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Fast and accurate solutions of electromagnetics problems involving lossy dielectric objects with the multilevel fast multipole algorithm

机译:用多级快速多极算法快速准确地解决涉及有损介电对象的电磁问题

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摘要

Fast and accurate solutions of electromagnetic scattering problems involving lossy dielectric objects are considered. Problems are formulated with two recently developed formulations, namely, the combined tangential formulation (CTF) and the electric and magnetic current combined-field integral equation (JMCFIE), and solved iteratively using the multilevel fast multipole algorithm (MLFMA). Iterative solutions and accuracy of the results are investigated in detail for diverse geometries, frequencies, and conductivity values. It is demonstrated that CTF solutions are significantly accelerated as the conductivity increases to moderate values and CTF becomes comparable to JMCFIE in terms of efficiency. Considering also the superior accuracy of this formulation, CTF becomes suitable for fast and accurate analysis of scattering problems involving lossy dielectric objects.
机译:考虑了涉及有损介电物体的电磁散射问题的快速,准确解决方案。问题是用两个最近开发的公式来表示的,即组合切向公式(CTF)和电磁电流组合场积分方程(JMCFIE),并使用多级快速多极算法(MLFMA)迭代求解。针对各种几何形状,频率和电导率值,详细研究了迭代解和结果的准确性。事实证明,随着电导率增加到中等值,CTF解决方案得到了显着加速,并且CTF在效率方面可与JMCFIE媲美。还考虑到该配方的卓越精度,CTF变得适用于快速,准确地分析涉及有损介电物体的散射问题。

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