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Vision-based Stabilization of Nonholonomic Mobile Robots by Integrating Sliding-mode Control and Adaptive Approach 被引量:4
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作者 CAO Zhengcai YIN Longjie FU Yili 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第1期21-28,共8页
Vision-based pose stabilization of nonholonomic mobile robots has received extensive attention. At present, most of the solutions of the problem do not take the robot dynamics into account in the controller design, so... Vision-based pose stabilization of nonholonomic mobile robots has received extensive attention. At present, most of the solutions of the problem do not take the robot dynamics into account in the controller design, so that these controllers are difficult to realize satisfactory control in practical application. Besides, many of the approaches suffer from the initial speed and torque jump which are not practical in the real world. Considering the kinematics and dynamics, a two-stage visual controller for solving the stabilization problem of a mobile robot is presented, applying the integration of adaptive control, sliding-mode control, and neural dynamics. In the first stage, an adaptive kinematic stabilization controller utilized to generate the command of velocity is developed based on Lyapunov theory. In the second stage, adopting the sliding-mode control approach, a dynamic controller with a variable speed function used to reduce the chattering is designed, which is utilized to generate the command of torque to make the actual velocity of the mobile robot asymptotically reach the desired velocity. Furthermore, to handle the speed and torque jump problems, the neural dynamics model is integrated into the above mentioned controllers. The stability of the proposed control system is analyzed by using Lyapunov theory. Finally, the simulation of the control law is implemented in perturbed case, and the results show that the control scheme can solve the stabilization problem effectively. The proposed control law can solve the speed and torque jump problems, overcome external disturbances, and provide a new solution for the vision-based stabilization of the mobile robot. 展开更多
关键词 nonholonomic mobile robots vision-based stabilization sliding-mode control adaptive control neural dynamics
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基于神经动力学的非完整移动机器人跟踪控制 被引量:6
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作者 庄严 孙越 王伟 《机器人》 EI CSCD 北大核心 2007年第5期485-491,共7页
提出了一种针对非完整移动机器人轨迹跟踪控制的新方法;该方法将神经动力学生物激励模型集成到后退控制方法中,同时采用自适应参数模型来实现具有鲁棒性的跟踪控制.该控制器解决了以往大部分跟踪控制器所产生的速度突变问题.运用李亚普... 提出了一种针对非完整移动机器人轨迹跟踪控制的新方法;该方法将神经动力学生物激励模型集成到后退控制方法中,同时采用自适应参数模型来实现具有鲁棒性的跟踪控制.该控制器解决了以往大部分跟踪控制器所产生的速度突变问题.运用李亚普诺夫稳定性理论证明了该控制系统的稳定性.对连续、离散轨迹的仿真以及与传统后退方法的比较分析均验证了该方法的有效性. 展开更多
关键词 非完整移动机器人 神经动力学 参数自适应 跟踪控制
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