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Passive Fault Tolerant Control Approach for Hypersonic Vehicle with Actuator Loss of Effectiveness Faults

机译:具有效果故障致动器损失的超音速车辆被动容错控制方法

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In this paper, a passive fault tolerant controller is designed for a hypersonic vehicle with bounded external disturbances and unknown actuator loss of effectiveness faults. The nonlinear attitude dynamics models of hypersonic vehicle are firstly given, when some actuator occur unknown loss of effectiveness faults, the faulty attitude control systems of hypersonic vehicle are established, which could be divided into the outer attitude angle loop and the inner angle velocity loop based on the timescale separation principle. By using terminal sliding mode technique, a passive fault tolerant control approach is developed, which guarantees that the closed-loop attitude control systems of hypersonic vehicle in actuator loss of effectiveness fault case are stable. Finally, simulation results are presented to demonstrate the feasibility of the proposed fault tolerant control approach.
机译:本文设计了一种无源容错控制器,专为具有有界外部干扰的超音速车辆和有效性故障的未知致动器损失。优质车辆的非线性姿态动力学模型首先给出,当一些致动器发生未知的有效性故障损失时,建立了超声波驾驶的故障姿态控制系统,其可以被分成外姿态角环和基于内角速度环论时间尺度分离原则。通过使用终端滑动模式技术,开发了一种被动容错控制方法,保证了静电车辆的闭环姿态控制系统在执行器效果故障情况下是稳定的。最后,提出了仿真结果以证明所提出的容错控制方法的可行性。

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