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Finite time observer based incremental nonlinear fault-tolerant flight control

机译:基于有限的时间观测器基于增量非线性容错飞行控制

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This paper investigates incremental nonlinear control approaches for aircraft attitude control considering external disturbances, nonlinear model uncertainties, actuator faults and measurement errors of angular accelerations and control inputs. The incremental model for incremental nonlinear control law design is reformulated and a novel finite time disturbance observer (FTESO) based incremental backstepping (IBKS) control strategy is proposed to further improve the robustness and fault accommodation capability of the standard IBKS controller. The advanced disturbance observer is adopted to actively estimate and compensate the synthetic uncertainties of the reformulated incremental model while retaining the advantage of the standard IBKS controller that not requiring the exact knowledge of aircraft dynamics. The state variables of the closed-loop system are proved to be semi-globally uniformly ultimately bounded (SGUUB). The effectiveness of the FTESO based IBKS controller is validated by aircraft command tracking simulation studies in the presence of sudden system disturbance, actuator faults and measurement errors of angular accelerations. In addition, the control framework of the FTESO based IBKS controller can also be utilized to improve other incremental nonlinear controllers with proper disturbance observers. (c) 2020 Elsevier Masson SAS. All rights reserved.
机译:本文研究了考虑外部干扰,非线性模型不确定性,执行器故障和角度加速度和控制输入的测量误差的飞机姿态控制的增量非线性控制方法。建议增量非线性控制法设计的增量模型,提出了一种基于新的有限时间干扰观察者(FTESO)的增量反击(IBK)控制策略,以进一步提高标准IBKS控制器的鲁棒性和故障容纳能力。采用先进的扰动观察员积极估计和补偿重新估计的增量模型的合成不确定性,同时保留了标准IBKS控制器的优势,不需要对飞机动力学的确切知识。闭环系统的状态变量被证明是半全球均匀的最终限定(SGUUB)。飞机指挥跟踪仿真研究验证了FTESO基于IBKS控制器的有效性,在突然的系统干扰,执行器故障和角度加速度的测量误差存在下。另外,还可以利用FTESO基于IBKS控制器的控制框架来改善具有适当干扰观察者的其他增量非线性控制器。 (c)2020 Elsevier Masson SAS。版权所有。

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