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UAV based target finding and tracking in GPS-denied and cluttered environments

Fernando Vanegas, Duncan Campbell, Markus Eich, Felipé Gonzalez

Year
2016
Citations
27

Abstract

In this paper we describe and flight test a novel system architecture for low cost muti-rotor unmanned aerial vehicles (UAVs) for searching, tracking and following a ground target. The UAV uses only on-board sensors for localisation within a GPS-denied space with obstacles. This mission is formulated as a Partially Observable Markov Decision Process (POMDP) and uses a modular framework that runs on the Robotic Operating System (ROS). This system computes a policy for executing actions instead of way-points to navigate and avoid obstacles. Results indicate that the system is robust to overcome uncertainties in localisation of both, the aircraft and the target and avoids collisions with the obstacles.

Keywords

Global Positioning SystemComputer scienceTracking (education)Computer visionRadar trackerArtificial intelligenceReal-time computingRadarTelecommunications

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