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Volume Integral Equation With Higher Order Hierarchical Basis Functions for Analysis of Dielectric Electromagnetic Scattering

机译:具有高阶层次基函数的体积积分方程,用于介电电磁散射分析

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摘要

An efficient method of moments (MoM) solution of volume electric field integral equation (V-EFIE) with a kind of higher order basis functions is presented to model scattering from a dielectric object with arbitrary shapes and inhomogenuity. This method is based on both higher order geometrical modeling and higher order current modeling, which is realized using a family of higher order hierarchical vector (HHOV) basis functions to expand the equivalent volume electric currents within curvilinear volume elements. This higher order scheme of MoM results in a significant reduction in meshing density and number of unknowns, leading to a remarkable reduction of memory and CPU time in comparison with conventional low-order MoM, while the accuracy of the solution remains at a comparable level. Numerical results agree with analytical solutions or with simulation results obtained by commercial software, demonstrating the accuracy, convergence, efficiency, flexibility, and adaptability of the new approach.
机译:提出了一种高效的体积电场积分方程(V-EFIE)矩(MoM)解的方法,该方法可以对任意形状和非均匀性的电介质物体的散射进行建模。此方法基于高阶几何建模和高阶电流建模,这是通过使用一系列高阶分层矢量(HHOV)基函数来实现的,以在曲线体积元素内扩展等效体积电流。 MoM的这种高阶方案导致网格密度和未知数的显着减少,与传统的低阶MoM相比,显着减少了内存和CPU时间,而解决方案的精度仍保持在可比的水平。数值结果与解析解或商用软件获得的模拟结果一致,证明了该新方法的准确性,收敛性,效率,灵活性和适应性。

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