Worst-case noise prediction with non-zero current transition times for early power distribution system verification

Peng Du, Xiang Hu, Shih-Hung Weng, A. S. Arani, Xiaoming Chen, A. Engin, Chung-Kuan Cheng
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引用次数: 17

Abstract

A novel method of predicting the worst-case noise of a power distribution system is proposed in this paper. This method takes into account the effect of the transition time of load currents, and thus allows a more realistic worst-case noise prediction. A dynamic programming algorithm is introduced on the time-domain impulse response of the power distribution system, and a modified Knuth-Yao Quadrangle Inequality Speedup is developed which reduces the time complexity of the algorithm to O(nmlog n), where n is the number of discretized current values and m is the number of zeros of the system impulse response. With the algorithm, the worst-case noise behavior of the power distribution system is investigated with respect to the transition time. Experimental results show that assuming a zero current transition time leads to an overly pessimistic worst-case noise prediction.
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基于非零电流过渡时间的最坏情况噪声预测用于配电系统早期验证
提出了一种预测配电系统最坏情况噪声的新方法。该方法考虑了负载电流过渡时间的影响,从而可以更真实地预测最坏情况下的噪声。介绍了配电系统时域脉冲响应的动态规划算法,提出了改进的Knuth-Yao四边形不等式加速算法,将算法的时间复杂度降低到O(nmlog n),其中n为离散电流值的个数,m为系统脉冲响应的零个数。利用该算法,研究了配电系统最坏情况下的噪声特性与过渡时间的关系。实验结果表明,假设电流过渡时间为零会导致最坏情况下的噪声预测过于悲观。
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