Efficient power grid integrity analysis using on-the-fly error check and reduction

Duo Li, S. Tan, N. Mi, Yici Cai
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Abstract

In this paper, we present a new voltage IR drop analysis approach for large on-chip power delivery networks. The new approach is based on recently proposed sampling based reduction technique to reduce the circuit matrices before the simulation. Due to the disruptive nature of tap current waveforms in typical industry power grid networks, input current sources typically has wide frequency power spectrum. To avoid the excessively sampling, the new approach introduces an error check mechanism and on-the-fly error reduction scheme during the simulation of the reduced circuits to improve the accuracy of estimating the the large IR drops. The proposed method presents a new way to combine model order reduction and simulation to achieve the overall efficiency of simulation. The new method can also easily trade errors for speed for different applications. Experimental results show the proposed IR drop analysis method can significantly reduce the errors of the existing ETBR method at the similar computing cost, while it can have 10X and more speedup over the the commercial power grid simulator in UltraSim with about 1–2% errors on a number of real industry benchmark circuits.
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基于动态误差检测和减少的高效电网完整性分析
在本文中,我们提出了一种新的电压IR降分析方法,用于大型片上供电网络。该方法基于最近提出的基于采样的约简技术,在仿真前对电路矩阵进行约简。由于典型工业电网中分接电流波形的破坏性,输入电流源通常具有宽频率功率谱。为了避免过度采样,该方法在简化电路的仿真过程中引入了误差检查机制和动态误差减小方案,以提高估计大红外降的精度。提出了一种将模型降阶与仿真相结合的新方法,以实现仿真的整体效率。对于不同的应用程序,新方法还可以很容易地用错误换取速度。实验结果表明,在计算成本相似的情况下,本文提出的红外跌落分析方法可以显著降低现有ETBR方法的误差,并且在多个实际工业基准电路上,与UltraSim商用电网模拟器相比,该方法的加速速度可提高10倍以上,误差约为1-2%。
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