An Equivalent Source Method Based on Sound Pressure Differential Filter for Particle Velocity Reconstruction

Daofang Feng, Wei Pan, Anlai Mao, Bingjian Jin, Yuanwen Li, Min Li
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Abstract

During the particle velocity reconstruction, the sound energy will be dissipated and the particle velocity will be underestimated, due to the attenuation characteristic of particle velocity and the interference of measurement noise. To solve the above problem, an equivalent source method based on the sound pressure differential filter (PDF-ESM) was proposed. The method uses the sound pressure differential filter to obtain the distribution information of the sound source and focus the sound energy. Meanwhile, it uses the sparse equivalent source method to solve the precise source strength and reconstruct the particle velocity. Simulation and experiment of coherent and incoherent sound sources over 200–1600 Hz show the particle velocity results computed by PDF-ESM have smaller side lobes after the sound energy is focused and smaller reconstruction errors.
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基于声压差滤波的粒子速度重建等效源方法
在粒子速度重建过程中,由于粒子速度的衰减特性和测量噪声的干扰,声能会被耗散,粒子速度会被低估。针对上述问题,提出了一种基于声压差滤波器(PDF-ESM)的等效声源方法。该方法利用声压差滤波器获取声源的分布信息,对声能进行集中。同时,采用稀疏等效源方法精确求解源强度,重构粒子速度。对200 ~ 1600 Hz范围内相干声源和非相干声源的仿真和实验表明,PDF-ESM计算得到的声能聚焦后的粒子速度结果侧叶较小,重构误差较小。
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