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Titlebook: Intelligent Agents V: Agents Theories, Architectures, and Languages; 5th International Wo Jörg P. Müller,Anand S. Rao,Munindar P. Singh Con

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A Model Checking Algorithm for Multi-agent Systemsthis paper we show how this technique can be lifted to be applicable to multiagent systems. Our approach allows us to reuse the technology and tools developed in model checking, to design and verify multiagent systems in a modular and incremental way, and also to have a very efficient model checking
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Compositional Verification of Multi-agent Systems in Temporal Multi-epistemic Logichis paper we explore the use of a temporal epistemic logic to formalize the process of verification of compositional multi-agent systems. The specification of a system, its properties and their proofs are of a compositional nature, and are formalized within a compositional temporal logic: Temporal M
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Emergent Mental Attitudes in Layered Agentsectures. This requires the formal specification of computational aspects by reasonable software-engineering approaches. Complementary, this also requires carefully investigating the practical (and cognitive) relevance of normative presumptions which are theoretically ascribed to the “mental” states
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The Right Agent (Architecture) to Do the Right Thingradigms: There are deliberative agents, reactive agents, interacting agents, hybrid agents, layered agents, believable agents, mobile agents, software agents, softbots — the list could well be prolonged. Also, within each paradigm, the user can select between different architectures and systems, mak
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Representing Abstract Agent Architectures there have been numerous different architectures developed, ranging from purely . or purely ., through to . and . varieties, such systems have largely been developed using different frameworks, and often using ad hoc methods, thus making both comparison between architectures and the development of
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HEIR - A Non-hierarchical Hybrid Architecture for Intelligent Robotslian environments. In this paper a novel architecture is presented, which differs from the typical approaches from two main points of view: it is non hierarchical and it introduces an additional level of representation and reasoning based on image based, iconic descriptions. The paper will show how
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Task Decomposition and Dynamic Role Assignment for Real - Time Strategic Teamworkthis paper, we introduce . domains, as time-critical environments in which agents act autonomously with limited communication, but they can periodically synchronize in a full-communication setting. We present a team agent structure that allows for an agent to capture and reason about team agreements
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