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Application of fuzzy logic approach for obtaining composite criteria based network contingency ranking for a practical electrical power systems

机译:模糊逻辑方法在基于复合标准的电力系统网络应急排序中的应用

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In the present day power system planning and operation, considerable interest is being shown in contingency analysis. Contingency screening and ranking is one of the important components of on-line system security assessment which is done with the help of various computer softwares which employ iterative methods like Newton Raphson and Fast Decouple Load Flow Methods for obtaining the magnitudes of various parameters. The objective of contingency screening and ranking is to quickly and accurately select a short list of critical contingencies from a large list of potential contingencies and rank them according to their severity. Suitable preventive control actions can be implemented considering contingencies that are likely to affect the power system performance. Network contingencies often contribute to overloading of network branches, unsatisfactory voltages and also leading to voltage collapse. To maintain security against voltage collapse, it is desirable to estimate the effect of contingencies on the voltage stability. This research paper presents a new approach using fuzzy logic to evaluate the degree of severity of the considered contingency and to eliminate masking effect in the technique.
机译:在当今的电力系统规划和运行中,在意外事件分析中显示出相当大的兴趣。突发事件筛选和排名是在线系统安全评估的重要组成部分之一,该评估是借助各种计算机软件来完成的,这些计算机软件采用诸如Newton Raphson和Fast Decouple潮流方法之类的迭代方法来获取各种参数的大小。应急筛选和排名的目的是从大量潜在突发事件中快速准确地选择一小列关键突发事件,并根据其严重性对其进行排名。考虑到可能影响电力系统性能的突发事件,可以实施适当的预防性控制措施。网络突发事件通常会导致网络分支过载,电压不理想并导致电压崩溃。为了保持抗电压崩溃的安全性,期望估计意外事件对电压稳定性的影响。本研究论文提出了一种使用模糊逻辑的新方法,以评估所考虑的意外事件的严重程度并消除该技术中的掩蔽效应。

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