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Dagstuhl-Seminar 10081

Cognitive Robotics

( 21. Feb – 26. Feb, 2010 )

(zum Vergrößern in der Bildmitte klicken)

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Bitte benutzen Sie folgende Kurz-Url zum Verlinken dieser Seite: https://www.dagstuhl.de/10081

Organisatoren

Kontakt


Programm

Summary

Research in robotics has traditionally emphasized low-level sensing and control tasks including sensory processing, path planning, and manipulator design and control. Research in Cognitive Robotics, on the other hand, emphasizes those cognitive functions that enable robots and software agents to reason, act and perceive in changing, incompletely known, and unpredictable environments. Such robots must, for example, be able to reason about goals, to choose actions and to focus on patterns, objects and events according to the task execution and the cognitive states of other agents, by taking into account time, resources, and the consequences of their decisions. In short, cognitive robotics is concerned with integrating reasoning, perception, and action within a uniform theoretical and implementation framework.

The term cognitive robotics and the vision that knowledge representation and reasoning plays a fundamental role in the design of cognitive robots was first laid out by the late Ray Reiter in his lecture on receiving the Research Excellence Award by the International Joint Conference on Artificial Intelligence (IJCAI) in 1993. Since 1998, biannual Cognitive Robotics workshop with Dagstuhl being the seventh in this series.

While the earlier workshops were largely a forum for presenting state-of-the-art research results, the purpose of the Dagstuhl event was to broaden the view and bring together people from various disciplines to shed new light on the issues in cognitive robotics. In this respect we were very fortunate to have participants from areas such as robotics, machine learning, cognitive vision, computational neuroscience, and knowledge representation and reasoning.

Given the diversity of the group, we spent the first day with tutorial-style presentation, starting out with an overview of Cognitive Robotics in the sense of Ray Reiter's vision by Gerhard Lakemeyer. This was followed by presentations on Computational Neuroscience by Laurent Itti, Planning and Execution Monitoring by Brian Williams, Probabilistic Reasoning by Eyal Amir, Cognitive Vision by Jim Little, and Human-Robot Interaction by Geert-Jan Kruijff. The rest of the Workshop consisted of research presentations, a panel, and three breakout discussion groups on the following topics: the nature of perception, symbolic and numerical uncertainty, and the role of automated reasoning.

The Proceedings collected here represent submissions from all but 2 of the participants at the Workshop in the order they were given. In some cases we have short abstracts of the talks, and in others, full research papers. We thank the participants and the copyright holders for permission to use these papers.


Teilnehmer
  • Eyal Amir (University of Illinois - Urbana-Champaign, US)
  • Daniel Beck (RWTH Aachen, DE)
  • Sven Behnke (Universität Bonn, DE) [dblp]
  • Anna Belardinelli (Universität Bielefeld, DE)
  • Andrew Calway (University of Bristol, GB)
  • Andrea Carbone (Sapienza University of Rome, IT)
  • Anthony Cohn (University of Leeds, GB) [dblp]
  • Patrick Doherty (Linköping University, SE) [dblp]
  • Esra Erdem (Sabanci University - Istanbul, TR) [dblp]
  • Alexander Ferrein (University of Cape Town, ZA) [dblp]
  • Alberto Finzi (University of Naples, IT) [dblp]
  • Christian Freksa (Universität Bremen, DE) [dblp]
  • Malik Ghallab (LAAS - Toulouse, FR) [dblp]
  • Mario Gianni (Università Cattolica del Sacro Cuore, IT)
  • Shyamanta Moni Hazarika (Universität Bremen, DE) [dblp]
  • Fredrik Heintz (Linköping University, SE) [dblp]
  • Vaclav Hlavac (Czech Technical University, CZ) [dblp]
  • Laurent Itti (USC - Los Angeles, US)
  • Sven Koenig (University of Southern California - Los Angeles, US) [dblp]
  • Geert-Jan M. Kruijff (DFKI - Saarbrücken, DE)
  • Gerhard Lakemeyer (RWTH Aachen, DE) [dblp]
  • Matteo Leonetti (Sapienza University of Rome, IT)
  • Yves Lesperance (York University - Toronto, CA) [dblp]
  • Hector Levesque (University of Toronto, CA) [dblp]
  • Jim Little (University of British Columbia - Vancouver, CA) [dblp]
  • Yongmei Liu (Sun Yat-sen University - Guangzhou, CN) [dblp]
  • Letizia Marchegiani (Sapienza University of Rome, IT)
  • Leora Morgenstern (New York University, US) [dblp]
  • Bernhard Nebel (Universität Freiburg, DE) [dblp]
  • Federico Pecora (University of Örebro, SE) [dblp]
  • Fiora Pirri (Sapienza University of Rome, IT) [dblp]
  • Matia Pizzoli (Sapienza University of Rome, IT)
  • Alessandro Rudi (Sapienza University of Rome, IT) [dblp]
  • Claude Sammut (UNSW - Sydney, AU) [dblp]
  • Stefan Schiffer (RWTH Aachen, DE) [dblp]
  • Stuart C. Shapiro (SUNY - Buffalo, US)
  • Frederic Siepmann (Universität Bielefeld, DE)
  • Greg Trafton (Naval Research - Washington, US)
  • Sven Wachsmuth (Universität Bielefeld, DE)
  • Brian C. Williams (MIT - Cambridge, US) [dblp]

Verwandte Seminare
  • Dagstuhl-Seminar 22391: Cognitive Robotics (2022-09-25 - 2022-09-30) (Details)

Klassifikation
  • Artificial Intelligence
  • Robotics

Schlagworte
  • Cognitive robotics
  • knowledge representation and reasoning
  • machine learning
  • cognitive science
  • cognitive vision