DocumentCode
1828227
Title
Design of a fully fledged uav test-bed with internal and external pilot
Author
Tennakoon, W.T.M.S. ; Munasinghe, S.R.
Author_Institution
Dept. of Electron. & Telecommun., Univ. of Moratuwa, Moratuwa, Sri Lanka
fYear
2009
fDate
28-31 Dec. 2009
Firstpage
574
Lastpage
579
Abstract
This paper presents a real time non linear automatic UAV simulation test-bed and autonomous control implementation with way point navigation. This UAV simulator is an integrated product that combines a vehicle operator station with a synthetic environment to support UAV research, training and operations while providing the operators (Internal Pilot) with a consistent interface. the simulated air vehicle operates against simulated terrain, weather, and computer generated forces In the synthetic mission space. External pilot also interact into synthetic simulation test-bed. The autonomous control system is based on the Aerosonde UAV and major considerations of controller performance and minimum instability within manual and autonomous switching have been evaluated with full software simulation. Major requirements for the good control system are minimum overshoot, minimum setting time without undesirable oscillation and low cross coupling between high level commands. A MATLAB simulink standard configuration environment and the Aerosim Aeronautical Simulation Block Set are utilized for simulation studies, presented through a flightgear interface and Custom GUI. The AeroSim® simulation environment features a complete detailed 6 degrees-of-freedom nonlinear generic UAV model which consist earth, atmospheric, aerodynamics, inertia and equation of motion sub models.
Keywords
aerospace robotics; aerospace simulation; control engineering computing; digital simulation; graphical user interfaces; mobile robots; nonlinear control systems; remotely operated vehicles; Aerosim Aeronautical Simulation Block Set; Aerosonde UAV; MATLAB simulink; automatic UAV simulation testbed; autonomous control; autonomous switching; custom GUI; external pilot; flightgear interface; graphical user interface; internal pilot; manual switching; nonlinear generic UAV model; software simulation; unmanned aerial vehicle; way point navigation; Aerospace simulation; Atmospheric modeling; Automatic control; Automatic testing; Computational modeling; Computer simulation; Mathematical model; Remotely operated vehicles; Space vehicles; Unmanned aerial vehicles; EP; GCS; GUI; IP; UAV;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial and Information Systems (ICIIS), 2009 International Conference on
Conference_Location
Sri Lanka
Print_ISBN
978-1-4244-4836-4
Electronic_ISBN
978-1-4244-4837-1
Type
conf
DOI
10.1109/ICIINFS.2009.5429795
Filename
5429795
Link To Document