协作机器人关节变阻抗柔顺随动控制方法

Variable Impedance Compliant Motion Control Method for Collaborative Robot Joints

  • 摘要: 人机协作(human-robot collaboration,HRC)装配是工业5.0人本智造的实践载体,柔顺随动控制是保证高效和安全HRC装配的关键. 但是,传统基于位置的控制并不适用于以随动控制为主的HRC装配,存在人机交互意图难以辨识和末端抖动的问题. 为此,提出基于粒子群算法的协作机器人关节变阻抗柔顺控制方法. 首先,构建方法总体框架;然后,建立协作机器人动力学模型,并识别动力学参数;将粒子群算法引入自适应变阻抗模型,使协作机器人在力跟随和力保持任务中的性能最优;最后,在Matlab/Simulink中仿真,并通过零力牵引控制、恒力阶跃控制和变力跟随控制实验,验证所提出方法的有效性.

     

    Abstract: Human-robot collaboration (HRC) assembly serves as a practical carrier for human-centric smart manufacturing of Industry 5.0. Compliant control is crucial for ensuring efficient and safe HRC assembly. However, traditional position-based control is unsuitable for HRC assembly dominated by motion-following control, presenting challenges such as difficulty in identifying HRC intent and end-effector oscillation. A joint variable impedance compliant control for collaborative robots based on the particle swarm optimization (PSO) was proposed. Firstly, the overall framework was constructed. Subsequently, the dynamic model of the robot was established, and its dynamic parameters were identified. The PSO algorithm was then introduced into the adaptive variable impedance model to optimize the performance of the collaborative robot in both force tracking and force maintenance tasks. Finally, simulations were conducted in Matlab/Simulink, and the effectiveness of the proposed method was validated through experiments including zero-force drag control, constant force step control, and variable force following control.

     

/

返回文章
返回