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dc.creatorBazzan, Ana Lúcia Cetertichpt_BR
dc.creatorFerreira Júnior, Paulo Robertopt_BR
dc.creatorBoffo, F. S.pt_BR
dc.date.accessioned2010-10-06T13:10:52Z
dc.date.available2010-10-06T13:10:52Z
dc.date.issued2007
dc.identifier.citationFERREIRA JÚNIOR, Paulo Roberto ; BOFFO, F. S. ; BAZZAN, Ana Lúcia Cetertich . A Self-Organized algorithm for distributed task allocation in complex scenarios.. In: Workshop on Coordination and Control in Massively Multi-Agent Systems (CCMMS), 2007, Honolulu, Havaii. Proceedings of the Workshp on Coordination and Control in Massively Multi-Agent Systems (CCMMS). p. 19-33.pt_BR
dc.identifier.urihttp://guaiaca.ufpel.edu.br/handle/123456789/88
dc.description.abstractThis paper addresses distributed task allocation in complex scenarios modeled using the distributed constraint optimization problem (DCOP) formalism. We see a complex scenario in distributed task alloca- tion as the one in which small instances formalized as a DCOP generate large problems with exponentially growing parameters. Such scenarios are becoming more and more ubiquitous in real-world applications. We propose and evaluate a novel self-organized algorithm for distributed task allocation based on theoretical models of division of labor in social insect colonies, called Swarm-GAP. Our algorithm uses a probabilistic decision model, based on the social insects tendency of performing certain tasks. Swarm-GAP was experimented in an abstract centralized simulation en- vironment. We show that Swarm-GAP achieves similar results as other recent proposed algorithm with a dramatic reduction in communication and computation. Thus, our approach is highly scalable regarding both the number of agents and tasks.pt_BR
dc.language.isoen_USpt_BR
dc.subjectDistributed task allocationpt_BR
dc.subjectGAPpt_BR
dc.subjectDCOPpt_BR
dc.subjectMultiagent systemspt_BR
dc.titleA Self-Organized Algorithm for Distributed Task Allocation in Complex Scenarios..pt_BR
dc.typeconferenceObjectpt_BR


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