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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Method of Separation of Incidental Acoustic Field on Cylindrical Shell by Vector Processing
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Method of Separation of Incidental Acoustic Field on Cylindrical Shell by Vector Processing

机译:矢量加工分离圆柱壳附近声场的方法

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A theoretical and experimental study on the separation method of the incident sound field based on a small-scale vector sensor is proposed in this study, with the aim of resolving the problem of separation and acquisition of an incident sound field under the interference of near-field sound scattering from a cylindrical shell in water. The method of identifying and separating sound waves obtained under plane wave conditions is extended to complex sound-field conditions. Simulation and experimental results show that the vector separation method can greatly reduce the sound pressure amplitude and the phase deviation of the incident sound field, which is affected by near-field scattering from the cylindrical surface. The separation accuracy is related to the deviation angle and the distance from the target surface. The maximum deviation of the pressure amplitude is less than 1?dB, and the phase deviation is less than 3°. This method can effectively suppress the near-field scattering of the cylindrical shell and improve the separation accuracy of the incident sound field. The research results have reference value for a range of practical engineering applications.
机译:本研究提出了基于小规模矢量传感器的入射声场的分离方法的理论和实验研究,目的是解决在附近干扰下分离和收购事件声场的问题的目的从水中的圆柱形壳体散射散射。在平面波条件下获得的识别和分离声波的方法延伸到复杂的声场条件。仿真和实验结果表明,载体分离方法可以大大降低入射声场的声压幅度和相位偏差,这受圆柱形表面的近场散射影响。分离精度与偏离角度和距目标表面的距离有关。压力幅度的最大偏差小于1≤dB,并且相位偏差小于3°。该方法可以有效地抑制圆柱形壳的近场散射,提高入射声场的分离精度。研究结果具有一系列实用工程应用的参考价值。

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