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SSTA Scheme for Multiple Input Switching Case Based on Stochastic Collocation Method

机译:基于随机配置方法的多输入切换案例的SSTA方案

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摘要

In this paper, a complete SSTA scheme is proposed to calculate the output waveform of a logic cell on any random selected point in the process variational space, or the mean value and variance of the output signal with very high accuracy and acceptable CPU cost. At first, Miller capacitances between the input nodes and internal nodes of a logic cell are introduced to construct the improved MCSM model so as to improve the modeling accuracy. Secondly, the stochastic collocation method jointed with the Modified Nested Sparse Grid technique is adopted for SSTA procedure to avoid the exponential increase of the collocation points number caused by tensor product. Thirdly, a Nominal waveform based Fast Simulation Method is developed to speedup the simulation on each collocation point. At last, Automatic Waveform Construction Technique is developed to construct the output waveform with the approximation points as little as possible to decrease the computational cost while guaranteeing high accuracy. Numerical results are also given to demonstrate the efficiency of the proposed algorithm.
机译:在本文中,提出了一种完整的SSTA方案来计算过程变化空间中任意随机选择点上逻辑单元的输出波形,或者以非常高的精度和可接受的CPU成本来计算输出信号的平均值和方差。首先,引入逻辑单元的输入节点与内部节点之间的米勒电容,以构建改进的MCSM模型,从而提高建模精度。其次,将随机配置方法与改进的嵌套稀疏网格技术相结合用于SSTA过程,以避免张量积导致的配置点数呈指数增长。第三,开发了基于名义波形的快速仿真方法,以加快每个搭配点的仿真速度。最后,开发了自动波形构造技术以尽可能少地构造具有逼近点的输出波形,从而在确保高精度的同时降低了计算成本。数值结果也证明了该算法的有效性。

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