DocumentCode
1836411
Title
Design and control of a robotic wrist orthosis for joint rehabilitation
Author
Wei Meng ; Bo Sheng ; Klinger, Michael ; Quan Liu ; Zude Zhou ; Xie, Sheng Q.
Author_Institution
Dept. of Mech. Eng., Univ. of Auckland, Auckland, New Zealand
fYear
2015
fDate
7-11 July 2015
Firstpage
1235
Lastpage
1240
Abstract
Ageing society in many countries has led to an increasing number of stroke and cerebral palsy patients who require rehabilitation therapy. Affected wrist joints often show an increased spasticity and stiffness, caused by impairments of surrounding muscles and tendons. However, the medical devices for wrist joint assessment and rehabilitation are lacking. This paper proposes a robotic orthosis to assist the patient´s wrist to perform rehabilitation exercise in a compliant way. A 1-DOF robotic device with parallel mechanism is designed for the wrist joint by utilising pneumatic artificial muscles (PAMs) that are compliant and lightweight. The mechanical design of the wrist orthosis and the corresponding development of pneumatic control system will be also presented. A model-based pressure close-loop control strategy is implemented for the PAMs in order to track the trajectory in high-performance. Experiments on the orthosis demonstrated that the robot could assist the hand to move along a torque-sensitive trajectory with relatively small errors and the differential forces were also kept stable.
Keywords
closed loop systems; medical robotics; patient rehabilitation; pneumatic actuators; pressure control; torque control; 1-DOF robotic device; PAM; ageing society; cerebral palsy patients; differential forces; joint rehabilitation; medical devices; model-based pressure close-loop control strategy; parallel mechanism; pneumatic artificial muscles; pneumatic control system; rehabilitation exercise; rehabilitation therapy; robotic wrist orthosis; torque-sensitive trajectory; wrist joint assessment; wrist joint rehabilitation; Actuators; Force; Muscles; Robots; Trajectory; Valves; Wrist; joint rehabilitation robot; pneumatic artificial muscles (PAMs); pressure control; wrist orthosis;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Intelligent Mechatronics (AIM), 2015 IEEE International Conference on
Conference_Location
Busan
Type
conf
DOI
10.1109/AIM.2015.7222708
Filename
7222708
Link To Document