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Practical path planning and obstacle avoidance for autonomous mowing

Navid Nourani‐Vatani, Michael Bosse, Jonathan Roberts, Matthew Dunbabin

Year
2006
Citations
17
Access
Open access

Abstract

There is a need for systems which can autonomously perform coverage tasks on large outdoor areas. Unfortunately, the state-of-the-art is to use GPS based localization, which is not suitable for precise operations near trees and other obstructions. In this paper we present a robotic platform for autonomous coverage tasks. The system architecture integrates laser based localization and mapping using the Atlas Framework with Rapidly-Exploring Random Trees path planning and Virtual Force Field obstacle avoidance. We demonstrate the performance of the system in simulation as well as with real world experiments.

Keywords

Motion planningObstacle avoidanceObstacleComputer scienceCollision avoidanceGlobal Positioning SystemArchitectureMobile robotArtificial intelligenceField (mathematics)

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