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Hybrid Iterative Approach Combined With Domain Decomposition for the Analysis of Large Electromagnetic Problems

机译:混合迭代方法与区域分解相结合的大型电磁问题分析

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摘要

In this paper, we propose a technique for the electromagnetic analysis of large objects considering the interactions between separate parts of the geometry (which in this context will be referred to as domains). A number of unknowns is associated to each domain, and only the basis functions included within the same domain are considered fully coupled (i.e., a full-wave analysis is performed for every domain, isolating it from the rest of the geometry). An iterative process is then applied to determine the total currents over the object, considering the currents induced by the external sources and those due to interactions between different domains. Once a current distribution is obtained over a given domain it is essential to identify those passive domains with which the interaction active-domain–passive-domain will yield a significant contribution to the final result (scattered field, radiation pattern, S-parameters, etc.). In this work, we utilize a ray-tracing method combined with the multipole expansion of the active currents over a number of points located on the radiating surface to speed up the solution of large and realistic problems.
机译:在本文中,我们提出了一种用于大型对象电磁分析的技术,该技术考虑了几何体各个部分之间的相互作用(在本文中将其称为域)。每个域都与许多未知数相关联,只有相同域中包含的基本函数才被认为是完全耦合的(即,对每个域执行全波分析,将其与几何的其余部分隔离开)。然后考虑到由外部源感应的电流以及由于不同域之间的相互作用而产生的电流,应用迭代过程来确定对象上的总电流。一旦获得了给定域上的电流分布,就必须确定那些相互作用的无源域,与之相互作用的有源域-无源域将对最终结果(散射场,辐射方向图,S参数等)产生重大影响)。在这项工作中,我们利用射线追踪方法,结合有功电流在辐射表面上多个点上的多极膨胀,以加快解决大型现实问题的速度。

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