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An Islanding Detection Method for Inverter-Based Distributed Generators Based on the Reactive Power Disturbance

机译:基于无功扰动的逆变器分布式发电机孤岛检测方法

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摘要

In this paper, an islanding detection method for inverter-based distributed generators (DGs) is presented, which is based on perturbing reactive power output. Two sets of disturbances are configured in this method, which have different amplitudes and duration time. The first set of reactive power disturbance (FSORPD) is periodic with small amplitudes to break the reactive power balance during islanding, whereas the magnitude of the second set of reactive power disturbance (SSORPD) is sufficient to force the frequency to deviate outside its threshold limits. Considering all the possible frequency variation characteristics with the FSORPD after islanding, three criterions are designed for switching the disturbance from the FSORPD to the SSORPD. Since DGs located at different positions have the same frequency variation characteristics, the SSORPDs can be added on different DGs at the same time without the need of communication. Therefore, synchronization of the SSORPDs can be guaranteed for the system with multiple DGs and the method can detect islanding with a zero nondetection zone property. Moreover, the method can be applied to the DG either operating at unity power factor or supplying reactive power as well for its local load. According to the antiislanding test system recommended in IEEE Std.929-2000 and IEEE Std.1547-2003, the effectiveness of the method has been validated with several case studies in the power systems computer-aided design/Electro magnetic transient in DC system environment.
机译:本文提出了一种基于扰动无功输出的孤岛检测方法。此方法配置了两组干扰,它们具有不同的幅度和持续时间。第一组无功功率扰动(FSORPD)具有小幅度的周期性,从而在孤岛期间破坏了无功功率平衡,而第二组无功功率扰动(SSORPD)的大小足以迫使频率偏离其阈值限制。考虑到孤岛后FSORPD的所有可能的频率变化特性,设计了三个准则来将干扰从FSORPD切换到SSORPD。由于位于不同位置的DG具有相同的频率变化特性,因此SSORPD可以同时添加到不同的DG上,而无需进行通信。因此,对于具有多个DG的系统,可以保证SSORPD的同步,并且该方法可以以零非检测区特性来检测孤岛。此外,该方法可以应用于以统一功率因数运行的DG,也可以为本地负载提供无功功率。根据IEEE Std.929-2000和IEEE Std.1547-2003推荐的防孤岛测试系统,该方法的有效性已在电力系统计算机辅助设计/直流系统环境中的电磁瞬变中进行了若干案例研究验证。 。

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