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Classification and Localization of Fault-Initiated Voltage Sags Using 3-D Polarization Ellipse Parameters

机译:使用3-D偏振椭圆参数的故障引发电压凹凸的分类和定位

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摘要

This article presents a new approach for classification and localization of voltage sags triggered by symmetrical and unsymmetrical faults in electricity networks. The proposed method utilizes five unique parameters of three-dimensional (3-D) polarization ellipse (PE) obtained from the mapping of three-phase voltage signals in 3-D coordinates. The decision boundaries, which are set by the parametric equations exploiting the five ellipse parameters, namely, elevation, azimuth, tilt angles, semi-major axis, and semi-minor axis, are used to classify the fault-initiated sags. The localization of faults is conducted from the parametric equations demonstrating the variation of ellipse parameters with respect to distance from the fault-location. These parametric equations would be helpful to make decision faster and thereby, eliminate the uncertainty in decision-making process. The applicability of the proposed method is tested and validated using real data measured by DOE/EPRI, the recorded waveforms of IEEE 1159.2 Working Group, and the data extracted from the simulation of faults at several feeders of IEEE 14-bus test system using RSCAD and Real Time Digital Simulator (RTDS) platform.
机译:本文介绍了通过电网中对称和非对称断层触发的电压凹陷的分类和定位的新方法。所提出的方法利用从3-D坐标中的三相电压信号的映射获得的三维(3-D)偏振椭圆(PE)的五个独特参数。由利用五个椭圆参数的参数方程式设置的决策边界,即高程,方位角,倾斜角,半主轴和半缩小轴用于对故障启动的凹陷进行分类。故障的定位是从参数方程进行的,示出了与来自故障位置的距离的椭圆参数变化。这些参数方程有助于更快地做出决策,从而消除决策过程中的不确定性。使用由DOE / EPRI测量的真实数据进行测试和验证所提出的方法的适用性,IEEE 1159.2工作组的录制波形,以及使用RSCAD的IEEE 14总线测试系统的若干馈线的故障模拟中提取的数据实时数字模拟器(RTDS)平台。

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