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首页> 外文期刊>IEEE Microwave and Guided Wave Letters >A fast and efficient FDTD algorithm for the analysis of planar microstrip discontinuities by using a simple source excitation scheme
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A fast and efficient FDTD algorithm for the analysis of planar microstrip discontinuities by using a simple source excitation scheme

机译:使用简单的源激发方案分析平面微带不连续性的快速高效FDTD算法

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A fast solution FDTD algorithm with a simple and efficient excitation scheme for the analysis of microstrip circuits is introduced. In this algorithm, the source plane is located several nodes inside the near-end terminal plane and absorbing boundary conditions (ABC's) can be applied on the terminal plane directly, without any special treatment. In addition, with this excitation scheme, no dc source distortions are induced on the source plane and nearby. Consequently, the terminal plane can be moved very close to the discontinuity, even at one-cell beyond the input/output reference planes. Hence, very significant computational savings can be achieved. To demonstrate the validity and efficiency of this algorithm, numerical results for a typical discontinuous microstrip structure are given and compared with those obtained by the conventional FDTD method.
机译:介绍了一种具有简单有效激励方案的快速求解FDTD算法,用于分析微带电路。在该算法中,源平面位于近端终端平面内的多个节点上,并且无需任何特殊处理即可直接在终端平面上应用吸收边界条件(ABC)。此外,采用这种激励方案,不会在源平面及其附近引起任何直流源失真。因此,即使在超出输入/输出参考平面一个单元的情况下,端子平面也可以非常靠近不连续点移动。因此,可以实现非常显着的计算节省。为了证明该算法的有效性和有效性,给出了典型的不连续微带结构的数值结果,并将其与常规FDTD方法获得的数值结果进行了比较。

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