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Fault detection, identification and localization in medium-voltage networks using fuzzy-logic

机译:使用模糊逻辑的中压网络故障检测,识别和定位

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Secondary substations are usually equipped with short-circuit detectors only indicating that an over-current has occurred for a given line. In case of a fault, further information about type and location is required to recover an assured grid operation as fast as possible. Conventional algorithms for fault detection used in high voltage grids are not well suited because of the high uncertainties regarding current and voltage measurement in secondary substations. A fuzzy-based approach is well suited in this case. This paper presents a fuzzy logic for detecting, identifying and locating faults occurring within typical medium voltage grids. The concept of this method is to define multiple fuzzy rules for each type of fault. The rules consist of two credibility classes. This approach makes it easier to adapt expert knowledge, e.g. the impact of the line topology and neutral point treatment can be taken into account by appropriate rules. For proving the applicability of the proposed fuzzy logic, simulations in MAT-LAB/Simulink have been done. Further benefits and the results of the simulations are shown.
机译:二次变电站通常配备有短路检测器,仅表明给定线发生过电流。在故障的情况下,需要有关类型和位置的进一步信息,以尽可能快地恢复确保网格操作。由于关于次级变电站中的电流和电压测量的高不确定性,用于高压网格的故障检测的传统算法不太适合。在这种情况下,基于模糊的方法非常适合。本文提出了一种模糊逻辑,用于检测,识别和定位在典型的中电网内发生的故障。此方法的概念是为每种故障定义多种模糊规则。规则包括两个可信度课程。这种方法使得更容易适应专家知识,例如,通过适当的规则,可以考虑线拓扑和中性点治疗的影响。为了证明所提出的模糊逻辑的适用性,已经完成了Mat-Lab / Simulink的模拟。显示了进一步的好处和模拟的结果。

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