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Active Disturbance Rejection Control of Multi-Joint Industrial Robots Based on Dynamic Feedforward

Xin Cheng, Xiao Tu, Yunfei Zhou, Rougang Zhou

发表年份
2019
引用次数
24
访问权限
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摘要

In this paper, the dynamics-based high-performance robot motion control technology has been mainly studied, and the overall structure is controlled via dynamics forward, given the nonlinearity, strong coupling and time-variability of robots. Considering the unavailability of precise robot model parameters and the uncertain disturbance in real operation, we put forward an active disturbance rejection control (ADRC) strategy based on dynamic feedforward, aiming to improve the control robustness and combining the simple structure, strong anti- disturbance ability, and no restriction from the control model of ADRC. Given the multi-joint coupling of robots, controlled decoupling is conducted by using dynamic characteristics. The ADRC cascade control structure and algorithm based on dynamic feedforward have been studied and the closed-loop stability of the system is investigated by analyzing the system dynamic linearization compensation and the anti-disturbance ability of the extended state observer. Experiments have shown the new strategy is more robust over uncertain disturbance than the conventional proportional-integral-derivative control strategy.

关键词

Feed forwardControl theory (sociology)Active disturbance rejection controlUnavailabilityDecoupling (probability)RobotControl engineeringRobustness (evolution)CascadeComputer science

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