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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >An efficient full-wave method for analysis of dielectric resonators possessing separable geometries immersed in inhomogeneous environments
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An efficient full-wave method for analysis of dielectric resonators possessing separable geometries immersed in inhomogeneous environments

机译:一种有效的全波方法,用于分析浸没在不均匀环境中的具有可分离几何结构的介质谐振器

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摘要

In this paper, dielectric resonators possessing separable-coordinate geometries immersed in planarly-inhomogeneous media are analyzed using a volume electric-field integral-equation (IE)/Galerkin's technique. A three-dimensional complete entire-domain basis function set is utilized in numerically solving the IE. It is shown that a few terms of one physically significant subset of basis functions are usually sufficient for the accurate determination of complex resonant frequencies of cylindrical and rectangular resonators immersed in homogeneous and planarly inhomogeneous environments. The results using a few basis functions show good agreement with the previous literature, and new results are presented for some rectangular resonator geometries.
机译:在本文中,使用体积电场积分方程(IE)/ Galerkin's技术分析了具有可分离坐标的几何介质的电介质谐振器,这些介质浸没在平面非均匀介质中。三维完整的全域基础函数集用于数值求解IE。结果表明,基本函数的一个物理上重要子集的几项通常足以准确确定沉浸在同质和平面不均匀环境中的圆柱和矩形谐振器的复杂谐振频率。使用一些基本函数的结果与以前的文献显示出很好的一致性,并且针对某些矩形谐振器几何结构提出了新的结果。

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