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Stair climbing control of 4-degrees-of-freedom tracked vehicle based on internal sensors., , и . SSRR, стр. 112-117. IEEE, (2016)Stability discriminant of a tracked vehicle to traverse stairs., и . SSRR, стр. 100-105. IEEE, (2016)Improvement of the Odometry Accuracy of a Crawler Vehicle with Consideration of Slippage., , и . ICRA, стр. 2752-2757. IEEE, (2007)Neonavigation meta-package: 2-D/3-DOF seamless global-local planner for ROS - Development and field test on the representative offshore oil plant., , , и . SSRR, стр. 86-91. IEEE, (2016)Path following control for tracked vehicles based on slip-compensating odometry., , , и . IROS, стр. 2871-2876. IEEE, (2007)A Volunteer Classification Method for Disaster Recovery., и . 3PGCIC, стр. 436-439. IEEE Computer Society, (2010)A Study on Design of Disaster Information - A Proposal of Coordinate System for Supply and Demand on Disaster Recovery., и . 3PGCIC, стр. 303-306. IEEE Computer Society, (2011)Design and Development of Explosion-Proof Tracked Vehicle for Inspection of Offshore Oil Plant., , , и . FSR, том 5 из Springer Proceedings in Advanced Robotics, стр. 531-544. Springer, (2017)Development of a Networked Robotic System for Disaster Mitigation, -Navigation System based on 3D Geometry Acquisition., , , , , и . IROS, стр. 4821-4826. IEEE, (2006)The Effectiveness of Self-Recommending Agents in Advancing Purchase Behavior Steps in Retail Marketing., , , , , , , и . HAI, стр. 209-217. ACM, (2021)