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Experimental Research of Vector Hydrophone MVDR Algorithm

机译:矢量水听器MVDR算法的实验研究

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摘要

The estimation of Direction of Arrival (DOA) is an important issue of underwater acoustic signal processing. The purpose of beamforming is to form the directivity of the target direction and to catch the target effectively. So, the beamforming technology is widely used in this field. Vector Hydrophone simultaneously extract sound pressure and velocity information of sound sources. After that, the phase shift information between the amount of the hydrophone array increases. Beamforming technology based on vector hydrophone performance was significantly better than the sound pressure hydrophone. During this research, firstly, do conventional beamforming theoretical description and simulation analysis, based on the conventional beamforming where MVDR (Minimum Variance Distortionless Response) beamforming principles were introduced, and then based on vector hydrophone do comparison simulation by various ways. Simulation results show that, MVDR beamforming has a higher resolution and antijamming capability related to conventional beamforming which is suitable for low SNR environment underwater acoustic signal processing. Finally, process the experimental data by the above two methods, the results show MVDR beamforming can be effectively detected, and has a higher resolution.
机译:到达方向(DOA)的估计是水下声信号处理的重要问题。波束成形的目的是形成目标方向的方向性并有效地捕获目标。因此,波束成形技术在该领域得到了广泛的应用。矢量水听器同时提取声源的声压和速度信息。之后,水听器阵列的数量之间的相移信息增加。基于矢量水听器性能的波束成形技术明显优于声压水听器。在这项研究中,首先,在介绍了MVDR(最小方差无失真响应)波束形成原理的常规波束成形的基础上,进行常规波束成形的理论描述和仿真分析,然后基于矢量水听器以各种方式进行比较仿真。仿真结果表明,MVDR波束成形具有比常规波束成形更高的分辨率和抗干扰能力,适用于低信噪比环境下的水下声信号处理。最后,通过以上两种方法对实验数据进行处理,结果表明可以有效地检测出MVDR波束形成,并且具有较高的分辨率。

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