4.6 Article

Localization System for Lightweight Unmanned Aerial Vehicles in Inspection Tasks

Journal

SENSORS
Volume 21, Issue 17, Pages -

Publisher

MDPI
DOI: 10.3390/s21175937

Keywords

Unmanned Aerial Vehicles; localization; infrastructure inspection

Funding

  1. H2020 RESIST project - European Commission [H2020-MG-2017-769066]
  2. H2020 PILOTING project - European Commission [H2020-ICT-2019-2-871542]
  3. ARTIC project - Spanish Ministerio de Economia, Industria, y Competitividad [RTI2018-102224-B-I00]

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This paper presents a UAV localization system designed for infrastructure inspection, combining multiple stereo cameras with a robotic total station to provide full-state estimation. The system can align and fuse all sensor measurements in real-time, meeting the challenging flight requirements of UAVs in infrastructure inspection scenarios.
This paper presents a localization system for Unmanned Aerial Vehicles (UAVs) especially designed to be used in infrastructure inspection, where the UAVs have to fly in challenging conditions, such as relatively high altitude (e.g., 15 m), eventually with poor or absent GNSS (Global Navigation Satellite System) signal reception, or the need for a BVLOS (Beyond Visual Line of Sight) operation in some periods. In addition, these infrastructure inspection applications impose the following requirements for the localization system: defect traceability, accuracy, reliability, and fault tolerance. Our system proposes a lightweight solution combining multiple stereo cameras with a robotic total station to comply with these requirements, providing full-state estimation (i.e., position, orientation, and linear and angular velocities) in a fixed and time-persistent reference frame. Moreover, the system can align and fuse all sensor measurements in real-time at high frequency. We have integrated this localization system in our aerial platform, and we have tested its performance for inspection in a real-world viaduct scenario, where the UAV has to operate with poor or absent GNSS signal at high altitude.

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