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Dynamic generation and execution of human aware navigation plans

Published: 10 May 2010 Publication History

Abstract

A robot moving in the presence of humans is highly constrained by the dynamic environment and the need to comply with human safety, preferences, cognition and actions. The dynamic nature of the environment should be taken into account at planning time and must be allowed for by flexible plan execution, to produce safe, efficient and legible robot behavior. Moreover, when the space in which humans and robots interact is small, additional measures must be taken to allow efficient robot movement. This paper extends an existing human-aware navigation planner with mechanisms to account for movement of humans and confined areas.

Reference

[1]
E. A. Sisbot, L. F. Marin-Urias, R. Alami, and T. Simeon. Human aware mobile robot motion planner. IEEE Transactions on Robotics, 23:874--883, 2007.

Cited By

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  • (2013)Social Navigation - Identifying Robot Navigation Patterns in a Path Crossing ScenarioProceedings of the 5th International Conference on Social Robotics - Volume 823910.5555/2688717.2688728(84-93)Online publication date: 27-Oct-2013
  • (2013)Be a robot!Proceedings of the 8th ACM/IEEE international conference on Human-robot interaction10.5555/2447556.2447627(181-182)Online publication date: 3-Mar-2013
  • (2010)Towards opportunistic action selection in human-robot cooperationProceedings of the 33rd annual German conference on Advances in artificial intelligence10.5555/1882150.1882199(374-381)Online publication date: 21-Sep-2010

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Published In

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AAMAS '10: Proceedings of the 9th International Conference on Autonomous Agents and Multiagent Systems: volume 1 - Volume 1
May 2010
1578 pages
ISBN:9780982657119

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  • IFAAMAS

In-Cooperation

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International Foundation for Autonomous Agents and Multiagent Systems

Richland, SC

Publication History

Published: 10 May 2010

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Author Tags

  1. human-robot/agent interaction
  2. reactive vs deliberative approaches
  3. robot planning (including action and motion planning)

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  • Research-article

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AAMAS '10
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Overall Acceptance Rate 1,155 of 5,036 submissions, 23%

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Cited By

View all
  • (2013)Social Navigation - Identifying Robot Navigation Patterns in a Path Crossing ScenarioProceedings of the 5th International Conference on Social Robotics - Volume 823910.5555/2688717.2688728(84-93)Online publication date: 27-Oct-2013
  • (2013)Be a robot!Proceedings of the 8th ACM/IEEE international conference on Human-robot interaction10.5555/2447556.2447627(181-182)Online publication date: 3-Mar-2013
  • (2010)Towards opportunistic action selection in human-robot cooperationProceedings of the 33rd annual German conference on Advances in artificial intelligence10.5555/1882150.1882199(374-381)Online publication date: 21-Sep-2010

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