DocumentCode
2069461
Title
Experimental comparative evaluation of compliant control schemes for an anthropomorphic personal robot
Author
Zollo, Loredana ; Siciliano, Bruno ; Laschi, Cecilia ; Teti, Giancarlo ; Dario, Paolo
Author_Institution
Adv. Robotics Technol. & Syst. Lab., Scuola Superiore Sant´´Anna, Pisa, Italy
Volume
3
fYear
2002
fDate
2002
Firstpage
2487
Abstract
This paper investigates the problem of controlling an anthropomorphic robot arm with autonomously variable compliance in order to ensure safety in the interaction with humans and, above all, to increase the robot functionality in tasks of physical interaction, performed in co-operation with humans. The research work aims at applications in service robotics where the robot arm is used as a ´personal robot´, for assistance to humans in different aspects of their everyday life. In personal applications of robotics, human-robot interaction represents a critical factor for the design of the robot and introduces strict requirements on its behavior and control, which has to ensure safety and effectiveness. Two different compliant control schemes have been developed for the peculiar structure of the Dexter robot arm, an anthropomorphic 8 d.o.f. manipulator, and their performances have been comparatively evaluated through experimental trials. The comparative evaluation of the two control schemes, through the analysis of their different advantages and disadvantages, points out an overall better performance of the compliant control scheme in the joint space, relatively to the management of the mechanics of the robotic system. So, it emerges how the performances of the two control systems are inverted with respect to the theoretical considerations on their accuracy and effectiveness, that could be done on the basis of the classical control theory. After a brief description of the control models, the paper focuses on the experimental sessions aimed at verifying the level of accuracy, affordability, functionality and safety of the implemented control systems.
Keywords
force control; robots; safety; anthropomorphic robot arm; autonomously variable compliance; personal robot; robot functionality; safety; service robotics; Anthropomorphism; Control systems; Control theory; Human robot interaction; Manipulators; Orbital robotics; Performance analysis; Performance evaluation; Robot control; Safety;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 2002. Proceedings of the 2002
ISSN
0743-1619
Print_ISBN
0-7803-7298-0
Type
conf
DOI
10.1109/ACC.2002.1024017
Filename
1024017
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