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首页> 外文期刊>Journal of computational acoustics >A FORMULATION OF THE FAST MULTIPOLE BOUNDARY ELEMENT METHOD (FMBEM) FOR ACOUSTIC RADIATION AND SCATTERING FROM THREE-DIMENSIONAL STRUCTURES
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A FORMULATION OF THE FAST MULTIPOLE BOUNDARY ELEMENT METHOD (FMBEM) FOR ACOUSTIC RADIATION AND SCATTERING FROM THREE-DIMENSIONAL STRUCTURES

机译:三维结构声辐射和散射的快速多极边界元方法(FMBEM)的公式化

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摘要

Compared to the traditional boundary element method (BEM), the single level fast multipole boundary element method (SLFMBEM) or the multipole boundary element method (MLFMBEM) reduces the computational complexity of a job from O(n(2)) to O(n(3/2)) or O(n log(2) n), respectively with n being the number of unknowns; this means a dramatical reduction in terms of CPU-time and storage requirement. Large scale problems, unsolvable with the traditional BEM, can be solved by using the FMBEM. In this paper the traditional BEM, SLFMBEM, and MLRMBEM are formulated within the framework of the Burton-Miller Collocation BEM for acoustic radiation and scattering from 3D structures. Attention is especially paid to the practical aspects of the method in order to get a reliable and efficient computation code. The performance of the method is tested with practical examples, including one for computing the head-related transfer function (HRTF) between 1000 and 18 000 Hz.
机译:与传统的边界元方法(BEM)相比,单级快速多极边界元方法(SLFMBEM)或多极边界元方法(MLFMBEM)将作业的计算复杂度从O(n(2))降低到O(n (3/2))或O(n log(2)n),其中n为未知数;这意味着将大大减少CPU时间和存储需求。使用FMBEM可以解决传统BEM无法解决的大规模问题。在本文中,传统的BEM,SLFMBEM和MLRMBEM是在Burton-Miller搭配BEM的框架内制定的,用于3D结构的声辐射和散射。为了获得可靠和有效的计算代码,特别注意该方法的实际方面。该方法的性能通过实际示例进行了测试,其中包括一个用于计算1000至18000 Hz之间的头部相关传递函数(HRTF)的示例。

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