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Improved VSM control of PMSG-based wind farms for transient stability enhancement

机译:改进基于PMSG的风电场的VSM控制,以增强暂态稳定性

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This paper analyzes the optimal control strategy of PMSG-based wind farms during faults in order to improve the transient stability of a power system with a high penetration rate of wind power. The investigated control strategies are the unity power factor (UPF), reactive power control (RPC), and particularly the concept of virtual synchronous machine (VSM). The transient stability level is assessed using the critical clearing time index, which was calculated based on trajectory sensitivity analysis. In light of the obtained results, it was found that RPC gives the best transient stability level, followed by the classical VSM control. Hence, an improved VSM control was proposed based on the transient model of a synchronous generator. The improved VSM has shown a behavior similar to a real synchronous generator, which results in better transient stability performances.
机译:本文分析了基于PMSG的风电场在故障期间的最优控制策略,以提高具有较高风电渗透率的电力系统的暂态稳定性。研究的控制策略是单位功率因数(UPF),无功功率控制(RPC),尤其是虚拟同步机(VSM)的概念。瞬态稳定性水平使用临界清除时间指数进行评估,该指数是根据轨迹灵敏度分析计算得出的。根据获得的结果,发现RPC提供了最佳的瞬态稳定性水平,随后是经典的VSM控制。因此,基于同步发电机的暂态模型,提出了一种改进的VSM控制。改进的VSM表现出与实际同步发电机类似的性能,从而具有更好的瞬态稳定性能。

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