DocumentCode
3103069
Title
Five-fingered haptic interface robot: HIRO III
Author
Endo, Takahiro ; Kawasaki, Haruhisa ; Mouri, Tetsuya ; Doi, Yasutoshi ; Yoshida, Tetsunori ; Ishigure, Yasuhiko ; Shimomura, Hisayuki ; Matsumura, Masato ; Koketsu, Kazumi
Author_Institution
Gifu Univ., Gifu
fYear
2009
fDate
18-20 March 2009
Firstpage
458
Lastpage
463
Abstract
This paper presents the design and characteristics of a five-fingered haptic interface robot: HIRO III. The aim of the paper is to provide a high-precision force representation at the five human fingertips. HIRO III consists of a 15-degree-of-freedom (DOF) haptic hand, a 6 DOF interface arm and a control system. The haptic interface, which consists of a robot arm and hand, can be used in a large workspace and can provide multipoint contact between the user and a virtual environment. However, the following problems peculiar to a multi-DOF robot have resulted: a backlash, a large amount of friction, many motors, and many sensors. In order to solve these problems, a new mechanism and a wire-saving control system have been designed and developed. Furthermore, experiments in both free space and constraint space have been carried out. In comparison with the previous HIRO, the force errors in free space and in constraint space have been reduced to 30% and 57%, respectively. These results show a high-precision force representation and the great potential of HIRO III.
Keywords
control system synthesis; dexterous manipulators; haptic interfaces; human-robot interaction; virtual reality; HIRO III; five-fingered haptic interface robot; high-precision force representation; multipoint contact; virtual environment; wire-saving control system design; Circuits; Communication system control; Control systems; Force control; Force sensors; Friction; Haptic interfaces; Humans; Robot sensing systems; Virtual environment; Design; Haptic interface; Virtual reality;
fLanguage
English
Publisher
ieee
Conference_Titel
EuroHaptics conference, 2009 and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems. World Haptics 2009. Third Joint
Conference_Location
Salt Lake City, UT
Print_ISBN
978-1-4244-3858-7
Type
conf
DOI
10.1109/WHC.2009.4810812
Filename
4810812
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