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Application of differential protection to offshore wind farm for earth fault detection with substantially unbalanced charging current

机译:差动保护在充电电流基本不平衡的海上风电场接地故障检测中的应用

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Introduction of renewable resources into the power system has raised significant challenges to the protection system. Conventional ways of working are deemed insufficient and need to be improved. This study will focus on one subject that has often been overlooked a?? unbalanced charging current. The application of long high voltage submarine cables to connect a large number of wind turbines to offshore substation has resulted in the considerable unbalanced charging current flowing into the system during earth fault. This study will present a real-life application of differential protection to an offshore wind farm network. It will primarily discuss how the existence of unbalanced charging current affects the sensitivity of the differential protection relays. This discussion is further substantiated with actual fault measurements taken from one of Siemens built offshore wind farms. This study will subsequently recommend ways to improve the sensitivity of differential protection based on Siemensa?? experience. As more and larger wind farms are built, this study serves a very valuable experience for offshore wind farm protection.
机译:将可再生资源引入电力系统对保护系统提出了重大挑战。传统的工作方式被认为是不足的,需要加以改进。这项研究的重点是一个经常被忽视的主题。充电电流不平衡。较长的高压海底电缆用于将大量风力涡轮机连接到海上变电站的应用导致接地故障期间相当大的不平衡充电电流流入系统。这项研究将提出差动保护在海上风电场网络中的实际应用。它将主要讨论不平衡充电电流的存在如何影响差动保护继电器的灵敏度。从西门子建造的一个海上风电场中获得的实际故障测量结果进一步证实了这一讨论。这项研究随后将提出一些方法,以提高基于Siemensa?经验。随着越来越多的大型风电场建成,这项研究为海上风电场保护提供了非常宝贵的经验。

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