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Cellular Computational Networks based Voltage Contingency Ranking Regarding Power System Security

机译:基于蜂窝计算网络的电力系统安全性电压暂定等级

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Contingency ranking in simple terms is a process deployed to select the most serious contingencies that happen to the power system in the event of unplanned component outages or topological changes. In this study, Cellular Jordan Recurrent Networks (CJRNs) based non-linear voltage prediction is used for contingency ranking. The CJRNs based predicted voltages are used in computing performance indices that give proximity to voltage collapse severity of contingencies. The problem is solved combining with concentric relaxation method to reduce computation time. In order to show the advantages of the proposed CJRNs method, single line contingency ranking is tested by CJRNs voltage prediction model trained by different time steps. A novel voltage prediction correction mechanism which is applied after the prediction process shows to be effective for all time steps based contingency ranking.
机译:简单来说,突发事件排名是一个部署过程,用于选择在计划外组件中断或拓扑变化时发生在电源系统上的最严重的突发事件。在这项研究中,基于蜂窝Jordan递归网络(CJRN)的非线性电压预测用于应急排序。基于CJRNs的预测电压用于计算性能指标,该指标可接近意外事故的电压崩溃严重性。结合同心松弛法解决了该问题,减少了计算时间。为了展示所提出的CJRNs方法的优点,通过在不同时间步长训练的CJRNs电压预测模型来测试单线应变等级。在预测过程之后应用的新颖的电压预测校正机制显示出对所有基于时间步长的应变排序都是有效的。

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