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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Improvements of the two-dimensional FDTD method for the simulation of normal- and superconducting planar waveguides using time series analysis
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Improvements of the two-dimensional FDTD method for the simulation of normal- and superconducting planar waveguides using time series analysis

机译:使用时间序列分析法对二维FDTD方法进行改进,以模拟常导和超导平面波导

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摘要

Time-domain simulation results of two-dimensional (2-D) planar waveguide finite-difference time-domain (FDTD) analysis are normally analyzed using Fourier transform. The introduced method of time series analysis to extract propagation and attenuation constants reduces the desired computation time drastically. Additionally, a nonequidistant discretization together with an adequate excitation technique is used to reduce the number of spatial grid points. Therefore, it is possible to simulate normal- and superconducting planar waveguide structures with very thin conductors and small dimensions, as they are used in MMIC technology. The simulation results are compared with measurements and show good agreement.
机译:通常使用傅立叶变换来分析二维(2-D)平面波导有限差分时域(FDTD)分析的时域仿真结果。引入的时间序列分析方法可提取传播常数和衰减常数,从而大大减少了所需的计算时间。另外,非等距离散与适当的激励技术一起用于减少空间网格点的数量。因此,有可能模拟导体非常薄且尺寸较小的常导和超导平面波导结构,因为它们用于MMIC技术。将仿真结果与测量结果进行比较,并显示出良好的一致性。

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