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Am acoustic intensity-based method for reconstruction of radiated fields

机译:基于声强的辐射场重建方法

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摘要

An acoustic intensity-based method is proposed for the reconstruction of acoustic radiation pressure. Unlike the traditional inverse acoustic methods, the proposed method includes the acoustic pressure Gradient as an input in addition to its simultaneous, co-located acoustic pressure in a radiated field. As a result, the reconstruction of acoustic radiation pressure from the input acoustic data over a portion of a surface enclosing all the acoustic sources, i.e., an open surface, becomes unique due to the unique continuation theory of elliptic equations. Hence the method is more stable and the reconstructed acoustic pressure is less dependable on the locations of the input acoustic data. Furthermore, the proposed method can be applied for both inverse and forward problems up to the minimum sphere enclosing the sources of interest. The effectiveness of the method is demonstrated by the results of several acoustic radiation examples with single or multi-frequency source in a two-dimensional configuration. The results from the method also show a measurable improvement in accuracy and consistency of reconstructed acoustic radiation pressure, in particular when the effect of the signal-to-noise ratio is included. (C) 2008 Acoustical Society of America.
机译:提出了一种基于声强的重建声辐射压力的方法。与传统的逆声学方法不同,所提出的方法除了在辐射场中同时位于同一位置的声压之外,还包括声压梯度作为输入。结果,由于椭圆方程的独特延续理论,由输入声数据在包围所有声源的表面的一部分(即开放表面)上重建声辐射压力变得独特。因此,该方法更稳定并且重构的声压对输入声数据的位置的依赖性较小。此外,所提出的方法可以应用于反问题和正问题,直到包含感兴趣源的最小球体为止。该方法的有效性通过二维配置中具有单频或多频源的几个声辐射示例的结果证明。该方法的结果还显示了重构声辐射压力的准确性和一致性的可测量提高,特别是当包括信噪比的影响时。 (C)2008年美国声学学会。

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