DFIG风电场实时无功调节能力评估

Guixing Yang, Yaoxiang Wang, Yuan Jia, Guoyi Xu
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引用次数: 1

摘要

风力发电场的输出功率随风速的变化而波动,导致共耦合点电压不稳定。变速风力发电机组的快速无功调节能力是抑制共联轴器处电压波动的有效解决方案。变速风力发电机组的无功调节能力随其运行状态的不同而不同。为了设计一种有效的风电场电压控制方法,对风电场的实时无功调节范围进行评估具有重要意义。本文建立了双馈风力发电机组模型,推导了该风力发电机组的无功极限。然后,考虑风电场无功损耗和无功补偿设备容量,建立风电场无功容量估算模型。最后,利用风力机等效模型对自然风速进行仿真,得到随机波动风速下风电场的实时无功容量范围,仿真结果验证了所提方法的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Reactive Power Regulation Capacity Assessment of DFIG Wind Farms
The output power of wind farms fluctuates with the wind speeds, which result in unstable voltage at the point of common coupling. The fast reactive power regulation capability of the variable speed wind turbine generators is an effective solution to suppress voltage fluctuation at the point of common coupling. The reactive power regulation capability of the variable speed wind turbine generators varies with their operation status. In order to design an effective voltage control method for the wind farms, it is of great significance to evaluate real time reactive power regulation range of the wind farms. In this paper, a doubly-fed wind turbine generator model is established, the reactive power limit of the wind turbine generator is derived. Then, the wind farm reactive power loss and reactive power compensation equipment capacity are considered to establish the wind farm reactive power capacity estimation model. Finally, the wind turbine equivalent model is used to simulate natural wind speed to obtain the real-time reactive power capacity range of the wind farm under random fluctuating wind speed, and the simulation results verify the reliability of the proposed method.
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