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A HOLONIC FAULT TOLERANT MANUFACTURING PLATFORM WITH MULTIPLE ROBOTS

Theodor Borangiu, Florin Anton, Anamaria Dogar

Year
2006
Citations
7

Abstract

Abstract: To be competitive, manufacturing should adapt to changing conditions existing in the market. Besides the market-based challenges, manufacturing firms also need constantly to adapt to newly developed processes and technologies and to rapidly changing environmental protection regulations. Modern automated manufacturing systems need robotized material-conditioning systems capable of moving materials efficiently throughout the entire production area. The objective of this paper is to describe the design, implementing, testing and validation of a holonic, fault-tolerant manufacturing control platform integrating robots with Visual Guidance (VG) for on demand material conditioning and AVI.

Keywords

RobotComputer scienceFault toleranceMobile robotEmbedded systemDistributed computingArtificial intelligence

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