DocumentCode :
146402
Title :
An approach to high operational control of a slave mobile robot by master touch manipulation
Author :
Nagayama, Hiroyuki ; Murakami, Toshiyuki
Author_Institution :
Dept. of Syst. Design Eng., Keio Univ., Yokohama, Japan
fYear :
2014
fDate :
14-16 March 2014
Firstpage :
557
Lastpage :
562
Abstract :
The master-slave system is expected to be a key technology for the next generation of robots. Indeed, a master-slave system will be utilized in many fields to perform tasks remotely in unknown environments. However, it is difficult for the operator to lead the slave robot to goal position correctly in case of operating the slave robot in remote location since the operator cannot recognize three-dimensional space correctly. The purpose of this research is realization of high operational control of teleoperated mobile robot. With such system, the operator need not spatial recognition, and the proposed system does not depend on the operator´s skill, and also the proposed system can be applied to unknown environment. In the proposed system, the operator input the goal position by touch input on the screen which show the camera image. After touch input, the slave robot control the manipulator which mounts laser pointer and illuminates goal position. Then, the slave robot recognizes laser point by stereo camera and move to the goal position automatically. In this research, we utilize the touch input device as the master robot and the two-wheeled robot as the slave robot. Simulation is conducted to verify the validity of the proposed method.
Keywords :
human-robot interaction; image sensors; mobile robots; robot vision; stereo image processing; telerobotics; visual perception; image camera; laser point; master slave system; master touch manipulation; mobile robot teleoperation; remote location; slave mobile robot; spatial recognition; stereo camera; touch input; Xenon; Zirconium; Master-slave system; Operability; Stereo camera; Touch Input; Two-wheeled robot; Visual servoing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Motion Control (AMC),2014 IEEE 13th International Workshop on
Conference_Location :
Yokohama
Type :
conf
DOI :
10.1109/AMC.2014.6823342
Filename :
6823342
Link To Document :
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