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Optimal Utilization of Reactive Power Capability of DFIG Based Wind Turbine by the Improved GRG Method

机译:改进的GRG方法优化利用DFIG型风力发电机组的无功功率

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The doubly fed induction generator (DFIG) based wind turbine in the distribution network can not only supply active power, but also generate or absorb reactive power. In this paper, the scheme of optimally utilizing the reactive power of DFIG based wind turbines to improve the voltage level and reduce the power loss in the distribution network is proposed. First, the principle of limiting the reactive power capability of DFIG based wind turbines is analyzed. Then, the problem of optimally utilizing the reactive power of wind turbines is formulated and solved by the generalized reduced gradient (GRG) method, which is improved by the combination with augmented Lagrangian function. Finally, a real distribution network with two wind turbines in Sichuan Province, China, is chosen to conduct the numerical experiments. The results show that by the optimal utilization of the reactive power capability of wind turbines, the voltage level has obviously been improved and the power loss has been greatly reduced.
机译:配电网络中基于双馈感应发电机(DFIG)的风力涡轮机不仅可以提供有功功率,而且还可以产生或吸收无功功率。在本文中,提出了一种最佳利用基于双馈风力发电机的风力发电机的无功功率来提高电压水平并减少配电网络中功率损耗的方案。首先,分析了限制基于双馈风力发电机的风力发电机无功功率的原理。然后,通过广义降梯度(GRG)方法提出并解决了最优利用风力发电机无功功率的问题,该方法通过与增强拉格朗日函数相结合而得到改善。最后,选择了一个带有两个风力发电机组的实际配电网,以进行中国的四川省的数值试验。结果表明,通过对风力发电机无功功率的最佳利用,电压水平明显提高,功率损耗大大降低。

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