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Frequency control for weak AC grid connected to wind farm and LCC-HVDC system: Modeling and stability analysis

机译:连接到风电场和LCC-HVDC系统的弱AC电网的频率控制:建模和稳定性分析

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Interconnection of DFIG-based wind farms with LCC-HVDC is challenging for very weak AC systems. This work focuses on establishing a modeling and control design framework to analyze frequency dynamics in such systems. To that end, an averaged model of the DFIG-based wind farm connected to LCC-HVDC system has been developed where grid frequency control is used to regulate the HVDC rectifier firing angle. This paper analyzes the effect of low Effective Short Circuit Ratio (ESCR) and the Effective DC Inertia Constant Hdc on the stability of the system. A systematic design process of the frequency controller parameters reveals a negative interaction between the generator speed-HVDC PLL-frequency controller mode and the DFIG-GSC controller mode.
机译:对于非常弱的交流系统,基于DFIG的风电场与LCC-HVDC的互连具有挑战性。这项工作的重点是建立建模和控制设计框架,以分析此类系统中的频率动态。为此,已经开发了连接到LCC-HVDC系统的基于DFIG的风电场的平均模型,其中电网频率控制用于调节HVDC整流器的点火角。本文分析了低有效短路比(ESCR)和有效直流惯量常数Hdc对系统稳定性的影响。频率控制器参数的系统设计过程揭示了发电机速度-HVDC PLL-频率控制器模式与DFIG-GSC控制器模式之间的负向相互作用。

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