首页 /研究 /Control architecture for a lower limbs rehabilitation robot system
LOCOMOTION

Control architecture for a lower limbs rehabilitation robot system

Nataša Koceska, Sašo Koceski, Pierluigi Beomonte Zobel, Francesco Durante

发表年份
2009
引用次数
16

摘要

This paper describes the control architecture for lower limbs rehabilitation robot system and its implementation. The system has exoskeleton structure with 10 DOF (degrees of freedom) and is pneumatically actuated. The control strategy has been specifically designed in order to ensure a proper position control guiding patient's legs along a fixed reference gait pattern. For this purposes Fuzzy controller with additional force compensator was developed. A numerical solution of the inverse kinematics problem based on video image analysis has been used. The controller was successively implemented and tested on embedded real-time PC104 system. Laboratory experiments without patient are carried out and the results are reported and discussed.

关键词

Inverse kinematicsExoskeletonKinematicsController (irrigation)Computer scienceControl systemRobot kinematicsFuzzy control systemControl theory (sociology)Degrees of freedom (physics and chemistry)

相关论文

查看 LOCOMOTION 分类全部论文