基于改进PQ理论的电网同步正负序列检测方法

A. Boussaid, Y. Maouche, A. Nemmour, A. Khezzar
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引用次数: 4

摘要

本文提出了一种改进的PQ理论,用于故障电网条件下检测电力电压的正负分量。快速准确地检测这些序列对于实现分布式电源在主电网中以单位功率因数集成运行以及其他应用具有重要意义。对所提出的方法进行了详细的描述。同步旋转框架锁相环(SRF PLL)通常用于检测精确的相位角;然而,在不平衡和扭曲条件下,该解决方案无法立即提取两个序列。FMV滤波器是一种非常有趣的选择,可以精确和即时地获得相角;在这种情况下,不同种类的窄带宽滤波器被用于正、负分量的分离;然而,响应时间延长,并产生了重要的相位延迟。计算瞬时功率的平均值是消除时间响应小于一半周期的交流分量的一种方法。仿真结果在Dspace 1104平台上得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A positive and negative sequences detecting method based on an improved PQ theory for power grid synchronization
This paper proposes a modified PQ theory for detecting the positive and negative components of the utility voltages under faulty grid conditions. Fast and exact detecting of those sequences is important to achieve the operating at unity power factor integration of distributed generations into the main grid and for other uses. A detailed description of the proposed method has been accomplished. A phase lockedloop on synchronous rotating frame (SRF PLL) is commonly used to detect the exact phase angle; nevertheless this solution failed immediately to extract the two sequences under unbalanced and distorted conditions. The FMV filter constitutes a very interesting alternative to obtain the phase angle precisely and instantaneously; in this way, different kind of filters with a narrow bandwidth have been used for the separation of positive and negative components; however the response time is extended and an important phase delay is generated. the calculation of the mean value of the instantaneous power is a way to eliminate the AC component with a time response less than one of half of period. The obtained simulation results have been confirmed experimentally using a Dspace 1104 platform.
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