DocumentCode
2350158
Title
Application of robots using pneumatic artificial rubber muscles for operating construction machines
Author
Kawashima, Kenji ; Nakamura, Naohiro ; Miyata, Toshiyula ; Kagawa, Toshiharu
Author_Institution
Precision & Intelligence Lab., Tokyo Inst. of Technol., Yokohama, Japan
Volume
4
fYear
2003
fDate
27-31 Oct. 2003
Firstpage
3384
Abstract
In the restoration work from disasters, the remote control of construction machine is required to ensure the worker´s safety. However, conventional remote-controlled construction machine is larger than ordinary ones and limited in types and numbers, so there is a problem that the transportation to the destructed sites takes time and is troublesome. Therefore, the development of the remote-control system using a robot, which can be easily installed in ordinary construction machine, is desired. We have been developing the pneumatic humanoid type robot arm, which can be installed in any models of construction machine, and realizing remote control of construction machine with the aim of easy installation and portability. In consideration of portability, the lightweight pneumatic artificial rubber muscle (PARM) was adopted as the actuator. In this research, we realized the remote control of the construction machine using the pneumatic robot that has 6 degree of freedom using the fiber knitted type PARM. We experimented in order to measure the static characteristic of the fiber knitted type PARM. Then we did experiment on the remote control of the construction machine. Experimental results show the developed system is availability in remote control of a construction machine.
Keywords
construction; disasters; manipulators; pneumatic control equipment; robots; safety; telecontrol; 6 degree of freedom; 6DOF; actuator; construction machine operation; disasters; fiber knitted type PARM; pneumatic artificial rubber muscles; pneumatic humanoid type robot arm; remote control system; remote controlled construction machine; restoration work; robots application; static characteristics; transportation; worker safety; Artificial intelligence; Connectors; Control systems; Humanoid robots; Hysteresis; Intelligent robots; Muscles; Pneumatic actuators; Rubber; Safety;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems, 2003. (IROS 2003). Proceedings. 2003 IEEE/RSJ International Conference on
Print_ISBN
0-7803-7860-1
Type
conf
DOI
10.1109/IROS.2003.1249679
Filename
1249679
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