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Combined Active and Reactive Power Control of Wind Farms based on Model Predictive Control

机译:基于模型预测控制的风电场有功和无功联动控制

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摘要

This paper proposes a combined wind farm controller based on Model Predictive Control (MPC). Compared with the conventional decoupled active and reactive power control, the proposed control scheme considers the significant impact of active power on voltage variations due to the low X=R ratio of wind farm collector systems. The voltage control is improved. Besides, by coordination of active and reactive power, the Var capacity is optimized to prevent potential failures due to Var shortage, especially when the wind farm operates close to its full load. An analytical method is used to calculate the sensitivitycoefficients to improve the computation efficiency and overcome the convergence problem. Two control modes are designed for both normal and emergency conditions. A wind farm with 20 wind turbines was used to verify the proposed combined control scheme.
机译:本文提出了一种基于模型预测控制(MPC)的组合风电场控制器。与传统的解耦有功和无功控制相比,该提议的控制方案考虑了由于风电场集热器系统的X = R比率低,有功功率对电压变化的重大影响。电压控制得到改善。此外,通过协调有功和无功功率,优化了无功容量,以防止由于无功不足而引起的潜在故障,尤其是在风电场接近满负荷运行时。采用解析法计算灵敏度系数,提高了计算效率,克服了收敛性问题。针对正常和紧急情况设计了两种控制模式。一个具有20个风力涡轮机的风电场被用来验证所提出的组合控制方案。

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