DocumentCode
3738754
Title
Design of a flight stabilizer for fixed-wing aircrafts using H∞ loop shaping method
Author
Şeyma Akyürek;Gizem Sezin Özden;Burak Kürkçü;Ünver Kaynak;Coşku Kasnakoğlu
Author_Institution
TOBB University of Economics & Technology / Electrical & Electronics Engineering, Ankara, Turkey
fYear
2015
Firstpage
790
Lastpage
795
Abstract
Autopilot systems for unmanned aerial vehicles (UAVs) and aircrafts provide flight missions without need of human input and make them more reliable and efficient. The first step of designing an autopilot is a stabilizer mode. Conventional autopilot systems have inner and outer loops. Stabilizer is the inner loop for an autopilot. In this paper designing an aircraft control system ensures good performance and robustness that allows control of roll, pitch and yaw angles will be declared. Aircraft dynamics are used to design the model of the control system in the MATLAB Simulink environment. Using loop shaping method to achieve stable and robust control system will be the strategy. Generated controllers to find the most effective one are embedded in the X-plane which is one of the realistic simulations.
Keywords
"Mathematical model","Aircraft","Aerospace control","Atmospheric modeling","Aerodynamics","Robustness","MIMO"
Publisher
ieee
Conference_Titel
Electrical and Electronics Engineering (ELECO), 2015 9th International Conference on
Type
conf
DOI
10.1109/ELECO.2015.7394579
Filename
7394579
Link To Document