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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Hybrid of Method of Moments and Cylindrical Eigenfunction Expansion to Study Substrate Integrated Waveguide Circuits
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Hybrid of Method of Moments and Cylindrical Eigenfunction Expansion to Study Substrate Integrated Waveguide Circuits

机译:矩量法和圆柱本征函数展开的混合研究衬底集成波导电路

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摘要

A hybrid method that combines method of moments (MOM) and cylindrical eigenfunction expansion is presented to study a substrate integrated waveguide circuit that consists of metallic and dielectric circular cylinders. The problem is considered as a 2-D electromagnetic problem assuming no field variation normal to the dielectric substrate. The scattered field from each circular cylinder is expanded by cylindrical eigenfunctions, and the equivalent current densities at a waveguide port are expanded using the MOM. After enforcing boundary conditions and applying the additional theorem of Bessel and Hankel functions, a set of linear equations are constructed using the orthogonality of the exponential function. With matrix manipulation and sub-ports combination, the S matrix can then be obtained. Four examples are analyzed by using the hybrid method and verified by using Ansoft Corporation's commercial High Frequency Structure Simulator (HFSS) software package. It is shown that the hybrid method runs faster than HFSS and requires less memory. It is also pointed out that the method can be used to study a circuit with noncircular cylinders.
机译:提出了一种结合矩量法(MOM)和圆柱本征函数展开的混合方法,以研究由金属和介电圆柱组成的基板集成波导电路。该问题被认为是二维电磁问题,假设没有垂直于介电基片的场变化。来自每个圆柱体的散射场通过圆柱特征函数扩展,并且使用MOM扩展了波导端口的等效电流密度。在强制执行边界条件并应用Bessel和Hankel函数的附加定理之后,使用指数函数的正交性构造了一组线性方程。通过矩阵处理和子端口组合,可以得到 S 矩阵。使用混合方法分析了四个示例,并使用Ansoft Corporation的商业高频结构模拟器(HFSS)软件包进行了验证。结果表明,混合方法比HFSS运行速度更快,并且所需的内存更少。还指出,该方法可用于研究具有非圆柱的电路。

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