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Applying time domain physical optics to acoustic wave backscattering problem

机译:将时域物理光学应用于声波反向散射问题

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摘要

The interest in transient analysis of acoustic waves has been growing in recent years, due to the advance of wide-band sonars. In this paper, a transient analysis method for acoustic backscattering signals is proposed based on the time domain physical optics (TDPO). TDPO is formulated via a theoretical inverse Fourier transform of the conventional physical optics formula used in the frequency domain wave scattering analyses. A hidden surface removal algorithm using an adaptive triangular beam method and a virtual surface concept are adopted to explain shadow effects and multiple reflections among elements, respectively. Numerical analyses are carried out for two kinds of underwater targets: a submarine pressure hull and an idealized submarine, in order to validate the proposed method. The result of the submarine pressure hull shows good agreements between the proposed method and conventional physical optics based on inverse fast Fourier transform. Additionally, the result of the idealized submarine shows that the proposed method is efficient for finding highlights including their contribution to the whole backscattering signal.
机译:近年来,由于宽带声纳的发展,人们对声波瞬态分析的兴趣不断增长。本文提出了一种基于时域物理光学系统(TDPO)的声反向散射信号瞬态分析方法。 TDPO是通过对频域波散射分析中使用的常规物理光学公式进行理论傅里叶逆变换来制定的。采用了利用自适应三角束方法和虚拟表面概念的隐藏表面去除算法来分别解释元素之间的阴影效果和多次反射。为了验证所提出的方法,对两种水下目标进行了数值分析:潜艇压力壳和理想化潜艇。潜艇耐压船体的结果表明,该方法与基于快速傅里叶逆变换的常规物理光学器件之间具有良好的一致性。此外,理想化潜艇的结果表明,所提出的方法对于寻找高光(包括高光对整个反向散射信号的贡献)是有效的。

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