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Extracting the phase of fault currents: A new approach for identifying arc flash faults

机译:提取故障电流的阶段:一种识别电弧闪光故障的新方法

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摘要

This paper proposes a new approach for detecting and identifying arc flash faults in power systems. The proposed approach is structured to extract the phases of transient frequency components present in arc flash fault currents. The desired phases can be extracted by processing fault currents using a modulated filter bank that is composed of high pass finite impulse response (FIR) filters. These filters are designed by using the Kaiser window method to achieve linear phase responses. Extracting the phases of transient frequency components, present in arc flash fault currents, can provide signature information for accurate and fast detection and distinguish of an arc flash fault. The proposed phase-based approach is implemented for off-line testing to evaluate its performance. Test cases of parallel and series arch flash faults are conducted for supplying linear, non-linear, and dynamic loads. Simulation and off-line results demonstrate the validity, accuracy, speed, and reliability of the phase-based approach to detect and distinguish arc flash faults with minor sensitivities to the load type and arch flash type.
机译:本文提出了一种用于检测和识别电源系统电弧闪光故障的新方法。所提出的方法构造成提取闪频故障电流中存在的瞬态频率分量的相位。可以通过使用由高通有限脉冲响应(FIR)滤波器组成的调制滤波器组来通过处理故障电流来提取所需的相。这些过滤器是通过使用Kaiser窗口方法来实现线性相位响应的设计。提取瞬态频率分量的阶段,存在于电弧闪存故障电流中,可以提供签名信息,以便精确快速地检测和区分电弧闪光故障。提出的基于阶段的方法是实施离线测试以评估其性能。对并联和系列拱形闪光故障的测试用例进行线性,非线性和动态载荷进行。仿真和离线结果展示了基于相位的方法的有效性,准确性,速度和可靠性来检测和区分具有次要敏感性的弧形闪光故障与负载类型和拱形闪存类型。

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