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Measurement System for a Power Quality Improvement Structure Based on IEEE Std.1459

机译:基于IEEE std.1459的电能质量改进结构测量系统

摘要

This paper presents an IEEE Std. 1459 power magnitude measurement system working as a part of a power quality improvement structure. It is intended to enhance the performance of selective shunt active power compensators (SAPCs). The measurements system includes a synchronization structure to estimate the fundamental positive-sequence component of grid voltages in distorted and asymmetric three-phase systems. The synchronization signal is used by a sliding window discrete Fourier transformation (SDFT) recursive algorithm to obtain the fundamental components of the voltages and currents. This algorithm extremely reduces the computational cost compared with the classic SDFT implementation. This strategy allows for a sample-by-sample quasicontinuous calculation of all power quantities, as well as the nonefficient currents. These magnitudes had been used to generate the reference currents for an SAPC achieving a quasicontinuous compensation of the nonefficient power quantities. Simulation and experimental results demonstrate that the proposed measurements system operates correctly under all electrical power network conditions.
机译:本文介绍了IEEE标准。 1459功率幅值测量系统,是电能质量改善结构的一部分。旨在增强选择性并联有功功率补偿器(SAPC)的性能。测量系统包括一个同步结构,用于估算畸变和非对称三相系统中电网电压的基本正序分量。滑动窗口离散傅里叶变换(SDFT)递归算法使用同步信号来获得电压和电流的基本分量。与经典的SDFT实现相比,该算法极大地降低了计算成本。这种策略允许对所有电量以及无效电流进行逐样本准连续计算。这些幅度已用于生成SAPC的参考电流,从而实现对非有效电量的准连续补偿。仿真和实验结果表明,所提出的测量系统可以在所有电力网络条件下正常运行。

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