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Identifying switched capacitor relative locations and energizing operations

机译:识别开关电容器的相对位置和通电操作

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Capacitor banks are commonly connected to the power system to enhance its reliability by providing voltage support, improving power factor, and increasing the system capacity. They are usually switched in and out of the system according to the amount of connected load. This paper analyzes the measurement data of a distribution utility with shunt capacitor banks located downstream from the power quality monitor. An algorithm is proposed to identify both energizing and de-energizing capacitor switching events. It is tested in a dataset of 829 files, containing 358 energizing events, 8 de-energizing events, recloser operation during fault, and files with no transient event. Both capacitor energizing and de-energizing identification algorithms were observed to achieve high accuracy ratios, with a small number of misclassifications.
机译:电容器组通常连接到电源系统,以通过提供电压支持,改善功率因数和增加系统容量来提高其可靠性。通常根据连接的负载量将它们切入和切出系统。本文分析了位于电能质量监控器下游的带有并联电容器组的配电公司的测量数据。提出了一种算法来识别电容器开关事件的通电和断电。它在829个文件的数据集中进行了测试,其中包含358个通电事件,8个断电事件,故障期间的重合闸操作以及无瞬态事件的文件。观察到电容器加电和断电识别算法均能实现较高的准确率,并具有少量的误分类。

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