Design and Analysis of Non-dynamic Hip Joint Assisted Exoskeletons
Yang Jie
Wang Xupeng
Tang Xinyao
Zhang Wenjie
Abstract:To improve the human-machine coordination of existing assistive exoskeletons,this study uti-lizes experimental data collection of human lower limb motion to establish inverse kinematic and inverse dynam-ic models.Analysis is conducted on parameters such as angles,torques,and kinetic energy of the hip joint dur-ing walking.Based on these parameters,a variable stiffness spring-based energy storage element is proposed and designed for the passive hip joint assistive exoskeleton.Human-machine coupling simulations are carried out using Adams software to validate the designed exoskeleton's coordination with human movements.The simu-lation results indicate that the designed passive hip joint assistive exoskeleton demonstrates favorable human-machine coordination.Subsequently,the physical prototype of the exoskeleton is fabricated,and a wearable ex-periment is conducted.The experimental results show an average reduction of 5.6%in hip joint torque and 6.25%in work done during the gait cycle with the exoskeleton.This confirms the positive assistance effect of the passive hip joint assistive exoskeleton on the human walking.
Keywords:Hip joint assisted exoskeletonVariable stiffness springInverse kinematicInverse dy-namicSimulation
Publication Date:2024-08-15
Online Publishing Date:2026-09-12(First online date of this platform, not the publication date of the document)
Pages:12( 70-81 )
