Transient Stability Detection via Quick Estimation of the Critical Clearing Time Using Intelligent Systems with Energy Functions Based Inputs

Hamid Reza Shabani, M. Kalantar
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Abstract

In this paper, for Transient Stability Assessment (TSA), an approach based on two sets of intelligent units proposed that are using the appropriate inputs to quickly and accurately determine the Critical Clearing Time (CCT). The appropriate inputs are maximum potential energy, minimum kinetic energy and the slope of minimum kinetic energy. Initially, the effectiveness of these inputs is investigated using an intelligent unit in Set 1 in order to accurately identify CCT. Then to estimate CCT more quickly, the appropriate inputs of the intelligent unit in Set 1 are estimated using three other intelligent units (Set 2). Simulation results show that in this case CCT is determined through simulating only 0.05 seconds of the system response. This indicates the suitability of the proposed method for on-line pre-disturbance TSA.
基于能量函数输入的智能系统快速估计临界清除时间的暂态稳定检测
本文针对暂态稳定评估(TSA),提出了一种基于两组智能单元的方法,这两组智能单元使用适当的输入来快速准确地确定临界清除时间(CCT)。适当的输入是最大势能、最小动能和最小动能的斜率。首先,使用集合1中的智能单元来研究这些输入的有效性,以便准确地识别CCT。然后,为了更快地估计CCT,使用另外三个智能单元(Set 2)来估计Set 1中智能单元的适当输入。仿真结果表明,在这种情况下,仅通过模拟0.05秒的系统响应即可确定CCT。这表明该方法适用于在线预扰动TSA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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