Compensation of unmodeled aircraft dynamics in airborne inspection of linear infrastructure assets


Autoria(s): Bruggemann, Troy S.; Ford, Jason J.
Data(s)

01/11/2011

Resumo

Fixed-wing aircraft equipped with downward pointing cameras and/or LiDAR can be used for inspecting approximately piecewise linear assets such as oil-gas pipelines, roads and power-lines. Automatic control of such aircraft is important from a productivity and safety point of view (long periods of precision manual flight at low-altitude is not considered reasonable from a safety perspective). This paper investigates the effect of any unwanted coupling between guidance and autopilot loops (typically caused by unmodeled delays in the aircraft’s response), and the specific impact of any unwanted dynamics on the performance of aircraft undertaking inspection of piecewise linear corridor assets (such as powerlines). Simulation studies and experimental flight tests are used to demonstrate the benefits of a simple compensator in mitigating the unwanted lateral oscillatory behaviour (or coupling) that is caused by unmodeled time constants in the aircraft dynamics.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/46542/

Relação

http://eprints.qut.edu.au/46542/1/compensation.pdf

http://www.aucc.org.au/

Bruggemann, Troy S. & Ford, Jason J. (2011) Compensation of unmodeled aircraft dynamics in airborne inspection of linear infrastructure assets. In The Australian Control Conference (AUCC), 10-11 November 2011, University of Melbourne, Melbourne, VIC.

Direitos

Copyright 2011 IEEE & IEAUST

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Fonte

Australian Research Centre for Aerospace Automation; Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #090100 AEROSPACE ENGINEERING #090104 Aircraft Performance and Flight Control Systems #Powerline Inspection #Unmodeled dynamics #UAV #actuator delay #line tracking
Tipo

Conference Paper