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A novel passive islanding detection scheme for distributed generations based on rate of change of positive sequence component of voltage and current

机译:基于电压和电流正序分量的变化率的分布代微型无源岛检测方案

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Islanding operation is one of serious hazards of distributed generation (DG) applications. According to IEEE 1547 standard, its occurrence must be detected within two seconds. This paper presents a novel passive islanding detection method based on rate of change of positive sequence component of voltage (RCPSV) and rate of change of positive sequence component of current (RCPSC) acquired at point of common coupling (PCC) of the targeted DG. Whenever the RCPSC and RCPSV are not equal to zero, their change of magnitudes is continuously compared to predetermined threshold values. If both values of RCPSC and RCPSV exceed the predetermined threshold values, it is concluded that the islanding condition has occurred. Otherwise, it is considered as a non-islanding event. The performance of the proposed method is investigated on a sample network in the presence of doubly fed induction generator (DFIG) based wind turbine and synchronous diesel generator DGs by MATLAB/Simulink software. Different non-islanding case studies are taken into account to evaluate the effectiveness of the proposed approach. The simulation results show that the proposed method has advantage of detecting the islanding rapidly and accurately even with zero non-detection zone (NDZ).
机译:岛屿操作是分布式发电(DG)应用的严重危害之一。根据IEEE 1547标准,必须在两秒钟内检测到其发生。本文介绍了一种基于电压(RCPSV)正序分量的变化率的新型被动岛检测方法和在靶向DG的共同耦合点(PCC)点中获取的电流(RCPSC)的正序分量的变化率。每当RCPSC和RCPSV不等于零时,它们的幅度的变化与预定阈值相比连续。如果RCPSC和RCPSV的两个值超过预定的阈值,则结论是发生岛状条件。否则,它被认为是非岛屿事件。通过Matlab / Simulink软件在基于双馈感应发生器(DFIG)的风力涡轮机(DFIG)的风力涡轮机(DFIG)的风力涡轮机和同步柴油发电机DG的情况下在样本网络上研究了所提出的方法的性能。考虑到不同的非岛屿案例研究以评估所提出的方法的有效性。仿真结果表明,该方法的优点是甚至具有零非检测区(NDZ)的快速且准确地检测岛屿。

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