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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Stochastically Optimized Adaptive Procedure for the Location of MAS Auxiliary Monopoles: The Case of Electromagnetic Scattering by Dielectric Cylinders
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A Stochastically Optimized Adaptive Procedure for the Location of MAS Auxiliary Monopoles: The Case of Electromagnetic Scattering by Dielectric Cylinders

机译:MAS辅助单极子的位置的随机优化的自适应程序:介电缸电磁散射的情况。

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摘要

A genetically optimized technique that fully automates the potentially laborious allocation of the auxiliary monopoles for the method of auxiliary sources (MAS) is presented for the problem of electromagnetic (EM) scattering by isotropic dielectric cylinders with various cross sections. The proposed technique uses as input information not only the geometry of the scatterer but also the exciting field and the material properties of the cylinders are implicitly taking part in the optimization procedure. The resulting auxiliary surfaces, where the simulating monopoles are situated, are appropriately adapted to the original boundary surface and the MAS modeling is greatly facilitated. In addition, certain considerations are taken into account in order to avoid undesirable numerical dependencies between the fictitious monopoles. Finally, the accuracy of the numerical method combined with overdetermined systems of equations is examined for isotropic cylinders of various geometries and dielectric characteristics.
机译:提出了一种遗传优化技术,该技术可完全自动化辅助单极子的潜在费力分配,以实现辅助源(MAS)的方法,以解决具有各种横截面的各向同性介电圆柱体产生的电磁(EM)散射问题。所提出的技术不仅将散射体的几何形状用作输入信息,而且还将激励场和圆柱体的材料特性隐含地参与了优化过程。模拟单极所处的最终辅助表面将适当地适应原始边界表面,大大简化了MAS建模。另外,为了避免虚拟单极之间的不希望的数值依赖性,考虑了某些考虑。最后,针对各种几何形状和介电特性的各向同性圆柱体,检验了数值方法与超定方程组相结合的准确性。

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