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A versatile vision system for micromanipulation tasks

Axel Bürkle, Ferdinand Schmoeckel, Heinz Wörn, B.P. Amavasai, Fabio Caparrelli, J.R. Travis

Year
2002
Citations
13

Abstract

Semi-autonomous and fully autonomous assembly and manipulation of micro-objects is a complex process. To this purpose, flexible microrobot systems have been designed and developed. These robots are generally required to operate in a wide range of environments to perform tasks such as microassembly, cell manipulation and particle grasping. As part of the MINIMAN project, a flexible microrobot system has been developed which can operate under a light microscope as well as in the chamber of a scanning electron microscope (SEM). This system is highly flexible, reconfigurable and uses a wide range of sensor information (force, tactile and vision) in a closed-loop controlled strategy. The paper presents an overview of the vision system and its architecture for vision-controlled micromanipulation. The different modules of the vision system and the communication interface to the control system are herewith described in detail.

Keywords

Computer scienceProcess (computing)Machine visionRobotArtificial intelligenceComputer vision

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