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Software Engineering for Multi-Agent Systems V [electronic resource] : Research Issues and Practical Applications / edited by Ricardo Choren, Alessandro Garcia, Carlos Lucena, Alexander Romanovsky.

Contributor(s): Choren, Ricardo [editor.] | Garcia, Alessandro [editor.] | Lucena, Carlos [editor.] | Romanovsky, Alexander [editor.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Programming and Software Engineering: 4408Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2007Edition: 1st ed. 2007.Description: XII, 236 p. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783540731313.Subject(s): Software engineering | Artificial intelligence | Computer networks  | Computer programming | User interfaces (Computer systems) | Human-computer interaction | Software Engineering | Artificial Intelligence | Computer Communication Networks | Programming Techniques | User Interfaces and Human Computer InteractionAdditional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification: 005.1 Online resources: Click here to access online
Contents:
Fault Tolerance -- On Fault Tolerance in Law-Governed Multi-agent Systems -- On Developing Open Mobile Fault Tolerant Agent Systems -- Exception Handling and Diagnosis -- Challenges for Exception Handling in Multi-Agent Systems -- Exception Handling in Context-Aware Agent Systems: A Case Study -- Exception Diagnosis Architecture for Open Multi-Agent Systems -- Security and Trust -- SMASH: Modular Security for Mobile Agents -- Reasoning About Willingness in Networks of Agents -- Verification and Validation -- Towards Compliance of Agents in Open Multi-agent Systems -- Towards an Ontological Account of Agent-Oriented Goals -- Early Development Phases and Software Reuse -- Improving Multi-Agent Architectural Design -- Objects as Actors Assuming Roles in the Environment -- A Framework for Situated Multiagent Systems.
In: Springer Nature eBookSummary: Software is present in every aspect of our lives, pushing us inevitably towards a world of distributed computing systems. Agent concepts hold great promise for responding to the new realities of large-scale distributed systems. Multi-agent systems (MASs) and their underlying theories provide a more natural support for ensuring important agent properties, such as autonomy, environment heterogeneity, organization and openness. Nevertheless, a software agent is an inherently more complex abstraction, posing new challenges to software engineering. Without adequate development te- niques and methods, MASs will not be sufficiently dependable, thus making their wide adoption by the industry more difficult. The dependability of a computing system is its ability to deliver a service that can be justifiably trusted. It is a singular time for dependable distributed systems, since the traditional models we use to express the relationships between a computational process and its environment are changing from the standard deterministic types into ones that are more distributed and dynamic. This served as a guiding principle for planning the Software Engineering for Large-Scale Multi-Agent Systems (SELMAS 2006) workshop, starting with selecting the theme, "building dependable multi-agent systems." It acknowledges our belief in the increasingly vital role dependability plays as an essential element of MAS development.
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Fault Tolerance -- On Fault Tolerance in Law-Governed Multi-agent Systems -- On Developing Open Mobile Fault Tolerant Agent Systems -- Exception Handling and Diagnosis -- Challenges for Exception Handling in Multi-Agent Systems -- Exception Handling in Context-Aware Agent Systems: A Case Study -- Exception Diagnosis Architecture for Open Multi-Agent Systems -- Security and Trust -- SMASH: Modular Security for Mobile Agents -- Reasoning About Willingness in Networks of Agents -- Verification and Validation -- Towards Compliance of Agents in Open Multi-agent Systems -- Towards an Ontological Account of Agent-Oriented Goals -- Early Development Phases and Software Reuse -- Improving Multi-Agent Architectural Design -- Objects as Actors Assuming Roles in the Environment -- A Framework for Situated Multiagent Systems.

Software is present in every aspect of our lives, pushing us inevitably towards a world of distributed computing systems. Agent concepts hold great promise for responding to the new realities of large-scale distributed systems. Multi-agent systems (MASs) and their underlying theories provide a more natural support for ensuring important agent properties, such as autonomy, environment heterogeneity, organization and openness. Nevertheless, a software agent is an inherently more complex abstraction, posing new challenges to software engineering. Without adequate development te- niques and methods, MASs will not be sufficiently dependable, thus making their wide adoption by the industry more difficult. The dependability of a computing system is its ability to deliver a service that can be justifiably trusted. It is a singular time for dependable distributed systems, since the traditional models we use to express the relationships between a computational process and its environment are changing from the standard deterministic types into ones that are more distributed and dynamic. This served as a guiding principle for planning the Software Engineering for Large-Scale Multi-Agent Systems (SELMAS 2006) workshop, starting with selecting the theme, "building dependable multi-agent systems." It acknowledges our belief in the increasingly vital role dependability plays as an essential element of MAS development.

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