DocumentCode
657460
Title
3D smart user interactive system with proprioceptive orientation feedback by using Disparity Compassing
Author
Kok Seng Eu ; Tiam Hee Tee ; Kian Meng Yap ; Yoon Ket Lee
Author_Institution
Fac. of Sci. & Technol., Sunway Univ., Bandar Sunway, Malaysia
fYear
2013
fDate
22-25 Sept. 2013
Firstpage
289
Lastpage
294
Abstract
Feedback of proprioceptive information is important for many tele-robotic systems, especially performing a navigation task and out-of-sight remote controlling. Proprioception is defined as the ability to sense the position, location, orientation, and movement of the body and its parts. Although proprioceptive feedback is one of the significant feedbacks for tele-operations, it has not been taken much consideration in current tele-robotics research. This paper emphasizes on the orientation feedback of a robot with a 3D model user interface (UI). The 3D UI enhances the interpretation of proprioceptive information in order to aid operator to visualize the relative position and orientation of the robot. A new method called “Disparity Compassing” is proposed and applied into tele-robotic framework by using two magnetic compass sensors. One of the sensors is mounted on a robot and the other one is built-in compass sensor of the UI. With the disparity values of two compass sensors, the interactive orientation information of the robot can be fed back in real time to the operator. In this paper, the disparity compassing technique has been demonstrated. It has been proven that the tele-robotic system with disparity compassing enhances the awareness of relative positional navigation in the situation of unknown space exploration.
Keywords
feedback; interactive systems; magnetic sensors; motion control; path planning; position control; telerobotics; user interfaces; 3D UI; 3D model user interface; 3D smart user interactive system; body location; body movement; body orientation; body position; disparity compassing; disparity values; interactive orientation information; magnetic compass sensors; navigation task; out-of-sight remote controlling; positional navigation; proprioception; proprioceptive orientation feedback; robot orientation; robot position; space exploration; teleoperations; telerobotic systems; Compass; Navigation; Robot sensing systems; Three-dimensional displays; Visualization; 3D User Interface; Compass Sensor; Proprioceptive Information; Tele-robotics;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Technology and Applications (ISWTA), 2013 IEEE Symposium on
Conference_Location
Kuching
ISSN
2324-7843
Print_ISBN
978-1-4799-0155-5
Type
conf
DOI
10.1109/ISWTA.2013.6688790
Filename
6688790
Link To Document