A predicting methodology of scattering by clusters of multi-objects/systems based on plane wave database

X. Sheng, Xiao-Min Pan, C. Deng
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Abstract

A predicting methodology of scattering by a cluster of multi-objects/systems is proposed in this paper. In this predicting methodology, a representation of scattering by each object/system in the cluster is formulated with plane waves. Then an equation based on this plane wave representation is established for formulating interaction among objects/systems in the cluster. Finally, the equation is efficiently solved with iterative solvers, and the scattering by the cluster is computed. The accuracy and efficiency of this predicting methodology are well validated by various numerical experiments. The numerical performance of the equation for the interaction is also studied in detail. It is shown that the equation established in this paper converges much faster than those in the fast multipole method (FMM). Since the plane wave representation for each object/system can be determined by either measurement or simulation, this predicting methodology can well integrate the measured data and simulation results together for predicting scattering by very complex clusters. Furthermore, since the plane wave representation of each object/system can be established as a database and reused in other clusters, this predicting methodology has high efficiency.
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基于平面波数据库的多目标/系统散射预测方法
提出了一种多目标/系统散射的预测方法。在这种预测方法中,用平面波表示集群中每个对象/系统的散射。在此基础上建立了一个平面波表示方程,用于描述集群中对象/系统之间的相互作用。最后,利用迭代求解器对方程进行了有效求解,并计算了簇的散射。各种数值实验验证了该预测方法的准确性和有效性。本文还详细研究了相互作用方程的数值性能。结果表明,本文所建立的方程收敛速度比快速多极方法(FMM)快得多。由于每个物体/系统的平面波表示可以通过测量或模拟来确定,因此该预测方法可以很好地将测量数据和模拟结果结合在一起,以预测非常复杂的簇散射。此外,由于每个对象/系统的平面波表示可以建立一个数据库并在其他集群中重用,因此该预测方法具有很高的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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