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Circle List-Based Obstacle Avoidance for Omni-directional Mobile Robots in Dynamic Environments

Hong-Seok Cheon, Byung-Kook Kim

Year
2011
Citations
3
Access
Open access

Abstract

An effective method of obstacle avoidance for omni-directional mobile robots is proposed to avoid moving obstacles in dynamic environments. Our method uses the concept of circle lists which represent the trajectories of robot and obstacles. This method predicts not only collision position but also collision time, and hence it enables the robot avoiding the most urgent collision first. In order to avoid obstacles, our method uses artificial repulsive force and contraction force. Simulation results show that the robot could avoid obstacles effectively.

Keywords

ObstacleCollision avoidanceMobile robotRobotObstacle avoidanceCollisionComputer sciencePosition (finance)Artificial intelligenceTrajectory

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