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Reconstruction and prediction of multi-source acoustic field with the distributed source boundary point method based nearfield acoustic holography

机译:基于近场声全息的分布式源边界点法重构和预测多源声场

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摘要

In a multi-source acoustic field, the actual measured pressure is a scalar sum of pressures from all the sources. The pressure belonging to every source cannot be separated out with the existing techniques. Consequently, routine formulas cannot be used to reconstruct the acoustic source and predict the acoustic field directly. In this paper, a novel theoretical model of reconstruction and prediction of multi-source acoustic field in the distributed source boundary point method (DSBPM) based nearfield acoustic holography (NAH) is established. Three different methods, namely combination method with single surface measurement, combination method with multi-surface measurement and elimination method with multi-surface measurement, are proposed to realize the holographic reconstruction of sources. With these methods, the problem of reconstruction and prediction of acoustic field existing multiple coherent sources synchronously is solved effectively. Using the particular solutions constructed by the DSBPM to establish the vibro-acoustic transfer matrix, the calculation time, calculation precision and calculation stability are improved. These methods are valuable in localizing acoustic source and predicting acoustic field in engineering field.
机译:在多源声场中,实际测得的压力是来自所有源的压力的标量总和。现有技术无法分离属于每个压力源的压力。因此,常规公式不能用于重建声源和直接预测声场。本文建立了一种基于分布式源边界点法(DSBPM)的近场声全息(NAH)重建和预测多源声场的理论模型。提出了单面组合法,多面组合法和多面消除法三种方法,实现了光源的全息重建。利用这些方法,有效地解决了同时存在多个相干源的声场重构和预测问题。使用DSBPM构造的特定解决方案建立振动声传递矩阵,可以提高计算时间,计算精度和计算稳定性。这些方法在工程声源定位和声场预测中具有重要意义。

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