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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Hypersonic Missile Adaptive Sliding Mode Control Using Finite- and Fixed-Time Observers
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Hypersonic Missile Adaptive Sliding Mode Control Using Finite- and Fixed-Time Observers

机译:使用有限和固定时间观测器的超音速导弹自适应滑模控制

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摘要

Finite- and fixed-settling time differentiators utilizing a nonrecursive higher order sliding mode (HOSM) observer are studied. Fixed convergence time estimation is achieved independent of initial conditions of the differentiation errors. The corresponding convergence/settling times are estimated. The finite- and fixed-time HOSM differentiators' performance is compared against the Levant recursive one via a hypersonic missile control simulation case study during the missile's terminal phase of flight. A continuous adaptive HOSM control is utilized. The double-layer adaptive algorithm is based on an equivalent control concept and does not allow overestimation of the control gains that mitigates control chattering. The robustness and high-accuracy output tracking in the presence of matched and unmatched external disturbances and missile model uncertainties is demonstrated for both the differentiators and the controller.
机译:研究了使用非递归高阶滑模(HOSM)观测器的有限和固定建立时间的微分器。与微分误差的初始条件无关地实现了固定的收敛时间估计。估计相应的收敛/建立时间。在飞弹末期飞行阶段,通过高超音速导弹控制仿真案例研究,比较了有限时间和固定时间HOSM微分器的性能与Levant递归微分器的性能。利用了连续的自适应HOSM控制。双层自适应算法基于等效控制概念,不允许对控制增益进行过高估计,从而减轻了控制抖动。对于微分器和控制器,在匹配和不匹配的外部干扰以及导弹模型不确定性存在的情况下,其鲁棒性和高精度输出跟踪得到了证明。

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