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Warping model predictive control for application in control of a real airborne wind energy system

机译:翘曲模型预测控制在实际机载风能系统控制中的应用

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摘要

Fast online generation of feasible and optimal reference trajectories is crucial in tracking model predictive control, especially for stability and optimality in presence of a time varying parameter. In this paper, in order to circumvent the operational efforts of handling a discrete set of precomputed trajectories and switching between them, time warping of a single trajectory is proposed as an alternative concept. In particular, the conceptual ideas of warping theory are presented and illustrated based on the example of a tethered kite system for airborne wind energy. In detail, for warpable systems, feasibility and optimality of trajectories are discussed. Subsequently, the full algorithm of a nonlinear model predictive control implementation based on warping a single precomputed reference is presented. Finally, the warping algorithm is applied to the airborne wind energy system. Simulation results in presence of real world perturbations are evaluated and compared.
机译:快速在线生成可行和最佳参考轨迹对于跟踪模型的预测控制至关重要,特别是对于存在时变参数的稳定性和最优性。在本文中,为了规避处理离散的一组预先计算的轨迹并在它们之间进行切换的操作工作,提出了将单个轨迹的时间扭曲作为替代概念。特别是,基于机载风能的束缚风筝系统的示例,提出并说明了翘曲理论的概念。详细地,对于可变形系统,讨论了轨迹的可行性和最优性。随后,提出了基于变形单个预计算参考的非线性模型预测控制实现的完整算法。最后,将翘曲算法应用于机载风能系统。评估和比较存在真实世界干扰时的仿真结果。

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