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An Integrated System for Autonomous Search and Track with a small Unmanned Aerial Vehicle

Anjan Chakrabarty, Robert E. Morris, Xavier Bouyssounouse, Rusty Hunt

Year
2017
Citations
12

Abstract

This article presents a framework for searching, detecting, and tracking an object of interest with a small unmanned aerial vehicle (sUAV). The vehicle is given an area to search for an object of interest. Once the object is detected, the sUAV follows the target while maintaining a fixed distance and centered on its image plane. This paper describes an architecture for integrating autonomy capabilities for search and track for sUAVs. The system has been implemented in the Robot Operating System (ROS) framework using the Parrot ARDrone platform. In this paper we present our technical approach, the system architecture and demonstrate the principles of the approach in a simulation environment and indoor flight tests.

Keywords

Track (disk drive)Computer scienceRemotely operated underwater vehicleSearch and rescueAeronauticsArtificial intelligenceMobile robotReal-time computingAerospace engineeringEngineering

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