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Scheduling algorithms for optimal robot cell coordination - a comparison

Avenir Kobetski, Domenico Spensieri, Martin Fabian

Year
2006
Citations
13

Abstract

Flexibility is the keyword in the modern industrial world. Automatic generation of collision- and blocking free, time optimal schedules for industrial robot cells is thus motivated. While a lot of attention has been paid to the control of industrial systems, as well as to the development of general optimization algorithms, there is still a need to properly combine these two research areas. This paper discusses two scheduling algorithms, designed for industrial robot cells, in terms of performance. A novel heuristic to an A*-based algorithm, operating on discrete event systems, is proposed and benchmarked against the well-known MILP algorithm

Keywords

Computer scienceRobotScheduling (production processes)Flexibility (engineering)Job shop schedulingIndustrial robotAlgorithmHeuristicDynamic priority schedulingDistributed computing

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