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A new approach for classification and characterization of voltage dips and swells using 3D polarization ellipse parameters

机译:使用3D极化椭圆参数对电压骤降和骤升进行分类和表征的新方法

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摘要

This paper presents a new method for classification and characterization of voltage dips and swells in electricity networks. The proposed method exploits unique signatures and parameters of three phase voltage signals extracted from the polarization ellipse in three-dimensional (3D) co-ordinates. Five ellipse parameters, which include azimuthal angle, elevation, tilt, semi-minor axis and semi-major axis, are used to classify and characterize voltage dips and swells. Seven types of voltage dips, which include a total of 19 groups of dips incorporating different kinds of balanced (three-phase dips) and unbalanced (single-phase or double-phase) dips, are identified and successfully classified using the 3D polarization ellipse parameters. Two types of voltage swells, which include a total of 6 groups, are also classified using the proposed method. The proposed method is validated using real measurement data, recorded waveforms provided by the IEEE 1159.2 working group, and the data of unbalanced dips associated with phase angle jumps, voltage drops and rotations due to loading effects.
机译:本文提出了一种新的分类和表征电网电压突降的方法。所提出的方法利用了在三维(3D)坐标中从极化椭圆提取的三相电压信号的独特特征和参数。五个椭圆参数(包括方位角,仰角,倾斜,半短轴和半长轴)用于分类和表征电压骤降和骤升。使用3D极化椭圆参数识别并成功分类了七种类型的电压跌落,包括总共19组跌落,其中包含了不同种类的平衡(三相跌落)和不平衡(单相或双相)跌落。 。使用建议的方法还可以对包括共6组的两种类型的电压骤升进行分类。使用实际测量数据,IEEE 1159.2工作组提供的记录波形以及与由于负载效应引起的相角跳变,电压降和旋转相关的不平衡倾角数据验证了该方法的有效性。

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