Prescribed-Time Fault-Tolerant Flight Control for Aircraft Subject to Structural Damage

IF 5.7 2区 计算机科学 Q1 ENGINEERING, AEROSPACE IEEE Transactions on Aerospace and Electronic Systems Pub Date : 2024-09-16 DOI:10.1109/TAES.2024.3461677
Yu Li;Chih-Yung Wen;Xiaoxiong Liu;Weiguo Zhang;Yuanshi Zheng
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Abstract

This article investigates the attitude tracking fault-tolerant control for structurally damaged aircraft based on prescribed-time theory. A prescribed-time-based hybrid backstepping fault-tolerant control approach is proposed to address unilateral wing damage and multiple actuator faults. The prescribed-time-based extended state observer is proposed to solve the problem caused by angular acceleration disturbances destroying robustness. Meanwhile, the “explosion of complexity” problem is effectively avoided by the introduction of a prescribed-time-based filter. Importantly, the tracking error and the disturbance estimation error are rigorously demonstrated to converge to a small region around zero within a user-defined time, and this convergence time is not affected by controller parameters or initial states. Finally, simulation results verify the effectiveness of the proposed attitude tracking fault-tolerant control algorithm.
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结构受损飞机的规定时间容错飞行控制
研究了基于规定时间理论的结构损伤飞机姿态跟踪容错控制问题。针对单侧机翼损伤和多致动器故障,提出了一种基于规定时间的混合后退容错控制方法。针对角加速度扰动破坏鲁棒性的问题,提出了基于时间的扩展状态观测器。同时,通过引入基于时间的过滤器,有效地避免了“复杂性爆炸”问题。重要的是,严格证明了跟踪误差和干扰估计误差在用户定义的时间内收敛到零附近的小区域,并且该收敛时间不受控制器参数或初始状态的影响。最后,仿真结果验证了姿态跟踪容错控制算法的有效性。
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来源期刊
CiteScore
7.80
自引率
13.60%
发文量
433
审稿时长
8.7 months
期刊介绍: IEEE Transactions on Aerospace and Electronic Systems focuses on the organization, design, development, integration, and operation of complex systems for space, air, ocean, or ground environment. These systems include, but are not limited to, navigation, avionics, spacecraft, aerospace power, radar, sonar, telemetry, defense, transportation, automated testing, and command and control.
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