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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >Efficient electromagnetic near-field computation by the multilevel fast multipole method employing mixed near-field/far-field translations
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Efficient electromagnetic near-field computation by the multilevel fast multipole method employing mixed near-field/far-field translations

机译:利用混合近场/远场转换的多级快速多极方法进行高效的电磁近场计算

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摘要

Method of moments (MoM) solutions of electromagnetic surface integral equations provide the desired amplitudes of the equivalent surface currents on the Huygens' surfaces around the involved objects, where the solution process is nowadays routinely accelerated by fast integral methods such as the multilevel fast multipole method (MLFMM). Computation of radiated or scattered electromagnetic fields produced by these currents requires integration over the Huygens' surfaces and can easily become extremely time-consuming for large numbers of observation points. In this contribution, integration of electromagnetic near-fields is accelerated by a postprocessing MLFMM approach, where near-field and far-field translations are combined in order to achieve optimum performance. The proposed approach has been applied in the postprocessing stage of a finite element boundary integral (FEBI) method with fast integral equation solution by MLFMM, saving a large amount of postprocessing computation time. The formulation of the proposed acceleration is presented and numerical results are shown.
机译:电磁表面积分方程的矩量法(MoM)解提供了所涉及对象周围惠更斯表面上等效表面电流的所需幅度,如今,通常通过诸如多级快速多极方法之类的快速积分方法来加速求解过程(MLFMM)。由这些电流产生的辐射或散射电磁场的计算需要在惠更斯表面上进行积分,并且对于大量的观察点来说很容易变得非常耗时。在这一贡献中,通过后处理MLFMM方法加速了电磁近场的集成,该方法将近场和远场平移组合在一起以实现最佳性能。所提出的方法已被应用到有限元边界积分法(FEBI)的后处理阶段,该方法利用MLFMM进行快速积分方程解,节省了大量的后处理计算时间。提出了建议的加速度的公式,并显示了数值结果。

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