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Smart Overhead Lines Autoreclosure Algorithm Based on Detailed Fault Analysis

机译:基于详细故障分析的智能架空线自动重合闸算法

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摘要

This paper presents a novel numerical algorithm implemented in a unique methodology for the control of smart single-phase autoreclosure and comprehensive fault analysis for overhead lines using synchronized measurement technology. The algorithm improves on existing methodologies for adaptive single-phase autoreclosure, fault location, detailed disturbance records analysis, and fault data management. It is based on line current and voltage data sampled at both line terminals and synchronized sampling of all analogue input variables is assumed in this paper. The proposed algorithm is derived in the spectral domain and based on the application of the Discrete Fourier Transform. The electrical arc as a source of higher harmonics is included in the complete fault model and represents the starting point for the development of the new algorithm. The algorithm's distinctive feature is that it can determine both the fault arc and the fault resistance. The presence or absence of an arc resistance is used to determine the nature of the fault. The algorithm can be applied to both short and long lines. The algorithm is thoroughly tested using electromagnetic transient simulations of an overhead line connected between two active networks, as well as with field data.
机译:本文提出了一种新颖的数值算法,该算法采用独特的方法实现了智能单相自动重合闸的控制,并使用同步测量技术对架空线路进行了全面的故障分析。该算法对自适应单相自动重合闸,故障定位,详细的故障记录分析和故障数据管理的现有方法进行了改进。它基于在两个线路端子上采样的线路电流和电压数据,并且本文假设所有模拟输入变量的同步采样。所提出的算法是在频谱域中导出的,并基于离散傅里叶变换的应用。电弧作为高次谐波的来源已包含在完整的故障模型中,代表了开发新算法的起点。该算法的独特之处在于它既可以确定故障电弧又可以确定故障电阻。使用是否存在电弧电阻来确定故障的性质。该算法可以应用于短线和长线。使用在两个活动网络之间连接的架空线的电磁暂态仿真以及现场数据对算法进行了全面测试。

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