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Titlebook: Engineering Societies in the Agents World V; 5th International Wo Marie-Pierre Gleizes,Andrea Omicini,Franco Zambone Conference proceedings

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https://doi.org/10.1007/978-3-8349-8865-2owledge is then used in the semantic discovery of the multi-agent systems with which to co-operate. Since different multi-agent systems may use different ontologies, an ontology translation service is also defined at the federation level.
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https://doi.org/10.1007/978-1-349-06774-9SONIA methodology (Set of mOdels for a Natural Identification of Agents) in an attempt to solve these problems. Based on a generic problem-independent analysis and a bottom-up agent identification process, SONIA naturally outputs an agent-based system.
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Semantically Federating Multi-agent Organizationsowledge is then used in the semantic discovery of the multi-agent systems with which to co-operate. Since different multi-agent systems may use different ontologies, an ontology translation service is also defined at the federation level.
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SONIA: A Methodology for Natural Agent DevelopmentSONIA methodology (Set of mOdels for a Natural Identification of Agents) in an attempt to solve these problems. Based on a generic problem-independent analysis and a bottom-up agent identification process, SONIA naturally outputs an agent-based system.
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Modelling Flexible Social Commitments and Their Enforcementcompliance with adopted commitments. In particular, we present a model of flexible social commitments to which sanctions are attached, and where the enforcement of sanctions act as a social control mechanism for the satisfaction of commitments.
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Strategies for Distributing Goals in a Team of Cooperative Agents for each precise goal, the team may define several strategies which are orders between agents representing, for instance, their relative competence or their relative cost. This paper also shows how to combine strategies. The method used here assumes an order of priority between strategies.
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From Self-Organized Systems to Collective Problem Solvingo cases of how natural self-organized systems can be transposed to engineer societies of agents that collectively solve problems. It presents two original self organized models conceived in cooperation with biologists and details how transposition principles have been used to design collective problem solving systems.
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