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首页> 外文期刊>The Journal of Engineering >Study on characteristics and impacting factors of oscillation of wind farms integration via an MMC-based HVDC system
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Study on characteristics and impacting factors of oscillation of wind farms integration via an MMC-based HVDC system

机译:基于MMC的HVDC系统的风电场振荡特性和影响因素研究

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摘要

Modular multilevel converter (MMC)-based high-voltage DC (HVDC) transmission technology has become an ideal solution for large and remote wind farms integration. Oscillation or instability phenomena might occur due to the rapid control of power electronic converters in both wind farms and MMC-based HVDC system. In order to reveal oscillation characteristics of wind farms and MMC-based HVDC interconnected system, the system equivalent damping stability criterion is deduced theoretically, and a system damping analysis platform is built in this study. On this base, the impact on 1–1000 Hz oscillation characteristics from many factors including controller parameters of wind turbines and MMC-based HVDC, wind turbines power and wind turbines number is analysed, and mechanism of instability under different conditions is explained physically in terms of system damping characteristics. Time-domain simulations in RT-LAB are presented to validate the stability study.
机译:基于模块化多电平转换器(MMC)的高压DC(HVDC)传输技术已成为大型和遥远的风电场集成的理想解决方案。由于风电场和基于MMC的HVDC系统中的电力电子转换器的快速控制,可能发生振动或不稳定现象。为了揭示风电场和基于MMC的HVDC互连系统的振荡特性,从理论上推断系统等效阻尼稳定性标准,并在本研究中建立了系统阻尼分析平台。在该基础上,分析了来自包括风力涡轮机和基于MMC的HVDC,风力涡轮机动力和风力涡轮机数量的许多因素的1-1000 Hz振荡特性的影响,并且在物理上解释了不同条件下不稳定机制系统阻尼特性。提出了RT-LAB中的时域模拟以验证稳定性研究。

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