DocumentCode :
1896297
Title :
Combination of vision servoing techniques and VR-based simulation for semi-autonomous microassembly workstation
Author :
Cassier, Claude ; Ferreira, Antoine ; Hirai, Shigeoki
Author_Institution :
Lab. de Vision et Robotique, Orleans Univ., Bourges, France
Volume :
2
fYear :
2002
fDate :
2002
Firstpage :
1501
Abstract :
Remote control of microrobotic workstations dedicated to microassembly of hybrid MEMS consisting of several separate components are necessary. The operator controls the motion of the microrobots remotely on the motion level. In the future view of industrial applications, these approaches are not suitable. We proposed a concept of a desktop micro device factory for task-level remote control using the combination of vision servoing techniques and virtual reality (VR) environment. It is composed of two micromanipulators equipped with micro tools operating under a light microscope. First, we present the cooperation control strategy of the micro handling operation under vision-based position/force control integrating a sensor fusion framework approach. A guiding-system based on virtual micro-world exactly reconstructed from the CAD-CAM databases of the real environment being considered is presented for the imprecisely calibrated micro world. Finally, some experimental results of microassembly tasks performed on millimeter-sized components are provided.
Keywords :
force control; image sensors; microactuators; microassembling; micromanipulators; micropositioning; position control; telerobotics; virtual reality; MEMS; VR-based simulation; cooperation control strategy; desktop micro device factory; guiding-system based; hybrid MEMS; micro handling operation; micro tools; microelectromechanical systems; micromanipulators; microrobotic workstations; millimeter-sized components; semi-autonomous microassembly workstation; sensor fusion framework; task-level remote control; virtual reality environment; vision servoing techniques; vision-based position/force control; Force control; Microassembly; Micromanipulators; Micromechanical devices; Microscopy; Motion control; Production facilities; Sensor fusion; Virtual reality; Workstations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Robotics and Automation, 2002. Proceedings. ICRA '02. IEEE International Conference on
Print_ISBN :
0-7803-7272-7
Type :
conf
DOI :
10.1109/ROBOT.2002.1014756
Filename :
1014756
Link To Document :
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