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High Impedance Fault Detection Relaying Scheme for Arc Type Faults

机译:电弧型故障的高阻抗故障检测中继方案

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摘要

HIFs can remain masked and undetected by classical ground and current based relays for long periods of time, causing high risk of injury to surrounding wildlife and personnel. One of the hardest and complex problems facing nowadays is the detection of high impedance faults on electrical distribution systems. This paper presents a classification and detection relaying scheme for fast accurate detection and identification of linear and nonlinear arc type high impedance (HIF) faults on a meshed distribution system. The proposed method uses the Fast Fourier Transform and examines the properties of the auto and cross spectra of the lower order dominant harmonics to differentiate between several fault types. This is particularly necessary in the case of high impedance HIF-fault detection. The proposed smart relay is simulated and validated at different fault locations along the distribution feeder to ensure a robust and correct identification of linear and arc type nonlinear faults. Fault models are built for five common fault types. The low order transients are examined for each different fault type and a smart relay is designed which is capable to classify each of the different faults. The simulation results show that the proposed arc type detection relay is capable of successfully classifying each of the five different distinct possible faults at any feeder fault location and even in the presence of different source phase shift on the distribution meshed network.
机译:HIF可能长时间被传统的基于地面和电流的继电器掩盖和检测不到,从而导致对周围野生动植物和人员造成伤害的高风险。当今面临的最困难和最复杂的问题之一是在配电系统上检测高阻抗故障。本文提出了一种分类和检测中继方案,用于在网状配电系统上快速准确地检测和识别线性和非线性弧型高阻抗(HIF)故障。所提出的方法使用快速傅立叶变换,并检查低阶主谐波的自谱和互谱特性,以区分几种故障类型。在高阻抗HIF故障检测的情况下,这尤其必要。拟议的智能继电器在配电馈线的不同故障位置进行了仿真和验证,以确保可靠,正确地识别线性和弧形非线性故障。故障模型针对五种常见故障类型而构建。针对每种不同的故障类型检查低阶瞬态,并设计了一种智能继电器,该智能继电器能够对每种不同的故障进行分类。仿真结果表明,所提出的电弧类型检测继电器能够在任何馈线故障位置甚至在配电网状网络上存在不同源相移的情况下,成功地对五个不同的不同可能故障中的每一个进行成功分类。

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