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The comparison of the stability on the extended 3D LOD-FDTD and ADI-FDTD methods including lumped elements

机译:扩展3D LOD-FDTD和ADI-FDTD方法稳定性的比较,包括集总元件

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The stability comparison of the extended three-dimensional locally one-dimensional finite difference time domain (3-D LOD-FDTD) and alternating-direction implicit finite-difference time-domain (ADI-FDTD) including lumped elements is analyzed, and three common elements are investigated: resistor, capacitor, and inductor. The elements are inserted into the LOD-FDTD and ADI-FDTD in the explicit, semi-implicit and implicit schemes. Stability analysis shows that the extended LOD-FDTD and ADI-FDTD methods are unconditionally stable in the semi-implicit and implicit schemes while conditionally stable in the explicit scheme, and its stability criterion depends on both the values of the element and the mesh sizes. Finally, a simple microstrip circuit including an inductor is simulated in the extended methods to demonstrate the validity of the stability analysis, and the extended LOD-FDTD method is shown to consume less CPU time.
机译:分析了扩展三维局部一维有限差分时间域(3-D LOD-FDTD)和交流式隐式有限差时间域(ADI-FDTD)的稳定性比较,包括集总元件,三个常见 调查元素:电阻器,电容和电感器。 将元素插入到LOD-FDTD和ADI-FDTD中,在显式,半隐式和隐式方案中。 稳定性分析表明,扩展LOD-FDTD和ADI-FDTD方法在半隐式和隐式方案中无条件地稳定,同时在显式方案中有条件稳定,其稳定性标准取决于元素的值和网格尺寸。 最后,在扩展方法中模拟包括电感器的简单微带电路,以证明稳定性分析的有效性,并且延伸的LOD-FDTD方法被示出为消耗较少的CPU时间。

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