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Motion control of a novel robotic wrist exoskeleton via pneumatic muscle actuators

George Andrikopoulos, George Nikolakopoulos, Stamatis Manesis

Year
2015
Citations
41

Abstract

In this article, the motion control problem of a robotic EXOskeletal WRIST (EXOWRIST) prototype is considered. This novel robotic appliance's motion is achieved via pneumatic muscle actuators, a pneumatic form of actuation possessing crucial attributes for the development of an exoskeleton that is safe, reliable, portable and low-cost. The EXOWRIST's properties are presented in detail and compared to the recent wrist exoskeleton technology, while its two degrees-of-freedom movement capabilities (extension-flexion, ulnar-radial deviation) are experimentally evaluated on a healthy human volunteer via an advanced nonlinear PID-based control algorithm.

Keywords

ExoskeletonActuatorWristPneumatic actuatorPneumatic artificial musclesMotion controlMedical roboticsMotion (physics)Computer scienceUlnar deviation

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