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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >An Efficient Solution of the Volume-Surface Integral Equation for Electromagnetic Scattering and Radiation of the Composite Dielectric-Conductor Objects With Reduced Number of Unknowns
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An Efficient Solution of the Volume-Surface Integral Equation for Electromagnetic Scattering and Radiation of the Composite Dielectric-Conductor Objects With Reduced Number of Unknowns

机译:未知数量减少的复合介电体的电磁散射和辐射的体积-表面积分方程的有效解

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摘要

An efficient method of moments (MoM) solution of the volume-surface integral equation (VSIE) is presented for the analysis of electromagnetic (EM) scattering and radiation of composite objects comprising arbitrarily contacted dielectrics and conductors. In contrast to the conventional Schaubert–Wilton–Glisson (SWG) and Rao–Wilton–Glisson (RWG) basis functions, which were widely used in the MoM solutions of the VSIE, a new hybrid pulse-rooftop basis function is proposed to explicitly enforce the boundary condition of vanishing tangential electric field at the dielectric–conductor interface. As a consequence, the displacement currents in the dielectrics can be efficiently modeled by a reduced number of volume bases on the same set of meshes, particularly when thin dielectric slabs are involved in the composite structures. The numerical results of EM scattering and radiation of several composite objects are shown to illustrate the accuracy and efficiency of the proposed scheme. Since the new hybrid basis function can be easily implemented into the existing fast algorithms, the VSIE solution presented in this paper is promising for EM problems of composite targets with large size.
机译:提出了一种体积表面积分方程(VSIE)的矩量(MoM)解的有效方法,用于分析包含任意接触的电介质和导体的复合物体的电磁(EM)散射和辐射。与在VSIE的MoM解决方案中广泛使用的常规Schaubert-Wilton-Glisson(SWG)和Rao-Wilton-Glisson(RWG)基函数相比,提出了一种新的混合脉冲-屋顶基函数来明确执行介电界面处切向电场消失的边界条件。结果,可以通过减少相同组网格上的体积基数来有效地建模介电质中的位移电流,尤其是当复合结构中包含薄介电质平板时。给出了多个复合物体电磁散射和辐射的数值结果,以说明该方案的准确性和效率。由于新的混合基函数可以很容易地实现到现有的快速算法中,因此本文提出的VSIE解决方案有望解决大型复合目标的EM问题。

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