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Reconstructing the Acoustic Pressure Field Based on Oblate Spheroidal Coordinates

机译:基于扁圆形坐标坐标重建声压场

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A new acoustic reconstructing method based on oblate spheroidal coordinates is proposed and deduced in this paper. The acoustic pressures of whole acoustic field are expressed by the product of the coefficients and the conventional interpolate polynomial. Once the coefficients are specified by the pressures of the measured points, the least-squares method and the singular value decomposition (SVD) method, the whole acoustic field can be reconstructed. The traditional HELS method is most suitable for reconstructing pressures radiated a spherical source or sources with a characteristic aspect ratio x: y: z close to 1:1:1. While the new method proposed in this paper is suitable for the acoustic sources with a characteristic aspect ratio y: z close to 1:1 and shorter z, which extends the appropriate application domain of traditional HELS largely. The reconstructing examples of a dilating sphere and an oblate spheroid source show that the new method is feasible and efficient.
机译:提出了一种基于扁圆形球体坐标的新的声学重建方法,并在本文中推导出来。 整个声场的声学压力由系数和传统的内插多项式的乘积表示。 一旦通过测量点的压力指定了系数,最小二乘法和奇异值分解(SVD)方法,可以重建整个声场。 传统的Hels方法最适合重建压力辐射球形源或具有特征纵横比X:Y:Z接近1:1:1的球形源或源。 虽然本文提出的新方法适用于具有特征纵横比Y:Z接近1:1和更短的Z的声学来源,其在很大程度上延伸了传统掌梁的适当应用领域。 扩张球体的重建示例和扁球石源表明新方法是可行和有效的。

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