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基于动态观测器的不确定机器人鲁棒控制研究

A Study on the Uncertain Robust Control of Robot Based on Dynamic Observer

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【作者】 李世敬王解法冯祖仁萧蕴诗

【Author】 LI Shi-jing 1,2, WAN Jie-fa 3, FENG Zu-ren 3, XIAO Yun-shi 2(1. Technology Center, Shanghai Hitachi Electrical Appliances limited Company, Shanghai 201206, China; 2. School of Electronics and Information Engineering, Shanghai Tongji University, Shanghai 200092, China; 3. Systems Engineering Institute, Xi’an Jiaotong University, Xi’an, Shaanxi 710049, China)

【机构】 上海日立电器有限公司技术中心西安交通大学系统工程研究所上海同济大学电子与信息工程学院 上海201206上海同济大学电子与信息工程学院上海200092陕西西安710049上海200092

【摘要】 针对仅有精确位置测量的机器人系统 ,在系统参数不确定和有界干扰并存的情况下 ,提出一种基于速度观测的鲁棒控制方案。在滑模观测器设计中引入补偿项 ,动态抵消系统偏差对速度重构的影响 ,确保观测误差指数收敛到有界域。采用Lyapunov直接法设计基于标称模型和观测速度的鲁棒控制律 ,使系统闭环满足局部一致最终有界收敛。最终以两关节平面机器人的仿真验证了所提方案的有效性

【Abstract】 With parameter inaccuracies and bounded disturbances, a robust control scheme based on velocity observations was proposed for robot systems in which only the positions can be precisely measured. By the introduction of a compensation term in the design of the sliding mode observer that counteracts the effect of system deviations to the velocity reconstruction, the exponential observation error is converged to a bounded region. Using the Lyapunov direct method in designing the robust control laws based on the normal model and observed velocity, the closed-loop system satisfies the local uniform ultimate boundedness. The effectiveness of the proposed scheme is verified through simulation studies on a 2D of planar robot.

  • 【分类号】TP242
  • 【被引频次】17
  • 【下载频次】298
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