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从电磁理论中的体等效原理出发,推导了任意电磁各向异性介质目标电磁散射的体积分方程。在此基础上,由SWG基函数和伽略金法建立其矩阵方程。在迭代求解过程中,应用了快速计算阻抗元素的等效偶极子法和加速矩阵向量积的快速偶极子法两种快速算法,有效地降低了传统矩量法计算电磁各向异性介质目标RCS的时间。同时,在快速偶极子法中,远场组间互阻抗元素无需显式计算,并且形式简单的聚集、转移和发散函数可现用现算,从而大量节省了计算机内存。数值仿真结果表明:本文使用的方法在分析电磁各向异性介质目标的电磁散射特性中是非常有效的,不仅有高的计算效率和低的内存需求,而且有良好的数值精度。  相似文献   
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A simple analytical method is presented to analyze the transmission of electromagnetic plane waves through multilayer stacked composite two-dimensional (2D) structures at microwave frequencies. Unlike the traditional structure, high impedance surface with graphene sheet is proposed. The structure includes graphene and thin metal patches and meshes. Simple analytical formulas are introduced for the surface impedance of graphene and for the grid impedance of electrically dense arrays of metal square patches or strips. The result of transmission proper- ties is based on the dynamic tunable model of the high impedance surface, which considers the surface conductivity of graphene layer. The transmission coefficient obtained by using the equivalent circuit method is validated against full-wave numerical simulations. The considered equivalent circuit method can be useful in the design of graphene tunable planar devices.  相似文献   
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