Dynamics analysis and simulation verification of a novel knee joint exoskeleton
A novel knee joint exoskeleton, is designed in this paper, including the mechanical structure and hydraulic damper. To determine the spring parameters of knee joint exoskeleton and verify its effectiveness, we conduct the following studies. Firstly, forward kinematics analysis of the swing phase is...
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2017-06-01
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doaj-4e77774f046047c089b3486dfaeacfc92020-11-24T23:40:06ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602017-06-011943008301810.21595/jve.2017.1832318323Dynamics analysis and simulation verification of a novel knee joint exoskeletonLei Fan0Lei Yan1Jiang Xiao2Fangzheng Wang3School of Technology, Beijing Forestry University, Beijing, ChinaSchool of Technology, Beijing Forestry University, Beijing, ChinaSchool of Technology, Beijing Forestry University, Beijing, ChinaSchool of Technology, Beijing Forestry University, Beijing, ChinaA novel knee joint exoskeleton, is designed in this paper, including the mechanical structure and hydraulic damper. To determine the spring parameters of knee joint exoskeleton and verify its effectiveness, we conduct the following studies. Firstly, forward kinematics analysis of the swing phase is obtained and Lagrange dynamics analysis is carried out. Secondly, the 3D model of exoskeleton is set up and ADAMS simulation is conducted. Then the spring parameters of knee joint exoskeleton are selected, including the spring force, the spring stiffness coefficient and the spring expansion, according to the simulation results. Finally, there are three sets of moments on the non-wearable side, the moments resulted from ADAMS simulations, the moments from the CGA (Clinical gait analysis) and the moments calculated from the Lagrange equation are compared, results show they are in good agreement. The effectiveness of the ADAMS simulation proves that the parameters of the hydraulic damper can meet the actual requirements. The simulation analysis of the exoskeleton provides important parameters for the manufacture and it also provides theoretical basis for the later control theory.https://www.jvejournals.com/article/18323knee joint exoskeletonLagrange analysisAdams simulation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lei Fan Lei Yan Jiang Xiao Fangzheng Wang |
spellingShingle |
Lei Fan Lei Yan Jiang Xiao Fangzheng Wang Dynamics analysis and simulation verification of a novel knee joint exoskeleton Journal of Vibroengineering knee joint exoskeleton Lagrange analysis Adams simulation |
author_facet |
Lei Fan Lei Yan Jiang Xiao Fangzheng Wang |
author_sort |
Lei Fan |
title |
Dynamics analysis and simulation verification of a novel knee joint exoskeleton |
title_short |
Dynamics analysis and simulation verification of a novel knee joint exoskeleton |
title_full |
Dynamics analysis and simulation verification of a novel knee joint exoskeleton |
title_fullStr |
Dynamics analysis and simulation verification of a novel knee joint exoskeleton |
title_full_unstemmed |
Dynamics analysis and simulation verification of a novel knee joint exoskeleton |
title_sort |
dynamics analysis and simulation verification of a novel knee joint exoskeleton |
publisher |
JVE International |
series |
Journal of Vibroengineering |
issn |
1392-8716 2538-8460 |
publishDate |
2017-06-01 |
description |
A novel knee joint exoskeleton, is designed in this paper, including the mechanical structure and hydraulic damper. To determine the spring parameters of knee joint exoskeleton and verify its effectiveness, we conduct the following studies. Firstly, forward kinematics analysis of the swing phase is obtained and Lagrange dynamics analysis is carried out. Secondly, the 3D model of exoskeleton is set up and ADAMS simulation is conducted. Then the spring parameters of knee joint exoskeleton are selected, including the spring force, the spring stiffness coefficient and the spring expansion, according to the simulation results. Finally, there are three sets of moments on the non-wearable side, the moments resulted from ADAMS simulations, the moments from the CGA (Clinical gait analysis) and the moments calculated from the Lagrange equation are compared, results show they are in good agreement. The effectiveness of the ADAMS simulation proves that the parameters of the hydraulic damper can meet the actual requirements. The simulation analysis of the exoskeleton provides important parameters for the manufacture and it also provides theoretical basis for the later control theory. |
topic |
knee joint exoskeleton Lagrange analysis Adams simulation |
url |
https://www.jvejournals.com/article/18323 |
work_keys_str_mv |
AT leifan dynamicsanalysisandsimulationverificationofanovelkneejointexoskeleton AT leiyan dynamicsanalysisandsimulationverificationofanovelkneejointexoskeleton AT jiangxiao dynamicsanalysisandsimulationverificationofanovelkneejointexoskeleton AT fangzhengwang dynamicsanalysisandsimulationverificationofanovelkneejointexoskeleton |
_version_ |
1725511015702986752 |