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A current-based hybrid method for electromagnetic modelling of complex structures.

机译:用于复杂结构电磁建模的基于电流的混合方法。

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This dissertation presents a general, unified hybrid method for radiation and scattering problems such as antennas mounted on a large platform. The method uses a coupled Electric Field Integral Equation (EFIE) and Magnetic Field Integral Equation (MFIE) formulation, referred to as the Hybrid EFIE-MFIE (HEM), in which the EFIE and MFIE are applied to geometrically distinct regions of an object. HEM is capable of modelling arbitrary three-dimensional metallic structures, including wires and both open and closed surfaces. It is shown that current-based hybrid techniques which utilize physical optics (PO) are an approximation of the HEM formulation.; A numerical solution procedure is given that combines the moment method (EFIE) with an iterative Neumann series technique (MFIE). This permits one to effectively utilize the PO approximation when appropriate, and provides a general and systematic mechanism to correct the errors introduced by PO. Consequently, HEM overcomes the inherent limitations of hybrid techniques which rely upon ansatz-based improvements of PO.; The method is applied to the problem of radiation from objects that can be modelled using wires and metallic surfaces as fundamental elements. A detailed development of the computer model is presented. In addition, an approximate method for handling dielectric sheets, known as Dielectric Physical Optics, is presented and a numerical study is given to demonstrate the accuracy of the method.; Finally, representative examples are given to demonstrate the accuracy of the calculations. Calculations for a satellite antenna are presented to demonstrate that the method can handle the difficult problem of a parasitic monopole located in the deep shadow region. In addition, calculations for a unique cavity-backed quad-slot antenna are given.
机译:本文提出了一种通用的,统一的混合方法来解决辐射和散射问题,例如安装在大型平台上的天线。该方法使用耦合的电场积分方程(EFIE)和磁场积分方程(MFIE)公式,称为混合EFIE-MFIE(HEM),其中EFIE和MFIE应用于对象的几何上不同的区域。 HEM能够对任意三维金属结构进行建模,包括导线以及开放和封闭表面。结果表明,利用物理光学(PO)的基于电流的混合技术是HEM公式的近似值。给出了将矩量法(EFIE)与迭代诺伊曼级数技术(MFIE)相结合的数值求解程序。这允许在适当的时候有效地利用PO逼近,并提供一种通用且系统的机制来纠正PO引入的误差。因此,HEM克服了混合技术的固有局限性,后者依赖于基于ansatz的PO改进。该方法适用于来自物体的辐射问题,可以使用电线和金属表面作为基本元素对其建模。介绍了计算机模型的详细开发。此外,提出了一种处理介电片的近似方法,称为介电物理光学,并进行了数值研究以证明该方法的准确性。最后,给出了有代表性的例子来说明计算的准确性。提出了用于卫星天线的计算,以证明该方法可以解决位于深阴影区域的寄生单极子的难题。另外,给出了独特的腔后四槽天线的计算。

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