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Implementing Autonomous Navigation of a Mobile Robot Integrating Localization, Obstacle Avoidance and Path Planning

Noh Sung Woo, Nak Yong Ko, Taegyun Kim

Year
2011
Citations
3

Abstract

This paper presents an implementation of autonomous navigation of a mobile robot indoors. It explains methods for map building, localization, obstacle avoidance and path planning. Geometric map is used for localization and path planning. The localization method calculates sensor data based on the map for comparison with the real sensor data. Monte Carlo Localization(MCL) method is adopted for estimation of the robot position. For obstacle avoidance, an artificial potential field generates repulsive and attractive force to the robot. Dijkstra algorithm plans the shortest distance path from a start position to a goal point. The methods integrate into autonomous navigation method and implemented for indoor navigation. The experiments show that the proposed method works well for safe autonomous navigation.

Keywords

Obstacle avoidanceMobile robotMotion planningMonte Carlo localizationMobile robot navigationDijkstra's algorithmComputer scienceArtificial intelligenceObstacleShortest path problem

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