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Smart inadvertent islanding detection employing p-type μPMU for an active distribution network

机译:采用p型μPMU的有源配电网智能无意孤岛检测

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In the smart-grid paradigm, since distribution systems are controlled by various independent operators, it becomes inevitable for all dispatchers to have a wide-area view of the network for situational awareness and protection. This visualisation is accomplished with the aid of protection (p) type micro-phasor measurement unit (μPMU) installed at the bus of the respective distributed generation (DG). One of the pressing issues with DG's is the concern of inadvertent islanding that disrupts orderly reconnection besides posing hazards to utility workers. In view of this, this study proposes a real-time inadvertent islanding detection by μPMU. The voltage and current phasors obtained from these μPMUs by discrete Fourier transform are further processed by Fortescue transform to compute the angle of sequence components. The absolute angle difference between positive and zero components is used to initiate signal for accomplishing intelligent islanding under islanded condition. The simulation results prove the method to be robust, computationally efficient, non-detection zone free and feasible. Most significantly, as measuring equipment and relay are already present in p type μPMU, therefore unlike other detection methods, no extra arrangements are required in this method making it economically viable and easy to implement.
机译:在智能电网模式中,由于配电系统是由各种独立的运营商控制的,因此,对于所有调度员来说,不可避免地要具有广域网的网络以了解情况并进行保护。借助安装在相应分布式发电(DG)的总线上的保护(p)型微相量测量单元(μPMU)可以实现此可视化。 DG的紧迫问题之一是担心孤岛,这不仅给公用事业工人带来了危害,而且还破坏了有序的重新连接。有鉴于此,本研究提出了一种通过μPMU进行的实时无意孤岛检测。通过离散傅里叶变换从这些μPMU获得的电压和电流相量通过Fortescue变换进行进一步处理,以计算序列分量的角度。正零分量之间的绝对角度差用于启动信号,以在孤岛条件下完成智能孤岛。仿真结果证明了该方法的鲁棒性,计算效率,无检测区域的可行性。最重要的是,由于测量设备和继电器已经存在于p型μPMU中,因此与其他检测方法不同,此方法不需要任何额外的安排,从而使其在经济上可行并且易于实现。

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