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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Efficient angular spectrum decomposition of acoustic sources. I. Theory
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Efficient angular spectrum decomposition of acoustic sources. I. Theory

机译:声源的高效角谱分解。一,理论

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The angular spectrum decomposition is evaluated in terms of plane wave angular range, angular resolution, and spatial aliasing error using two-dimensional FFT (2-D FFT). The algorithm makes possible the source plane decomposition of normal velocity and pressure fields radiated by transducers of arbitrary shape, with significantly faster results achievable for planar sources. Although the angular spectrum is equally applicable to fields far from the transducer, the efficient calculation is derived specifically for fields in or very close to the source plane. An antialiasing algorithm is proposed that allows the source to be discretized with fewer sample points for a given accuracy than required with simple discretization techniques. Guidelines for the selection of sampling interval, discretization size, etc. are developed on an application-specific basis and indicate the best ratio of numerical accuracy to computational cost.
机译:使用二维FFT(2-D FFT),可根据平面波角度范围,角度分辨率和空间混叠误差来评估角度频谱分解。该算法使源平面分解任意形状的换能器辐射的法向速度和压力场成为可能,对于平面源,可获得明显更快的结果。尽管角谱同样适用于远离换能器的场,但有效的计算是专门针对源平面内或非常靠近源平面的场导出的。提出了一种抗混叠算法,与给定的简单离散技术相比,该算法可以在给定精度下使用更少的采样点对源进行离散。选择采样间隔,离散化大小等的准则是在特定应用的基础上制定的,并指出了数值精度与计算成本的最佳比率。

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