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Coordinated Voltage Control of a Wind Farm based on Model Predictive Control

机译:基于模型预测控制的风电场协调电压控制

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摘要

This paper presents an autonomous wind farm voltage controller based on Model Predictive Control (MPC). The reactive power compensation and voltage regulation devices of the wind farm include Static Var Compensators (SVCs), Static Var Generators (SVGs), Wind Turbine Generators (WTGs) and On-Load Tap Changing (OLTC) Transformer, and they are coordinated to keep the voltages of all the buses within the feasible range. Moreover, the reactive power distribution is optimized throughout the wind farm in order to maximize the dynamic reactive power reserve. The sensitivity coefficients are calculated based on an analytical method to improve the computation efficiency and overcome the convergence problem. Two control modes are designed for both voltage violated and normal operation conditions. A wind farm with 20 wind turbines was used to conduct case studies to verify the proposed coordinated voltage control scheme under both normal and disturbance conditions.
机译:本文提出了一种基于模型预测控制(MPC)的自主风电场电压控制器。风电场的无功补偿和电压调节设备包括静态无功补偿器(SVC),静态无功发生器(SVG),风力涡轮发电机(WTG)和有载分接变换(OLTC)变压器,它们经过协调以保持所有总线的电压都在可行范围内。此外,在整个风电场中优化了无功功率分配,以使动态无功功率储备最大化。基于解析方法计算灵敏度系数,以提高计算效率并克服收敛性问题。针对违反电压和正常操作条件设计了两种控制模式。使用具有20个风力涡轮机的风电场进行案例研究,以验证在正常和干扰条件下提出的协调电压控制方案。

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