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Modeling of Linear Stimuli for Accelerated Mixed-Signal Simulations

机译:加速混合信号仿真线性刺激的建模

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Continuously shrinking design sizes facilitated increased integration of multitude of components on a single chip. The performance of conventional simulation methods through analog design has proven insufficient to meet the increasing demands of present mixed-signal circuits. We present an extension of the PRAISE (Piecewise Rapid Analog Integrated Simulation Environment) approach which allows accelerated simulation of analog circuits with extended applicability. In the past, this approach was only applied to piecewise-constant input stimuli (implicitly given by the digital part of analog/mixed-signal circuits). To meet the requirements of realistic mixed-signal simulations we expanded the simulation kernel to handle linear input stimuli. We introduce the changes in the algorithm and discuss runtime and accuracy compared to a conventional simulator.
机译:连续缩小的设计尺寸促进了众多组件在单个芯片上增加的增加。 通过模拟设计的传统仿真方法的性能已经证明不足以满足当前混合信号电路的不断增加的需求。 我们展示了延长了(分段快速模拟集成仿真环境)方法,允许通过扩展适用性加速模拟电路仿真。 在过去,这种方法仅应用于分段 - 常数输入刺激(由模拟/混合信号电路的数字部分隐式给出)。 为了满足现实混合信号模拟的要求,我们扩展了模拟内核以处理线性输入刺激。 与传统模拟器相比,我们介绍了算法的变化并讨论了运行时和准确性。

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