故障状态与电压跌落严重程度的聚类分析:一个工业案例研究

R. Oliveira, Bibiana P. Ferraz, Ruth Agustini, R. Ferraz, R. Leborgne
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引用次数: 1

摘要

本文对电力系统中电压跌落的严重程度与故障状态之间的聚类进行了分析。短路是电压骤降的主要原因,再加上现代设备的敏感性,由于大量的工业停机,导致了重大的经济损失。为了开展这项研究,我们评估了一位工业消费者超过17个月的电压跌落监测数据。同样,本研究也利用了该行业所处输电网的电气故障历史数据。事件的严重程度根据IEEE 1564标准进行量化,该标准定义了在电压跌落评估中使用该独特指标的方法。利用这些偶然事件的同时性,获得一个唯一的数据集,通过Weka软件实现知识发现。通过数据挖掘,得出了电力系统电压跌落事件与电气故障事件之间的关系。此外,还确定了系统的最关键点及其设备,这可以作为任何电力系统中脆弱性区域分析和缓解短期电压变化的解决方案的基础。
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Clustering Analysis Between Fault Conditions and Voltage Sags Severity: An Industrial Case Study
This work presents an analysis of clusters between the severity of voltage sags and the fault conditions in a power system. Short circuits are the main causes of voltage sags, which combined with the sensitivity of modern equipment have resulted in significant financial losses due to the significant number of industrial shutdowns. In order to carry out the study, data from voltage sags monitoring in an industrial consumer over seventeen months were evaluated. Equally, the electrical faults historical of the transmission network to which this industry is inserted were utilized in this research. The severity of the events was quantified according to IEEE 1564 standardization, which defines the use of this unique indicator in the voltage sags evaluation. From the simultaneity of these contingencies, a unique dataset was obtained to realize the knowledge discovery through Weka software. Such data mining resulted in the relation between the voltage sags events and those of electrical faults in the power system. Additionally, the most critical points of the system were identified as well as their equipment, which can serve as a basis for vulnerability area analysis and for mitigation solutions to short-term voltage variations in any power system.
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