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Robust adaptive tracking control for a class of mechanical systems with unknown disturbances under actuator saturation

Xin Hu, Xinjiang Wei, Huifeng Zhang, Jian Han, Xiuhua Liu

发表年份
2019
引用次数
81

摘要

Summary A robust adaptive tracking control scheme is presented for a class of multiple‐input and multiple‐output mechanical systems with unknown disturbances under actuator saturation. The unknown disturbances are expressed as the outputs of a linear exogenous system with unknown coefficient matrices. An adaptive disturbance observer is constructed for the online disturbance estimation. An actuator saturation compensator is introduced to attenuate the adverse effects of actuator saturation. The adaptive backstepping method is then applied to design the robust adaptive tracking control law. It is proved that the designed control law makes the system outputs track the desired trajectories and guarantees the global uniform ultimate stability of the closed‐loop control system. Simulations on a two‐link robotic manipulator verify the effectiveness of the proposed control scheme.

关键词

Control theory (sociology)BacksteppingActuatorPlantAdaptive controlRobust controlTracking errorComputer scienceNonlinear systemControl engineering

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