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Adaptive Finite-Time Control for a Flexible Hypersonic Vehicle with Actuator Fault

机译:具有执行器故障的柔性超音速车辆的自适应有限时间控制

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摘要

The problem of robust fault-tolerant tracking control is investigated. Simulation on the longitudinal model of a flexible air-breathing hypersonic vehicle (FAHV) with actuator faults and uncertainties is conducted. In order to guarantee that the velocity and altitude track their desired commands in finite time with the partial loss of actuator effectiveness, an adaptive fault-tolerant control strategy is presented based on practical finite-time sliding mode method. The adaptive update laws are used to estimate the upper bound of uncertainties and the minimum value of actuator efficiency factor. Finally, simulation results show that the proposed control strategy is effective in rejecting uncertainties even in the presence of actuator faults.
机译:研究了鲁棒容错跟踪控制的问题。对致动器故障和不确定性进行柔性空气呼吸车辆(FAHV)的纵向模型的仿真。为了保证速度和高度在有限时间内跟踪其所需的命令随着致动器效率的部分损耗,基于实际有限时间滑模方法提出了自适应容错控制策略。自适应更新法用于估计不确定性的上限和执行器效率因子的最小值。最后,仿真结果表明,即使在执行器故障存在下,所提出的控制策略也有效地拒绝不确定性。

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