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Implementation of a new remote islanding detection method for wind-solar hybrid power plants

机译:风光混合电站新型孤岛检测方法的实现

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摘要

The integration of the distributed generation (DG) systems into the power grid is a significant issue to provide a reliable operation of the power system. DG systems must meet some technical requirements to achieve a successful grid connection. Islanding is also a vital issue for a reliable integration of DG systems with the grid. There have been many islanding detection methods researched in the literature, but most of them have some boundaries related to the local load and the inverter. In this study, a new remote islanding detection method is introduced for a developed wind-solar hybrid power plant, and a practical solution is researched by classifying the current methods. The proposed method monitors and controls the grid, local load and the output of the PV inverter in real time with the communication of circuit breakers. The proposed remote control system detects the changes in the currents of the circuit breakers, frequency and the active powers by checking the defined threshold values at all electrical branches of the hybrid DG system. When the breaker current goes to zero, or they are under/over defined threshold values, the circuit breakers are tripped by using a real-time control system that is developed with Labview. The proposed method also checks the frequency, active powers, and reactive powers with the currents in real-time, so it is independent of the load, and it is not inverter resident. Islanding detection time is just a cycle, and it is a considerably short response time according to the current standards. Non-detection zone (NDZ) is also zero in the proposed method. The experimental results prove that the developed remote islanding detection method is easily implemented in wind-solar DG systems, and it is also suitable for real system applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将分布式发电系统(DG)集成到电网中是一个重要问题,它可以为电力系统提供可靠的运行。 DG系统必须满足一些技术要求才能成功实现电网连接。对于DG系统与电网的可靠集成,孤岛化也是至关重要的问题。文献中已经研究了许多孤岛检测方法,但是大多数方法都存在与局部负载和逆变器相关的边界。在这项研究中,为发展中的风光互补电站引入了一种新的远程孤岛检测方法,并通过对当前方法进行分类来研究实用的解决方案。所提出的方法通过断路器的通信来实时监控并控制光伏逆变器的电网,局部负载和输出。所提出的远程控制系统通过检查混合式DG系统的所有电气分支上定义的阈值来检测断路器电流,频率和有功功率的变化。当断路器电流为零或低于或超过定义的阈值时,将使用由Labview开发的实时控制系统使断路器跳闸。所提出的方法还通过电流实时检查频率,有功功率和无功功率,因此它与负载无关,并且不位于逆变器中。孤岛检测时间只是一个周期,根据当前标准,这是相当短的响应时间。在所提出的方法中,非检测区(NDZ)也为零。实验结果证明,所开发的远程孤岛检测方法易于在风电DG系统中实现,也适用于实际系统应用。 (C)2015 Elsevier Ltd.保留所有权利。

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