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Fault-tolerant control of hypersonic vehicles based on fast fault observer under actuator gain loss fault or stuck fault

机译:基于快速故障观察器的超声波在执行器增益损失故障下的容错控制故障或卡住故障

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摘要

This paper proposes a fault-tolerant control (FTC) method based on fast fault observer (FFO) to solve the problem of actuator gain loss fault and stuck fault for hypersonic vehicles. Firstly, an input-output feedback linearisation model is presented that considers parametric uncertainties, control input saturation, disturbances and actuator faults. Secondly, the above factors are defined as an integrated fault item, and an improved fast fault observer is designed to estimate the integrated fault in real time. Finally, the fault-tolerant controller is constructed based on the sliding mode and fault estimation. In case of unknown faults, the effects of gain loss fault or stuck fault happen on elevators and the engine can be quickly processed, Also, the asymptotically stable tracking of the flight output reference command is completed to achieve fault-tolerant control. The final simulation experiment verifies the effectiveness of the proposed method.
机译:本文提出了一种基于快速故障观察者(FFO)的容错控制(FTC)方法,解决了超声波致动器增益损耗故障和粘附故障的问题。首先,提出了一种输入输出反馈线性化模型,其考虑参数不确定性,控制输入饱和度,干扰和执行器故障。其次,上述因素被定义为集成故障项目,并且旨在实时估计集成故障的改进的快速故障观察者。最后,基于滑动模式和故障估计来构造容错控制器。在未知故障的情况下,可以快速处理增益损失故障或卡住故障的影响,也可以快速处理发动机,也完成了飞行输出参考命令的渐近稳定跟踪以实现容错控制。最终仿真实验验证了该方法的有效性。

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