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A novel approach for robust control design of hidden synthetic inertia for variable speed wind turbines

机译:一种新型可变速度风力涡轮机隐藏合成惯性鲁棒控制设计方法

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摘要

This work presents a novel design methodology for hidden synthetic inertia control of variable speed wind turbines that considers the compromise between grid frequency response and operating limits of the wind turbine states. Two state space design strategies are proposed: one based on H-infinity robust control with dynamic output feedback; and other based on H-infinity static state feedback control; both strategies operate as supplementary controllers. The study was carried out on simulation with dynamic mathematical modeling of a variable speed wind turbine and an isolated system with conventional power plants, aiming to evaluate the grid frequency response to load-generation disturbances and wind speed variations. The proposed control strategies are compared with two topologies: without wind turbine frequency control and another with synthetic inertia contribution by Proportional-Derivative control. The proposed strategies allow to optimize performance of synthetic inertia control in accordance with wind turbine operating limits. H-infinity-based topologies presented greater attenuation of the impacts of load-generation disturbances on the frequency response, and also minimizes a cost function based on H-2 norm of the frequency signal in comparison with other controllers, thus providing better performance against reference variations and changes of operation point.
机译:该工作提出了一种新颖的用于隐藏的合成惯性控制的新颖设计方法,该方法是对可变速度风力涡轮机的隐藏合成惯性控制,该方法考虑电网频率响应与风力涡轮机状态的操作限制之间的折衷。提出了两种状态空间设计策略:基于H-Infinity的强大控制,具有动态输出反馈;基于H-Infinity静态状态反馈控制的其他;两种策略都作为补充控制器运作。该研究是在具有传统发电厂的可变速度风力涡轮机和隔离系统的动态数学建模的模拟进行,旨在评估对负载发电干扰和风速变化的电网频率响应。建议的控制策略与两个拓扑相比:没有风力涡轮机频率控制,另一个具有比例衍生物控制的合成惯性贡献。拟议的策略允许根据风力涡轮机操作限制优化合成惯性控制的性能。基于H-Infinity的拓扑介绍了对频率响应上的负载干扰的影响的更大衰减,并且还可以最小化基于频率信号的H-2标准的成本函数与其他控制器相比,从而提供更好的对抗参考性能变化和操作点的变化。

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