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A combined islanding detection algorithm for grid connected multiple microgrids for enhanced microgrid utilisation

机译:用于多个微电网并网的组合孤岛检测算法,可提高微电网的利用率

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There is an abundant interest in microgrids due to its innate ability to operate in either utility connected or isolated mode. The existing conventional methods disconnect the individual distributed generators on loss of utility. In this work, a combined islanding detection algorithm at the point of common coupling (PCC) of the whole microgrid is proposed. It detects islanding using islanding detection monitoring factor, rate of change of inverse hyperbolic cosecant function, and voltage at the PCC as the islanding detection elements with the help of phasor measurement units. On detection of islanding event, the whole microgrid is transferred to autonomous mode. Moreover, any fault in the microgrid side which may isolate the distributed generator is detected using dilation and erosion mathematical morphological operators. The algorithm estimates the probability of power balance and probability of islanding duration at the control centre for events within the microgrid. The decision for islanded operation or disconnecting the distributed generator is communicated based on this. The proposed method is tested on a microgrid test system and verified on a section of the realistic local feeder of the Indian utility system. The simulation results indicate that the developed algorithm is quick, reliable, and secure in discriminating between the islanding and nonislanding scenarios for the various cases during both import and export conditions with an accuracy of 100%. It eliminates the nondetection zone completely even during zero power mismatch conditions. With the proposed method, any unnecessary distributed generator outage can be avoided enhancing the microgrid utilisation.
机译:由于微电网固有的以公用事业连接或隔离模式运行的能力,因此人们对微电网有着浓厚的兴趣。现有的常规方法在失去效用时断开各个分布式发电机的连接。在这项工作中,提出了一种在整个微电网的公共耦合点(PCC)上的组合孤岛检测算法。它通过相量测量单元,使用孤岛检测监视因子,反双曲余割函数的变化率以及PCC处的电压作为孤岛检测元素来检测孤岛。在检测到孤岛事件时,整个微电网将转换为自主模式。此外,使用膨胀和侵蚀数学形态学运算符检测微电网侧可能隔离分布式发电机的任何故障。该算法估计微电网内事件的功率平衡概率和控制中心孤岛持续时间的概率。基于此传达孤岛运行或断开分布式发电机的决策。所提出的方法在微电网测试系统上进行了测试,并在印度公用事业系统的实际本地馈线的一部分上进行了验证。仿真结果表明,所开发的算法在区分进出口情况下各种情况下的孤岛和非孤岛方案是快速,可靠和安全的,准确度为100%。即使在零功率失配条件下,它也可以完全消除非检测区。利用所提出的方法,可以避免任何不必要的分布式发电机中断,从而提高了微电网的利用率。

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