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An offline penetration-free protection scheme for PV-dominated distribution systems

机译:光伏为主的配电系统的离线无渗透保护方案

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The rapid growth of small-scale photovoltaic (PV) units in distribution grids brings new challenges in the protection coordination of overcurrent relays. So far, various adaptive techniques have been addressed to solve DG units' mis-coordination problem, however, the un-predictable penetration of installed PV units highlights the importance of a penetration-free methodology. This study presents a novel offline, quick, applicable and cheap solution which guarantees protection coordination for any penetration and location of PV units. To do so, first, under different PV penetration levels and locations, the conventional protection performance is studied to discover the worst mis-coordination cases. Next, according to relays standards, the characteristic curve of the back-up relay is modified such that it can maintain coordination in all worst cases. The proposed methodology is applied to a practical power distribution network equipped with numerous small-scale PV systems. The results successfully prove the effectiveness of the proposed method. Since this technique only applies some changes in characteristic curves of the back-up relays, lack of programmable relay or adaptive protection requirements cannot decrease its performance. This fact makes this method an attractive option for distribution systems with PV units. (C) 2017 Elsevier B.V. All rights reserved.
机译:配电网中小型光伏(PV)单元的快速增长给过电流继电器的保护协调带来了新的挑战。到目前为止,已经解决了各种自适应技术来解决DG机组的配位不协调问题,但是,已安装的PV机组无法预测的渗透率突显了无渗透方法的重要性。这项研究提出了一种新颖的离线,快速,适用和廉价的解决方案,该解决方案可确保对光伏装置的任何穿透和位置进行保护协调。为此,首先,在不同的PV穿透水平和位置下,对常规保护性能进行研究,以发现最严重的失配情况。接下来,根据继电器标准,修改备用继电器的特性曲线,以便在所有最坏的情况下都能保持协调。所提出的方法被应用于配备有许多小型PV系统的实际配电网络。结果成功证明了该方法的有效性。由于该技术仅对备用继电器的特性曲线进行了一些更改,因此缺少可编程继电器或自适应保护要求不会降低其性能。这一事实使得该方法成为具有光伏单元的配电系统的有吸引力的选择。 (C)2017 Elsevier B.V.保留所有权利。

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