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Biologically-inspired robotics vision monte-carlo localization in the outdoor environment.

, and . IROS, page 1723-1730. IEEE, (2007)

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Rapid Biologically-Inspired Scene Classification Using Features Shared with Visual Attention., and . IEEE Trans. Pattern Anal. Mach. Intell., 29 (2): 300-312 (2007)Autonomous Mobile Robot Localization and Navigation Using a Hierarchical Map Representation Primarily Guided by Vision., , and . J. Field Robotics, 31 (3): 408-440 (2014)Centralized server environment for educational robotics., , , and . IROS, page 2334-2340. IEEE, (2009)Mobile robot vision navigation & localization using Gist and Saliency., , and . IROS, page 4147-4154. IEEE, (2010)Beobot 2.0: Cluster architecture for mobile robotics., , , and . J. Field Robotics, 28 (2): 278-302 (2011)Storing and recalling information for vision localization., and . ICRA, page 1848-1855. IEEE, (2008)Biologically-inspired robotics vision monte-carlo localization in the outdoor environment., and . IROS, page 1723-1730. IEEE, (2007)A System for Assisting the Visually Impaired in Localization and Grasp of Desired Objects., , , , , , and . ECCV Workshops (3), volume 8927 of Lecture Notes in Computer Science, page 643-657. Springer, (2014)Mobile robot navigation system in outdoor pedestrian environment using vision-based road recognition., , and . ICRA, page 564-571. IEEE, (2013)Entity and Event Topic Extraction from Podcast Episode Title and Description Using Entity Linking., and . WWW (Companion Volume), page 768-772. ACM, (2023)