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Stability Analysis of Wind Farm Connected to Hybrid HVDC Converter

机译:杂交HVDC转换器的风电场稳定性分析

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The high-voltage direct current (HVDC) transmission has been the promising scheme for power transfer of large-scale long-distance offshore wind farms. Nowadays, the modular multilevel converter (MMC) is the mainstream topology for the HVDC converter. However, due to the large number of submodules, the conventional offshore MMC converter station has higher volume, weight and cost. To overcome the shortcomings, the hybrid converter scheme based on a diode rectifier and a small-scale MMC-based ancillary converter is a possible cost-efficient solution for the offshore HVDC converter. In this paper, the hybrid HVDC converter is designed for a practical small-scale wind farm with eleven 1.5 MW doubly-fed induction generator (DFIG)-based wind turbines. The interactive stability of the wind farm connected to the hybrid HVDC converter is analyzed using the impedance-based analysis method. Finally, the time-domain simulations confirm the stability analysis.
机译:高压直流(HVDC)传输一直是大规模长途海上风电场电力传输的有希望的方案。如今,模块化多级转换器(MMC)是HVDC转换器的主流拓扑。但是,由于子模块数量大,传统的海上MMC转换器站具有更高的体积,重量和成本。为了克服缺点,基于二极管整流器和基于小规模的基于MMC的辅助转换器的混合转换器方案是近海HVDC转换器的可能成本高效的解决方案。本文采用Hybrid HVDC转换器设计用于实用的小型风电场,具有11.5 MW双馈感应发电机(DFIG)的风力涡轮机。使用基于阻抗的分析方法分析连接到混合HVDC转换器的风电场的交互式稳定性。最后,时域模拟确认了稳定性分析。

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