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Stability analysis of a microgrid system with a hybrid offshore wind and ocean energy farm fed to a power grid through an HVDC link

机译:具有通过HVDC链路馈入电网的混合海上风能和海洋能农场的微电网系统的稳定性分析

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This paper presents the stability analyzed results of a microgrid system containing an offshore wind farm (OWF), an offshore tidal farm (OTF), and a seashore wave farm (SWF) fed to an onshore power grid through a high-voltage direct current (HVDC) link based on voltage-source converter (VSC). The characteristics of the studied OWF, OTF, and SWF are simulated by an equivalent aggregated wind doubly-fed induction generator (DFIG), an equivalent aggregated tidal DFIG, and an equivalent aggregated wave permanent-magnet synchronous generator (PMSG). A damping controller located at the converter station of the HVDC link is designed by using pole-assignment approach to offer adequate damping to the studied microgrid system. 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 disturbance condition are systematically achieved. It can be concluded from the simulation results that the proposed VSC-based HVDC link joined with the designed damping controller can effectively stabilize the studied microgrid system with hybrid OWF, OTF, and SWF under various disturbance conditions. The inherent fluctuations of the generated power of the microgrid system injected into the power grid can also be effectively mitigated by the proposed control scheme.
机译:本文介绍了一种微电网系统的稳定性分析结果,该系统包含一个海上风电场(OWF),一个海上潮汐电场(OTF)和一个通过高压直流电馈入陆上电网的海岸波电场(SWF)( HVDC)链接基于电压源转换器(VSC)。所研究的OWF,OTF和SWF的特性由等效的聚集风向双馈感应发电机(DFIG),等效的聚集潮汐DFIG和等效的聚集波永磁同步发电机(PMSG)进行模拟。通过使用极点分配方法设计位于HVDC链接换流站的阻尼控制器,以为所研究的微电网系统提供足够的阻尼。系统地实现了基于使用特征值分析的线性化系统模型的频域方法和基于受干扰条件的非线性系统模型的时域方案。从仿真结果可以得出结论,所提出的基于VSC的高压直流输电线路与设计的阻尼控制器相结合,可以在各种扰动条件下有效地稳定带有混合OWF,OTF和SWF的微电网系统。所提出的控制方案还可以有效地缓解注入电网的微电网系统发电功率的固有波动。

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