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An Islanding Detection Algorithm for Inverter-Based Distributed Generation Based on Reactive Power Control

机译:基于无功控制的逆变器分布式发电孤岛检测算法

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摘要

For the inverter-based distributed generation (DG) under constant power control, this paper analyzes the relationship between the active/reactive power mismatch and frequency deviation, respectively, during islanding and finds that the frequency variation trends caused by active and reactive power mismatches may be opposite. In order to eliminate the nondetection zone (NDZ) and detect islanding rapidly, an innovative islanding detection algorithm is presented based on a reactive power control strategy. The strategy provides the reactive power reference for the DG to guarantee the consistency of the frequency variation trends caused by both active and reactive power mismatches, thus accelerating the islanding detection speed. In addition, the introduction of the voltage variation into the proposed reactive power control strategy can regulate voltage dynamically in grid-connected mode and further shorten the islanding detection time as well. According to the antiislanding test system in the IEEE Std. 929-2000 and IEEE Std. 1547-2003, several case studies are carried out in the power systems computer-aided design/EMTDC environment. The simulation results show that the proposed algorithm has the zero NDZ property and can detect islanding rapidly. Moreover, the algorithm also performs effectively for load imbalance conditions as well as for the system with multiple DGs.
机译:对于恒功率控制下的基于逆变器的分布式发电(DG),本文分别分析了孤岛期间有功/无功功率失配与频率偏差之间的关系,发现由有功和无功功率失配引起的频率变化趋势可能对。为了消除非检测区域(NDZ)并快速检测孤岛,提出了一种基于无功功率控制策略的创新孤岛检测算法。该策略为DG提供无功功率参考,以保证由有功功率和无功功率失配引起的频率变化趋势的一致性,从而加快孤岛检测速度。另外,将电压变化引入所提出的无功功率控制策略中可以在并网模式下动态调节电压,并且还可以进一步缩短孤岛检测时间。根据IEEE Std中的防孤岛测试系统。 929-2000和IEEE标准。 1547-2003年,在电力系统计算机辅助设计/ EMTDC环境中进行了一些案例研究。仿真结果表明,该算法具有零归零属性,可以快速检测出孤岛。此外,该算法对于负载不平衡条件以及具有多个DG的系统也能有效执行。

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