A dynamic navigation model for unmanned aircraft systems and an application to autonomous front-on environmental sensing and photography using low-cost sensor systems


Autoria(s): Cooper, Andrew James; Redman, Chelsea Anne; Stoneham, David Mark; Gonzalez, Luis Felipe; Etse, Victor Kwesi
Data(s)

28/08/2015

Resumo

This paper presents an unmanned aircraft system (UAS) that uses a probabilistic model for autonomous front-on environmental sensing or photography of a target. The system is based on low-cost and readily-available sensor systems in dynamic environments and with the general intent of improving the capabilities of dynamic waypoint-based navigation systems for a low-cost UAS. The behavioural dynamics of target movement for the design of a Kalman filter and Markov model-based prediction algorithm are included. Geometrical concepts and the Haversine formula are applied to the maximum likelihood case in order to make a prediction regarding a future state of a target, thus delivering a new waypoint for autonomous navigation. The results of the application to aerial filming with low-cost UAS are presented, achieving the desired goal of maintained front-on perspective without significant constraint to the route or pace of target movement.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/87086/

Publicador

M D P I AG

Relação

http://eprints.qut.edu.au/87086/1/sensors-15-21537.pdf

DOI:10.3390/s150921537

Cooper, Andrew James, Redman, Chelsea Anne, Stoneham, David Mark, Gonzalez, Luis Felipe, & Etse, Victor Kwesi (2015) A dynamic navigation model for unmanned aircraft systems and an application to autonomous front-on environmental sensing and photography using low-cost sensor systems. Sensors, 15(9), pp. 21537-21553.

Direitos

Copyright 2015 please consult author[s]

Fonte

Australian Research Centre for Aerospace Automation; School of Electrical Engineering & Computer Science; Institute for Future Environments; Science & Engineering Faculty

Palavras-Chave #090106 Flight Dynamics #090602 Control Systems Robotics and Automation #Dynamic Navigation Model #Aerial Photography #Environmental Sensing #Low-Cost Sensor #UAV #drones #Unmanned Aerial Vehicles
Tipo

Journal Article