马建峰, 王嘉明, 陈晓. 准被动式储能下肢外骨骼的设计[J]. 北京工业大学学报, 2021, 47(9): 991-999. DOI: 10.11936/bjutxb2020010005
    引用本文: 马建峰, 王嘉明, 陈晓. 准被动式储能下肢外骨骼的设计[J]. 北京工业大学学报, 2021, 47(9): 991-999. DOI: 10.11936/bjutxb2020010005
    MA Jianfeng, WANG Jiaming, CHEN Xiao. Design of Quasi-passive Energy Storage Lower Extremity Exoskeleton[J]. Journal of Beijing University of Technology, 2021, 47(9): 991-999. DOI: 10.11936/bjutxb2020010005
    Citation: MA Jianfeng, WANG Jiaming, CHEN Xiao. Design of Quasi-passive Energy Storage Lower Extremity Exoskeleton[J]. Journal of Beijing University of Technology, 2021, 47(9): 991-999. DOI: 10.11936/bjutxb2020010005

    准被动式储能下肢外骨骼的设计

    Design of Quasi-passive Energy Storage Lower Extremity Exoskeleton

    • 摘要: 通过提出一种准被动式储能下肢外骨骼的设计和分析,以缓解关键承载关节的负担,并且辅助人体行走.结合人体步态规律,采用串联弹性储能部件的方法实现在被动式的跟随人体运动的过程中进行能量的存储,达到节省人体能量消耗的目的.根据人体髋、膝关节在正常步态中的受力变化情况,通过设计相应的髋关节自适应系统和膝关节变刚度系统,并基于三态的能量控制策略来实现下肢外骨骼在支撑状态和摆动状态之间的柔顺切换.最终在不妨碍人体正常行走的前提下,实现行走助力.

       

      Abstract: A quasi-passive energy storage design and analysis of the lower extremity exoskeleton was proposed to alleviate the burden of the key bearing joints and assist walking. In combination with the gait law of the human body, the method of series elastic energy storage components was adopted to accomplish energy storage in the process of passive follow-up human body movement, thereby achieving the purpose of saving energy consumption of the human body. According to the change of the hip and knee joint in the normal gait, the corresponding hip joint adaptive system and the knee joint variable stiffness system were designed, and the smooth switching between the support state and the swing state of the lower extremity exoskeleton was achieved based on the three-state energy control strategy. In the end, walking assistance was obtained without hindering the normal walking of the human body.

       

    /

    返回文章
    返回