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Integrated protection and monitoring system for safe operation of photovoltaic-based isolated microgrids

机译:集成保护和监控系统,可确保光伏隔离微电网的安全运行

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The task of electrifying isolated zones involves several requirements that must be attended. One option to fulfil this task is by using isolated microgrids to energize zones typically disconnected from the main grid. The high penetration of variable energy resources and their corresponding power-electronics-based interfaces make the operating conditions of isolated microgrids considerably different than the operating conditions of large-scale power systems. Consequently, one of the most important challenges of microgrids is the design of the protection system, i.e., the traditional protection schemes should be rethought to respond adequately to safety requirements of isolated microgrids. In this paper a novel methodology for the protection of photovoltaic-based isolated microgrids is presented. This scheme responds to changes in the operation conditions, adjusting the protection devices settings to deal with fault events and maintain a safe operation. This proposal is tested through an experimental setup and simulations, showing better results than the other protection schemes.
机译:隔离区域电气化的任务涉及必须满足的几个要求。实现此任务的一种选择是使用隔离的微电网为通常与主电网断开连接的区域供电。可变能源及其相应的基于功率电子学的接口的高渗透率使隔离的微电网的运行条件与大规模电力系统的运行条件大不相同。因此,微电网的最重要挑战之一是保护系统的设计,即,应重新考虑传统的保护方案,以对孤立的微电网的安全要求作出充分的反应。在本文中,提出了一种用于保护基于光伏的隔离微电网的新颖方法。该方案响应操作条件的变化,调整保护设备设置以处理故障事件并保持安全操作。通过实验设置和模拟测试了该建议,与其他保护方案相比,该建议显示出了更好的结果。

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