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Teleworkbench: validating robot programs from simulation to prototyping with minirobots.

, , , and . AAMAS, page 1303-1304. IFAAMAS, (2011)

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FaceBots: Steps Towards Enhanced Long-Term Human-Robot Interaction by Utilizing and Publishing Online Social Information, , , , , , , and . CoRR, (2009)FaceBots: Steps towards enhanced long-term human-robot interaction by utilizing and publishing online social information., , , , , , , , and . Paladyn, 1 (3): 169-178 (2010)Effect of global position information in unknown world exploration - A case study using the Teleworkbench., , , , and . Robotics and Autonomous Systems, 57 (10): 1042-1047 (2009)Modified Local Navigation Strategy for Unknown Environment Exploration., , , , and . ICINCO-RA (1), page 171-176. INSTICC Press, (2008)Teletesting: Path planning experimentation and benchmarking in the Teleworkbench., , , , , and . ECMR, page 343-348. IEEE, (2013)Scalable and flexible vision-based multi-robot tracking system., , , and . ISIC, page 19-24. IEEE, (2012)Teleworkbench: A Teleoperated Platform for Multi-Robot Experiments., , and . AMiRE, page 49-54. Springer, (2005)Analysis and design of human-robot swarm interaction in firefighting., , , and . RO-MAN, page 255-260. IEEE, (2008)Teleworkbench: An Analysis Tool for Multi-Robotic Experiments., , , and . BICC, volume 216 of IFIP, page 179-188. Springer, (2006)MPEG-4-Based Interactive Visualization as an Analysis Tool for Experiments in Robotics., , , and . MSV, page 186-192. CSREA Press, (2006)