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首页> 外文期刊>IEEE Transactions on Power Delivery >Model-Based General Arcing Fault Detection in Medium-Voltage Distribution Lines
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Model-Based General Arcing Fault Detection in Medium-Voltage Distribution Lines

机译:高压配电线路中基于模型的通用电弧故障检测

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摘要

Arcing fault is a special fault in medium-voltage distribution lines which can potentially cause shock hazard, apparatuses failure, and wild fire. Due to its short duration or low fault current, the detection of an arcing fault in distribution lines is highly challenging. In this paper, a model-based general detection method to separate an arcing fault from common nonarcing disturbances is proposed. First, an arcing fault model and a nonarcing disturbance model relating the disturbance characteristics, the load parameters, and the substation voltage and current waveforms are derived. For the accuracy of the models, the voltage drop on the distribution line is taken into consideration. Then, the procedure of arcing fault detection is introduced, including disturbance current calculation, parameters estimation, mean-square-error calculation, and decision making. An arcing fault is claimed when the measured voltage and current signals match the arcing fault model better than the nonarcing disturbance model. The method is tested on a modified standard test system using PSCAD/EMTDC considering different fault locations and scenarios. Simulation results show that the proposed detection method has high accuracy and is robust to fault distance, fault resistance, load current, and sampling rate. Laboratory experiments are also conducted to further validate the proposed method.
机译:电弧故障是中压配电线路中的一种特殊故障,可能引起电击危险,设备故障和野火。由于其持续时间短或故障电流低,在配电线路中检测电弧故障非常具有挑战性。本文提出了一种基于模型的通用检测方法,将电弧故障与常见的非电弧干扰区分开。首先,推导了一个电弧故障模型和一个非电弧干扰模型,该模型将干扰特征,负载参数以及变电站的电压和电流波形联系起来。为了确保模型的准确性,考虑了配电线上的电压降。然后介绍了电弧放电故障检测的过程,包括扰动电流计算,参数估计,均方误差计算和决策过程。当测得的电压和电流信号与电弧故障模型的匹配性优于无电弧干扰模型时,即为电弧故障。考虑到不同的故障位置和情况,该方法在使用PSCAD / EMTDC的改进的标准测试系统上进行了测试。仿真结果表明,所提出的检测方法具有较高的准确性,并且对故障距离,故障电阻,负载电流和采样率具有鲁棒性。还进行了实验室实验以进一步验证所提出的方法。

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