压缩,从而在加权压缩过程中进一步分离了信号Gerschgorin盘和噪声Gerschgorin盘,提高了声矢量水听器阵列的检测性能。针对CR-VGDE方法中需要手动设置调整因子的问题,提出了MCR-VGDE方法中动态调整因子的设计方法。仿真结果表明,两种改进处理方法的可检测信噪比均低于原VGDE方法。
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