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Flight control of tethered kites in autonomous pumping cycles for airborne wind energy

机译:系留风筝在自主抽水循环中的飞行控制,用于机载风能

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Energy harvesting based on tethered kites benefits from exploiting higher wind speeds at higher altitudes. The setup considered in this paper is based on a pumping cycle. It generates energy by winching out at high tether forces, driving an electrical generator while flying crosswind. Then it winches in at a stationary neutral position, thus leaving a net amount of generated energy. The focus of this paper is put on the flight control design, which implements an accurate direction control towards target points and allows for a flight with an eight-down pattern. An extended overview on the control system approach, as well as details of each element of the flight controller, is presented. The control architecture is motivated by a simple, yet comprehensive model for the kite dynamics. In addition, winch strategies based on an optimization scheme are presented. In order to demonstrate the real world functionality of the presented algorithms, flight data from a fully automated pumping-cyde operation of a small-scale prototype are given. The setup is based on a 30 m~2 kite linked to a ground-based 50 kW electrical motor/generator by a single line.
机译:基于束缚风筝的能量收集受益于在更高海拔下利用更高的风速。本文考虑的设置基于泵送周期。它通过高束缚力绞车产生能量,在横风飞行时驱动发电机。然后,它在静止的中性位置绞车,从而产生了一定量的净产生能量。本文的重点放在飞行控制设计上,该设计实现了对目标点的精确方向控制,并允许以八向下降模式飞行。提出了关于控制系统方法的扩展概述,以及飞行控制器每个元素的详细信息。控制体系结构是由一个简单而全面的风筝动力学模型驱动的。此外,提出了基于优化方案的绞车策略。为了演示所提出算法的真实功能,给出了小型原型机的全自动泵浦操作的飞行数据。该设置基于一条30 m〜2风筝,该风筝通过一条线路连接到地面50 kW电动机/发电机。

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