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A multi-channel H_∞ preview control approach to load alleviation design for flexible aircraft

机译:一种多通道H_∞预览控制柔性飞机负载缓解设计的预览控制方法

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Gust load alleviation functions are mainly designed for two objectives: first, alleviating the structural loads resulting from turbulence or gust encounter, and hence reducing the structural fatigue and/or weight; and second, enhancing the ride qualities, and hence the passengers' comfort. Whilst load alleviation functions can improve both aspects, the designer will still need to make design trade-offs between these two objectives and also between various types and locations of the structural loads. The possible emergence of affordable and reliable remote wind sensor techniques (e.g., Doppler LIDAR) in the future leads to considering new types of load alleviation functions as these sensors would permit anticipating the near future gusts and other types of turbulence. In this paper, we propose a preview control design methodology for the design of a load alleviation function with such anticipation capabilities, based on recent advancements on discrete-time reduced-order multi-channel H_∞ techniques. The methodology is illustrated on the DLR Discus-2c flexible sailplane model.
机译:阵风负荷缓解功能主要设计为两个目标:首先,减轻湍流或阵风导致的结构载荷,因此降低了结构疲劳和/或重量;第二,增强了乘坐品质,因此乘客的舒适。虽然负载缓解功能可以改善两个方面,但设计师仍然需要在这两个目标之间以及结构负载的各种类型和位置之间进行设计权衡。在未来的可能出现实惠且可靠的远程风传感器技术(例如,多普勒LIDAR)导致考虑新类型的负载缓解功能,因为这些传感器允许预测近期阵风和其他类型的湍流。在本文中,我们提出了一种预览控制设计方法,用于设计具有这种预期能力的负载缓解功能的设计,基于最近的离散时间减少多通道H_6技术的进步。该方法在DLR DISCUS-2C柔性帆刀模型上说明。

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