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Documents authored by Timm, Ingo J.


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Reflection and Norms: Towards a Model for Dynamic Adaptation for MAS

Authors: Ingo J. Timm, Andreas D. Lattner, and Rene Schumann

Published in: Dagstuhl Seminar Proceedings, Volume 9121, Normative Multi-Agent Systems (2009)


Abstract
The design of self-organizing systems and particular multiagent systems (MAS) is a non trivial task. On the one hand the particular system should show a dynamic behavior according to its environment, to gain a central advantage of distributed systems, on the other hand it has to act on behalf of its user and the final results have to possess acceptable quality. Especially the quality of the overall system's behavior can become a critical issue, if the subsystems have their own objectives they have to optimize. In this paper we present a methodology that can be integrated into MAS for adapting their behavior allowing local optimization while respecting an acceptable level of the system's global goals.

Cite as

Ingo J. Timm, Andreas D. Lattner, and Rene Schumann. Reflection and Norms: Towards a Model for Dynamic Adaptation for MAS. In Normative Multi-Agent Systems. Dagstuhl Seminar Proceedings, Volume 9121, pp. 1-15, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2009)


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@InProceedings{timm_et_al:DagSemProc.09121.26,
  author =	{Timm, Ingo J. and Lattner, Andreas D. and Schumann, Rene},
  title =	{{Reflection and Norms: Towards a Model for Dynamic Adaptation for MAS}},
  booktitle =	{Normative Multi-Agent Systems},
  pages =	{1--15},
  series =	{Dagstuhl Seminar Proceedings (DagSemProc)},
  ISSN =	{1862-4405},
  year =	{2009},
  volume =	{9121},
  editor =	{Guido Boella and Pablo Noriega and Gabriella Pigozzi and Harko Verhagen},
  publisher =	{Schloss Dagstuhl -- Leibniz-Zentrum f{\"u}r Informatik},
  address =	{Dagstuhl, Germany},
  URL =		{https://drops.dagstuhl.de/entities/document/10.4230/DagSemProc.09121.26},
  URN =		{urn:nbn:de:0030-drops-19174},
  doi =		{10.4230/DagSemProc.09121.26},
  annote =	{Keywords: Balancing autonomy, multiagent simulation, manufacturing}
}
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