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首页> 外文期刊>The Journal of the Acoustical Society of America >On the holographic reconstruction of vibroacoustic fields using equivalent sources and inverse boundary element method
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On the holographic reconstruction of vibroacoustic fields using equivalent sources and inverse boundary element method

机译:用等效源和逆边界元法全息重建声场

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摘要

In using the near-field acoustical holography based on the inverse boundary element method (BEM) for the reconstruction of vibroacoustic Source parameters, in enormous number of measurements required in practice have limited the extended application of this method. To obtain file Sufficient field data with a small number Of actual measured data, the regeneration method of the radiated field using the multipoint equivalent Sources is attempted in this paper. In using the equivalent source method, a vibrating Source can be represented by distributed spherical sources inside the actual source surface. In this paper, the radiated field is expressed with a series of spherical Hankel functions and spherical harmonics. For Suppressing the adverse effect of high-order spherical functions, spatial filtering of coefficients and wave-vector components by a regularization scheme is adopted. Restored field data appended with actual measured data can be used as input for the inverse BEM to reconstruct the source field. Numerical tests for spherical Sources were performed for investigating the characteristics of the proposed technique. In order to validate the usefulness of file proposed method to actual irregular Sources, I vacuum cleaner was taken as a demonstration example and good agreement between measured and reconstructed results Could be observed. (c) 2005 Acoustical Society of America.
机译:在使用基于逆边界元法(BEM)的近场声全息术来重建声源参数时,在实践中需要进行的大量测量限制了该方法的扩展应用。为了获得少量实际测量数据的文件足够的场数据,本文尝试使用多点等效源对辐射场进行再生的方法。在使用等效震源方法时,振动震源可以由实际震源表面内部的分布球形震源表示。在本文中,辐射场用一系列球汉克尔函数和球谐函数表示。为了抑制高阶球面函数的不利影响,采用正则化方案对系数和波矢量分量进行空间滤波。附加了实际测量数据的还原场数据可用作反向BEM的输入,以重建源场。进行了球形源的数值测试,以研究所提出技术的特性。为了验证本文提出的方法对实际不规则源的有效性,以真空吸尘器为例,在实测结果与重构结果之间取得了较好的一致性。 (c)2005年美国声学学会。

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