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High-resolution nearfield acoustic holography based on iterative weighted equivalent source method

机译:基于迭代加权等效源法的高分辨率近距离声学全息

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Because of the ill-posed nature of equivalent source method (ESM)-based nearfield acoustic holography (NAH), regularization methods based on the minimum L2-norm criterion such as the Tikhonov regularization are usually employed to stabilize its reconstruction procedure. However, the minimum L2-norm constraint sometimes makes the reconstruction result too smooth and thus degrades the spatial resolution of NAH, because this kind of constraint tends to disperse the acoustic field energy on the hologram surface to all the equivalent sources. To deal with this problem, an iterative weighted ESM (IWESM) is proposed, in which an iterative weighted regularization procedure is developed to solve the strengths of equivalent sources. The IWESM can reduce the dispersion of acoustic field energy on the hologram surface to those equivalent sources that contribute little to the acoustic field, and get more reasonable solution of source strengths. The validity of the IWESM is proven by a numerical simulation, and the result shows that comparing with ESM-based NAH, the proposed method can significantly improve the spatial resolution of reconstruction results.
机译:由于等效源法(ESM)的不良性质 - 基于近场声学全息(NAH),通常采用基于Tikhonov正规化的最小L2-NOM标准的正则化方法,以稳定其重建过程。然而,最小L2-NORM约束有时使得重建结果过得光滑,从而降低了NAH的空间分辨率,因为这种约束倾向于将全息图表面上的声场能量分散到所有等效源上。为了解决这个问题,提出了一种迭代加权ESM(IWESM),其中开发了迭代加权正则化程序以解决等效来源的强度。 IWESM可以降低声场能量对全息图表面的分散到对声场没有贡献的那些等效源,并获得更合理的源强度的解决方案。通过数值模拟证明IWESM的有效性,结果表明,与ESM的NAH相比,该方法可以显着提高重建结果的空间分辨率。

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