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Compensation of the Current-Transformer Saturation Effects for Digital Relays

机译:数字继电器电流互感器饱和效应的补偿

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摘要

A current transformer (CT) is accurately modeled for representation of the CT saturation effects on digital protective relays. Simulation studies performed in the PSCAD/EMTDC platform are used to investigate the impacts of CT saturation on the current phasor estimation. A new algorithm is also proposed for detection and compensation of CT saturation effects, based on: a least error squares (LES) filter which estimates the phasor parameters of the CT secondary current; a novel saturation detection method which uses the output of the LES filter for saturation detection; and a new minimum estimation error tracking approach which enhances the precision of the phasor estimation. The proposed saturation detection/compensation algorithm is independent of the parameters of the CT, the burden, and the power system. The study results show that the proposed algorithm: 1) reconstructs the distorted current waveform, under dc and ac saturation conditions, with the required precision and speed and 2) performs satisfactorily under inductive burden and under deep and slight saturation conditions.
机译:准确建模了电流互感器(CT),以表示CT饱和对数字保护继电器的影响。在PSCAD / EMTDC平台上进行的仿真研究用于研究CT饱和度对当前相量估计的影响。还提出了一种新的算法,用于检测和补偿CT饱和效应,该算法基于:最小误差平方(LES)滤波器,用于估计CT次级电流的相量参数;一种新颖的饱和度检测方法,该方法使用LES滤波器的输出进行饱和度检测;以及一种新的最小估计误差跟踪方法,可提高相量估计的精度。所提出的饱和度检测/补偿算法与CT的参数,负荷和电力系统无关。研究结果表明,所提出的算法:1)在直流和交流饱和条件下,以所需的精度和速度重建畸变的电流波形,以及2)在电感性负载以及深和轻度饱和条件下都能令人满意地工作。

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