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首页> 外文期刊>Power Systems, IEEE Transactions on >Analysis and Impacts of Implementing Droop Control in DFIG-Based Wind Turbines on Microgrid/Weak-Grid Stability
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Analysis and Impacts of Implementing Droop Control in DFIG-Based Wind Turbines on Microgrid/Weak-Grid Stability

机译:基于双馈双馈风力发电机的下垂控制实现对微电网/弱电网稳定性的分析及影响

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摘要

Wind energy is going to be a significant part of electric energy generation in the very near future. However, in addition to its intermittent nature that could lead to major difficulties for power system reliability and stability, the conventional control applied to wind turbines and their generators, usually doubly-fed induction generators (DFIGs), does not allow them to participate in frequency regulation, whether short or long term. Moreover, the use of wind generators for autonomous frequency regulation is becoming an essential objective in power grids with reduced inertia and isolated microgrid operation. While droop-control is suggested by many researchers to solve these problems, detailed analysis of droop-controlled DFIG units in microgrids has not been reported. To fill-out this gap, this paper presents torque- and power-droop implementations in DFIG-based units by some simple modifications in the conventional control and then, by means of small-signal modeling and eigen-value studies, shows how both techniques influence frequency stability. Sensitivity studies, with respect to the presence of turbine- and inverter-based generators in microgrids; and impacts of pitch-angle controller, wind speed variation and isolated mode operation with only wind-generators, are conducted. Time-domain simulation is utilized to verify the analytical results.
机译:在不久的将来,风能将成为发电的重要组成部分。但是,除了其间歇性可能会给电力系统的可靠性和稳定性带来重大困难之外,应用于风力涡轮机及其发电机(通常为双馈感应发电机(DFIG))的常规控制方法也不允许它们参与频率控制。短期或长期监管。此外,在具有降低的惯性和隔离的微电网运行的电网中,将风力发电机用于自主频率调节已成为基本目标。尽管许多研究人员提出了下垂控制来解决这些问题,但尚未报告对微电网中下垂控制的DFIG单元进行详细分析的报道。为了填补这一空白,本文通过传统控制中的一些简单修改来介绍基于DFIG的单元中的转矩和功率下降实现,然后通过小信号建模和特征值研究,展示了这两种技术影响频率稳定性。关于微电网中基于涡轮发电机和逆变器的发电机的敏感性研究;并进行了俯仰角控制器,风速变化和仅使用风力发电机的隔离模式运行的影响。利用时域仿真来验证分析结果。

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