Title
A variable stiffness joint using leaf springs for robot manipulators
Abstract
Safety of a manipulator designed to be used at home requires different approach than industrial robots, where safety is achieved mainly by decreasing the interaction with humans. Robots for applications at home, however, require frequent interaction with humans. Introducing compliant component gives the answer to the safety issue at the cost of performance degradation. In order to reduce the performance degradation, manipulators equipped with variable stiffness have been studied by many researchers. This paper presents a variable stiffness joint (VSJ) designed for a robot manipulator. The stiffness is generated by leaf springs and two actuators are used to control the position and stiffness of the joint. Changing the effective length of the spring results in change in stiffness. The position of the joint is controlled via rotating two actuators at the same speed in the same direction. The stiffness is controlled when the two actuators rotate in the different speed. Experiments are conducted to show that the position and stiffness are controlled independent with each other and having less stiffness at the joint helps in making unexpected collision with object safer.
Year
DOI
Venue
2009
10.1109/ROBOT.2009.5152716
ICRA
Keywords
Field
DocType
robot manipulators,different approach,variable stiffness joint,effective length,frequent interaction,safety issue,variable stiffness,leaf spring,performance degradation,mechanical variables control,industrial robots,industrial robot,compliant component,stiffness control,leaf springs,manipulators,different speed,position control,robot manipulator,actuators,frequency,human robot interaction,couplings
Rotation,Coupling,Stiffness,Control theory,Control engineering,Collision,Engineering,Robot,Robot manipulator,Actuator,Leaf spring
Conference
Volume
Issue
ISSN
2009
1
1050-4729 E-ISBN : 978-1-4244-2789-5
ISBN
Citations 
PageRank 
978-1-4244-2789-5
14
1.18
References 
Authors
8
4
Name
Order
Citations
PageRank
Junho Choi136660.87
Seonghun Hong2605.66
Woosub Lee312715.75
Sungchul Kang437347.67