DocumentCode
2350393
Title
Mobile robot control using a small display
Author
Hoff, William A. ; Lisle, Joshua C.
Author_Institution
Colorado Sch. of Mines, Golden, CO, USA
Volume
4
fYear
2003
fDate
27-31 Oct. 2003
Firstpage
3473
Abstract
This paper addresses the problem of controlling a mobile robot using a small, portable user interface. In some applications, including security and military, a user might command a mobile robot in the field using a wearable computer. The wearable computer may have a small display that would make information delivery difficult. Also, full video feedback from the robot may not be available due to radio bandwidth limitations. One solution is to have the user interact with a virtual model of the robot environment (available from other sources). We designed an interface to interact with such a model, using a small display. The user controls the robot by gesturing with a single hand. The gestures are sensed using an instrumented glove and a 6 DOF (degree of freedom) magnetic tracker mounted on the user´s hand. The interface was tested using two different tasks: a 6 DOF manipulation task and a visualization task which was primarily 3 DOF. For comparison, a simple, 2 DOF input device was also implemented. It was found that the 6 DOF input device was clearly superior for the manipulation task, but results were inconclusive for the visualization task.
Keywords
data visualisation; helmet mounted displays; mobile robots; robot vision; user interfaces; wearable computers; 2-DOF input device; 3-DOF visualization task; 6-DOF magnetic tracker; 6-DOF manipulation task; degree of freedom; helmet mounted displays; instrumented glove; mobile robot control; radio bandwidth; robot environment; small display; user interface; video feedback; wearable computer; Application software; Computer displays; Computer security; Information security; Mobile robots; Robot control; Robot sensing systems; User interfaces; Visualization; Wearable computers;
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.2003.1249693
Filename
1249693
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