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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Hybrid FEBI-MLFMM-UTD Method for Numerical Solutions of Electromagnetic Problems Including Arbitrarily Shaped and Electrically Large Objects
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A Hybrid FEBI-MLFMM-UTD Method for Numerical Solutions of Electromagnetic Problems Including Arbitrarily Shaped and Electrically Large Objects

机译:包含任意形状和电大物体的电磁问题数值解的混合FEBI-MLFMM-UTD方法

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摘要

Numerical solutions of electromagnetic scattering and radiation problems including arbitrarily shaped objects are obtained by solving integral equations with the method of moments (MoM). Fast and efficient solution of the integral equation with low computation and memory complexity is provided by the multilevel fast multipole method (MLFMM). The presence of electrically large conducting objects leads to hybrid MoM techniques with high-frequency methods. For ray-based high-frequency methods no discretization of the electrically large objects is needed, resulting into a more efficient numerical treatment of the problem. However, in order to retain low computation and memory complexity, the high-frequency fields must be taken into account in the matrix-vector product computations in the various levels of the MLFMM. In this contribution, a ray-based hybridization of the MLFMM with the uniform geometrical theory of diffraction (UTD) is proposed within a hybrid finite element--boundary integral (FEBI) technique, using the combined field integral equation (CFIE), resulting into a hybrid FEBI-MLFMM-UTD method. The hybridization is performed at the translation procedure on the various levels of the MLFMM, using a far-field approximation of the appropriate translation operator to obtain the high-frequency incident fields at the critical points of the UTD. The formulation of this new hybrid technique is presented and numerical results are shown.
机译:通过用矩量法(MoM)求解积分方程,可以获得包括任意形状的物体在内的电磁散射和辐射问题的数值解。多级快速多极子方法(MLFMM)提供了具有低计算量和存储复杂度的积分方程的快速有效解决方案。电大的导电物体的存在导致了高频方法的混合MoM技术。对于基于射线的高频方法,不需要将大的电气对象离散化,从而可以更有效地对该问题进行数值处理。但是,为了保持较低的计算和存储器复杂性,必须在MLFMM的各个级别的矩阵向量乘积计算中考虑高频字段。在这项贡献中,在混合有限元-边界积分(FEBI)技术中,使用组合场积分方程(CFIE),提出了基于MLFMM与均匀衍射几何理论(UTD)的基于射线的混合,混合FEBI-MLFMM-UTD方法。使用适当的转换算符的远场近似,在转换过程中对MLFMM的各个级别执行杂交,以获取UTD关键点处的高频入射场。提出了这种新的混合技​​术的公式,并显示了数值结果。

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