首页> 外文期刊>Zeitschrift fur Angewandte Mathematik und Mechanik >A quaternion-based model for optimal control of an airborne wind energy system [Based on the plenary lecture presented at the 86th Annual GAMM Conference, Lecce, Italy, March 25, 2015]
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A quaternion-based model for optimal control of an airborne wind energy system [Based on the plenary lecture presented at the 86th Annual GAMM Conference, Lecce, Italy, March 25, 2015]

机译:一种基于四元型的空中风能系统最优控制模型[基于第86届年度GAMM会议,LECCE,意大利,2015年3月25日提出的全体会议讲座]

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摘要

Airborne wind energy systems are capable of extracting energy from higher wind speeds at higher altitudes. The configuration considered in this paper is based on a tethered kite flown in a pumping orbit. This pumping cycle generates energy by winching out at high tether forces and driving a generator while flying figures-of-eight, or lemniscates, as crosswind pattern. Then, the tether is reeled in while keeping the kite at a neutral position, thus leaving a net amount of generated energy. In order to achieve an economic operation, optimization of pumping cycles is of great interest. In this paper, first the principles of airborne wind energy will be briefly revisited. The first contribution is a singularity-free model for the tethered kite dynamics in quaternion representation, where the model is derived from first principles. The second contribution is an optimal control formulation and numerical results for complete pumping cycles. Based on the developed model, the setup of the optimal control problem (OCP) is described in detail along with its numerical solution based on the direct multiple shooting method in the CasADi optimization environment. Optimization results for a pumping cycle consisting of six lemniscates show that the approach is capable to find an optimal orbit in a few minutes of computation time. For this optimal orbit, the power output is increased by a factor of two compared to a sophisticated initial guess for the considered test scenario.
机译:空中风能系统能够在较高的高度上从较高的风速中提取能量。本文考虑的配置基于在泵送轨道中飞行的束缚风筝。这种泵送循环通过在高系绳力上绞尽来产生能量,并在飞行图 - 八个数字的同时驱动发电机,或者是横向模式。然后,在将风筝保持在中立位置的同时在卷中卷起系绳,从而留下所产生的能量的净量。为了实现经济运行,泵送周期的优化具有很大的兴趣。在本文中,首先将简要重新审视空中风能的原则。第一种贡献是四季度表示中的系束式风筝动态的自由模型,其中模型来自第一原理。第二贡献是完全泵送循环的最佳控制配方和数值结果。基于开发的模型,基于CASADI优化环境中的直接多拍摄方法,详细描述了最佳控制问题(OCP)的设置及其数值解决方案。由六次Lemonispates组成的泵送周期的优化结果表明,该方法能够在几分钟的计算时间内找到最佳轨道。对于这种最佳轨道,与所考虑的测试场景的复杂初始猜测相比,功率输出增加了两倍。

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