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Impact of wind turbine generator type in large-scale offshore wind farms on voltage regulation in distribution feeders

机译:大型海上风电场中风力发电机的类型对配电馈线电压调节的影响

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The goal of the U.S. Department of Energy (DOE) roadmap [1] is a 20% penetration of wind energy into the generation mix by 2030. Attaining this objective will help protect the environment and reduce fossil fuel dependency, thus improving energy security and independence. This paper discusses how the technology used in large scale offshore wind farms impacts voltage regulation in distribution feeders. Although the offshore wind farms are integrated into an interconnected power system through transmission lines, the system constraints can cause stability, resiliency and reliability issues. The major types of machine used in offshore wind farms are modeled using a generic model of General Electric (GE) wind machines. The transmission and distribution system models are based on the actual existing regional FirstEnergy/PJM power grid in Midwestern of United State. In addition, the impact of installing Static VAR Compensator (SVC) at Points of Interconnection (POI) on voltage regulation is investigated.
机译:美国能源部(DOE)路线图[1]的目标是到2030年将风能渗透到发电混合物中的比例达到20%。实现这一目标将有助于保护环境并减少对化石燃料的依赖,从而提高能源安全性和独立性。本文讨论了大型海上风电场中使用的技术如何影响配电馈线中的电压调节。尽管海上风电场通过输电线路集成到互连的电力系统中,但是系统限制可能会导致稳定性,弹性和可靠性问题。使用通用电气(GE)风力机的通用模型对海上风电场中使用的主要机器类型进行建模。输配电系统模型基于美国中西部地区实际存在的地区FirstEnergy / PJM电网。此外,还研究了在互连点(POI)上安装静态VAR补偿器(SVC)对电压调节的影响。

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