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A novel ectropy-based control scheme for a dfig driven by a wind turbine with an integrated energy storage

机译:带有集成能量存储的风力涡轮机驱动的dfig的基于控制的新颖控制方案

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Double-Fed Induction Generators (DFIG's) driven by wind turbines are today the state of the art wind generators and are required to provide advanced functionalities in order to support the grid and comply with technical regulations. In this paper, we propose a novel control scheme for a wind turbine driven DFIG with an integrated energy storage. The control scheme is based on nonlinear control methods and provides three functionalities: a) maximum power point tracking (MPPT) during low range of wind speed conditions, b) power ouput smoothing (alleviating the effect of intermittency into the grid) and c) constant power output during variations of the mean wind speed and tracking of the committed power reference. Our approach involves first expressing the control objectives into asymptotic stability guarantees of desired equillibrium points and then mapping these guarantees to asymptotic stability of energy-level equilibrium points. We establish equivalence between the two, and then use shifted ectropy functions as Control Lyapunov Functions (CLF) to design the corresponding controllers. We demonstrate the performance of the proposed control scheme under critical scenarios on a 3-bus power system.
机译:如今,由风力涡轮机驱动的双馈感应发电机(DFIG)是最先进的风力发电机,需要提供先进的功能以支持电网并遵守技术法规。在本文中,我们提出了一种带有集成式能量存储的风轮机驱动双馈发电机的新型控制方案。该控制方案基于非线性控制方法,并提供三种功能:a)在低风速条件下的最大功率点跟踪(MPPT),b)功率输出平滑(减轻间歇性影响电网)和c)恒定在平均风速变化期间跟踪功率输出,并跟踪承诺的功率基准。我们的方法包括首先将控制目标表达为所需平衡点的渐近稳定性保证,然后将这些保证映射到能级平衡点的渐近稳定性。我们在两者之间建立等价关系,然后使用移位的ectropy函数作为控制李雅普诺夫函数(CLF)来设计相应的控制器。我们在3总线电源系统的关键场景下演示了所提出的控制方案的性能。

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