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Stability Improvement of an Integrated Multiple Offshore Wind Farms and Multiple Seashore Wave Farms Fed to a Power Grid Using a VSC-HVDC Link

机译:使用VSC-HVDC链接馈入电网的多个海上风电场和多个海上波浪电场的稳定性提高

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This paper presents the analyzed results of an integration of three offshore wind farms (OWFs) and three seashore wave farms (SWFs) connected to an onshore large power grid through a high-voltage direct-current (HVDC) link based on voltage-source converter (VSC) to simultaneously achieve power-fluctuation mitigation and dynamic-stability enhancement. The performance of the studied three OWFs are simulated by three equivalent aggregated doubly-fed induction generators (DFIGs) driven by three equivalent aggregated wind turbines through three equivalent aggregated gearboxes. The characteristics of the studied three SWFs are simulated by three equivalent aggregated squirrel-cage rotor induction generators (SCIGs) driven by three equivalent aggregated Wells turbines throuth three equivalent aggregated gearboxes. A damping controller located at the inverter station of the VSC-HVDC link is designed by using modal control theory to offer adequate damping to the studied integrated OWFs and SWFs. Time-domain simulations based on a nonlinear-system model subject to a severe disturbance are carried out. It can be concluded from the simulation results that the proposed VSC-HVDC link joined with the designed damping controller located at the inverter can effectively stabilize the studied multiple OWFs and SWFs under various disturbance conditions.
机译:本文介绍了通过基于电压源转换器的高压直流(HVDC)链路连接到陆上大型电网的三个海上风电场(OWF)和三个海滨波浪电厂(SWF)集成的分析结果(VSC)以同时实现功率波动的减轻和动态稳定性的增强。被研究的三个OWF的性能由三个等效的聚合双馈感应发电机(DFIG)模拟,该发电机由三个等效的聚合风力涡轮机通过三个等效的聚合齿轮箱驱动。所研究的三个SWF的特性是通过三个等效的鼠笼式转子感应发电机(SCIG)来模拟的,该发电机由三个等效的聚合Wells涡轮机和三个等效的聚合齿轮箱驱动。通过使用模态控制理论设计位于VSC-HVDC链接的逆变器站的阻尼控制器,以为所研究的集成OWF和SWF提供足够的阻尼。基于受到严重干扰的非线性系统模型进行了时域仿真。从仿真结果可以得出结论,所提出的VSC-HVDC链路与位于逆变器处的设计阻尼控制器相结合,可以在各种干扰条件下有效地稳定所研究的多个OWF和SWF。

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