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Analysis of the maximum available time to switch the operation control mode of a distributed generation during an islanding occurrence

机译:分析孤岛发生期间切换分布式发电的运行控制模式的最大可用时间

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The operation of distributed generation systems (DG) is subjected to events such as unintentional islanding occurrences. To prevent the activation of the DG's protections and power supply interruption, when an islanding occurs, the DG must change from grid-connected operation mode to isolated operation mode and keep the voltage and the frequency within acceptable operational levels. The available time to switch the operation control mode should be investigated to avoid false islanding detections and to minimize the negative impact on the quality of the generated energy. This paper analyzes the maximum time for switching the operation control mode of the DG, after an unintentional islanding occurrence. Simulations were carried out on the PSCAD/EMTDC. The simulated DG system is based on a diesel generator and distinct loads. Using a classical control strategy (CCS) and a fuzzy control strategy (FCS) for voltage, frequency, active and reactive powers, the maximum available switching time is analyzed. The FCS provided longer available times than a strategy using classical controllers.
机译:分布式发电系统(DG)的操作会遭受意外岛事件等事件的影响。为了防止DG的保护功能激活和电源中断,当发生孤岛时,DG必须从并网运行模式更改为隔离运行模式,并将电压和频率保持在可接受的运行水平内。应研究切换操作控制模式的可用时间,以避免错误的孤岛检测,并最大程度减少对所产生能量质量的负面影响。本文分析了意外孤岛发生后切换DG操作控制模式的最大时间。在PSCAD / EMTDC上进行了仿真。模拟的DG系统基于柴油发电机和不同的负载。使用针对电压,频率,有功和无功功率的经典控制策略(CCS)和模糊控制策略(FCS),分析了最大可用开关时间。与使用传统控制器的策略相比,FCS提供了更长的可用时间。

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