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Analysis of finite-microstrip structures using surface equivalence principle and multiple network theory (SEMN)

机译:使用表面等效原理和多重网络理论(SEMN)分析有限微带结构

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Two techniques are developed for the analysis of finite microstrip structures. They are based on electric and magnetic field integral equation (EFIE and MFIE) formulations of the surface equivalent principle and multiple network theory (SEMN) method. Using pulse surface basis functions, the surface of each homogeneous dielectric body is modeled by small flat segments of arbitrary geometry and constant electromagnetic field. Using the surface equivalence principle and the Green's functions of the homogeneous space, the admittance and impedance matrices are computed. Then, the boundary conditions and multiple network theory are applied to determine the overall characteristic of the entire space. Several radiation and scattering examples are numerically analyzed and their calculated near and far fields are presented. The numerical results of the two formulations are then compared with measurement and those of HFSS and ENSEMBLE.
机译:开发了两种技术来分析有限微带结构。它们基于表面等效原理和多重网络理论(SEMN)方法的电场和磁场积分方程(EFIE和MFIE)公式。使用脉冲表面基函数,通过任意几何形状和恒定电磁场的小平面段对每个均质介电体的表面进行建模。使用表面等效原理和齐次空间的格林函数,计算导纳和阻抗矩阵。然后,应用边界条件和多重网络理论来确定整个空间的总体特征。对几个辐射和散射实例进行了数值分析,并给出了它们的近场和远场计算结果。然后将两种配方的数值结果与HFSS和ENSEMBLE的测量结果进行比较。

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