基于稳定反演的民机自动着舰容错轨迹跟踪控制

Xudong Wang, Shiqian Liu, Huihui Cheng, Y. Sang, Xinjian Ma
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引用次数: 0

摘要

研究了存在风扰动和执行机构故障的飞机自动着陆控制问题。为了解决这一问题,提出了一种用于商用飞机自动着陆的容错轨迹跟踪控制器。首先,建立了考虑故障和风的飞机动力学模型。其次,提出了基于稳定反演的容错自动著陆控制体系结构。采用稳定逆控制,提高输出跟踪精度。采用H_∞控制对风扰动和故障引起的不确定性进行鲁棒稳定性控制。与一般的容错自动著陆控制相比,基于稳定逆的容错自动著陆控制具有更强的鲁棒性,包括稳定非最小相位系统。最后,对某大型民用飞机在大风和电梯故障情况下的自动着陆控制进行了两种场景仿真。结果表明,即使在控制面故障和大风情况下,基于稳定反演的容错自动著陆控制器也比稳定反演控制和容错自动著陆控制具有更好的跟踪性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stable Inversion Based Fault-tolerant Trajectory Tracking Control of Civil Aircrafts Autolanding
This paper deals with aircraft autoland control in the presence of wind disturbances and actuator faults. To solve this problem, a fault-tolerant trajectory tracking controller is presented to autoland a commercial aircraft. Firstly, the dynamics models of the aircraft with faults and winds are built. Secondly, the stable inversion based fault-tolerant autolanding control architecture is proposed. The stable inversion control is used to improve output tracking precision. The H_∞ control is applied for robust stability against uncertainties caused by wind disturbances and the faults. Compare with common fault-tolerant autolanding control, the stable inversion based fault-tolerant autolanding control has more robust capability including stabilizing the non-minimum phase system. Finally, two scenario simulations are carried out for automatic landing control of a large civil aircraft under winds and elevator failures. The results indicate that the proposed stable inversion based fault-tolerant autolanding controller has better tracking performances than those of the stable inversion control and fault-tolerant autolanding control, even in control surface faults and large winds.
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