Stability improvement of an integrated offshore wind farm and seashore wave farm fed to a power grid using an HVDC link

Li Wang, Hao-Wen Li, Zhi-Hao Yang
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引用次数: 2

Abstract

This paper presents the analyzed results of an integration of an offshore wind farm (OWF) and a seashore wave farm (SWF) connected to an onshore large power grid through a high-voltage direct-current (HVDC) link to simultaneously achieve power-fluctuation mitigation and dynamic-stability enhancement. The performance of the studied OWF is simulated by three equivalent aggregated doubly-fed induction generators (DFIGs) driven by three equivalent aggregated wind turbines through three gearboxes. The characteristics of the studied SWF are simulated by three equivalent aggregated squirrel-cage induction generator (SCIG) driven by three equivalent aggregated Wells turbines through three gearboxes. A frequency-domain approach based on a linearized system model using eigenvalue analysis and a time-domain scheme based on a nonlinear system model subject to a torque disturbance are systematically carried out. It can be concluded from the simulation results that the proposed HVDC can effectively stabilize the studied integrated OWF and SWF under various disturbance conditions. The inherent power fluctuations injected to the power grid can also be effectively mitigated by the proposed control scheme.
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利用高压直流输电线路向电网供电的综合海上风电场和海滨波浪电场的稳定性改进
本文介绍了海上风电场(OWF)和海岸波浪电场(SWF)通过高压直流(HVDC)连接到陆上大型电网,同时实现功率波动缓解和动态稳定性增强的集成分析结果。采用三台等效聚合风力发电机通过三个齿轮箱驱动三台等效聚合双馈感应发电机(DFIGs)来模拟所研究的OWF的性能。利用三台等效聚合井涡轮通过三个齿轮箱驱动的三台等效聚合鼠笼感应发电机(SCIG)模拟了所研究的SWF特性。系统地研究了基于特征值分析的线性化系统模型的频域方法和基于受转矩干扰的非线性系统模型的时域方法。仿真结果表明,所提出的直流输电系统在各种扰动条件下都能有效地稳定所研究的综合OWF和SWF。所提出的控制方案还可以有效地缓解注入电网的固有功率波动。
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