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首页> 外文期刊>International journal of numerical modelling >Application of the short-open calibration technique to vector finite element method for analysis of microwave circuits
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Application of the short-open calibration technique to vector finite element method for analysis of microwave circuits

机译:短开校准技术在矢量有限元法分析微波电路中的应用

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摘要

A novel numerical de-embedding scheme called the short-open calibration (SOC) technique, in conjunction with the vector finite element method (FEM), has been developed to characterize two-port network of arbitrarily shaped, three-dimensional discontinuities in microwave circuits. This SOC technique is effectively implemented into the FEM for boundary truncation of the unbounded circuit structures. In such a manner, fast convergence of iterative solver for large-sparse linear matrix equations from FEM is achieved. The SOC technique is used to remove parasitic effects brought by the approximation of the impressed voltage source and also the problem of resulting consistency between the two- and three-dimensional simulations. Scattering parameters of discontinuous sections are constructed from the definition of port voltages and currents. Numerical solutions are well compared with those published in the available literatures. It is demonstrated that the features of the SOC technique are advantageous when combined with FEM for electromagnetic problems.
机译:已经开发了一种新颖的数字去嵌入方案,称为短开校准(SOC)技术,结合矢量有限元方法(FEM),以表征微波电路中任意形状的三维不连续性的两端口网络。该SOC技术有效地实施到FEM中,用于无界电路结构的边界截断。以这种方式,实现了来自有限元法的稀疏线性矩阵方程的迭代求解器的快速收敛。 SOC技术用于消除由外加电压源的近似带来的寄生效应,以及二维和三维模拟之间的一致性问题。不连续部分的散射参数由端口电压和电流的定义构成。数值解决方案与现有文献中公布的解决方案进行了很好的比较。结果表明,SOC技术的特征在与FEM结合用于电磁问题时具有优势。

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