Mixed-Mode Simulation of the MMIC Using Unconditionally Stable Pseudospectral Time-Domain Method

Hong-xing Zheng, Li-Qiang Wang, L. Feng, F. Gao
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Abstract

This paper illustrates the application of an alternating direction implicit (ADI) technique for the pseudospectral time-domain (PSTD) algorithm. A lumped element finite-difference time-domain (FDTD) simulator is developed to the wide-band modeling of microwave and millimeter wave integrated circuit. Three-dimensional ADI- PSTD scheme is adopted to describe the circuit passive part, whereas numerical device simulation techniques are employed for the active semiconductor devices. To achieve very accurate results, the short-open calibration technique has been modeled the interconnections. The resulting scheme allows for accurate mixed-mode simulation, which inherently accounts for propagation and radiative effects. Comparisons with the FDTD approach and an approach based on strong splitting demonstrate the potential of the method to substantially reduce the cost of simulating linear waves in dispersive materials.
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基于无条件稳定伪谱时域方法的MMIC混合模仿真
本文阐述了交替方向隐式(ADI)技术在伪谱时域(PSTD)算法中的应用。针对微波和毫米波集成电路的宽带建模,研制了集总元时域有限差分模拟器。电路无源部分采用三维ADI- PSTD格式,有源器件采用数值器件仿真技术。为了获得非常精确的结果,短开路校准技术对互连进行了建模。所得到的方案允许精确的混合模式模拟,它固有地考虑了传播和辐射效应。通过与FDTD方法和基于强分裂的方法的比较,证明了该方法在大幅度降低色散材料中线性波模拟成本方面的潜力。
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