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An efficient algorithm for the three-dimensional analysis of passive microstrip components and discontinuities for microwave and millimeter-wave integrated circuits

机译:用于微波和毫米波集成电路的无源微带元件和不连续性的三维分析的高效算法

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摘要

A numerical technique for the full-wave analysis of shielded, passive microstrip components on a two-layer substrate is presented. The distinct feature of the technique is an efficient formulation for establishing the system matrix in the moment method procedure which allows the derivation of the elements of any large matrix by a linear combination of elements in a precomputed index table. The table is obtained from a two-dimensional discrete fast Fourier transform. In the moment method procedure, the two-dimensional surface current is represented by locally defined rooftop functions. The effect of the resonant modes associated with the metallic enclosure on the numerical procedure is examined. In order to demonstrate the features and the accuracy of the technique, numerical results for a microstrip open end and for a right-angle bend with and without the compensated corner are computed by using the resonant technique and are compared with other published computational and experimental data.
机译:提出了一种用于对两层基板上的屏蔽无源微带元件进行全波分析的数值技术。该技术的显着特征是在矩量法过程中建立系统矩阵的有效公式,该方法允许通过预先计算的索引表中元素的线性组合来推导任何大矩阵的元素。该表是从二维离散快速傅立叶变换获得的。在瞬时方法过程中,二维表面电流由局部定义的屋顶函数表示。研究了与金属外壳相关的共振模式对数值程序的影响。为了证明该技术的特性和准确性,使用共振技术计算了微带开口端和带或不带补偿角的直角弯曲的数值结果,并将其与其他已发表的计算和实验数据进行了比较。 。

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