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An active islanding-detection method for power conditioning subsystem of utility interactive photovoltaic system

机译:实用交互式光伏系统功率调节子系统的主动孤岛检测方法

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Islanding is a scenario where dispersed generators could be severed off from the grid, but continue to operate after the utility supply is disconnected. The occurrence of islanding events may complicate the orderly reconnection of the utility network and pose a hazard to utility personnel. In this paper, a novel active islanding-detection method for utility interactive photovoltaic systems is proposed. In this approach, a control circuit is developed and implemented for producing the designated amount of deviation, which can be reflected appropriately to the output of the photovoltaic system. Then, by coupling with a proposed algorithm, this amount of deviation will be a crucial indicator to detect the islanding. Besides, this method is capable of reactive power control such that system power factor can be better ensured. The proposed approach has been tested through different scenarios. By case studies with numerical simulation, the method was verified with simplicity, feasibility and efficiency for power system protection applications.
机译:孤岛是一种情况,在这种情况下,可以从电网上切断分散的发电机,但在公用事业电源断开后继续运行。孤岛事件的发生可能使公用事业网络的有序重新连接复杂化,并对公用事业人员造成危害。本文提出了一种实用的交互式光伏系统主动孤岛检测方法。在这种方法中,开发并实施了控制电路以产生指定的偏差量,该偏差量可以适当地反映到光伏系统的输出上。然后,通过结合提出的算法,该偏差量将成为检测孤岛的关键指标。此外,该方法能够进行无功功率控制,从而可以更好地确保系统功率因数。所提出的方法已通过不同的场景进行了测试。通过案例研究和数值模拟,验证了该方法的简便性,可行性和效率,适用于电力系统保护应用。

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