DocumentCode :
231775
Title :
Multi-stages robust autopilot for nonlinear command line of sight guided system
Author :
Abd-Altief, M.A. ; Qian Longjun
Author_Institution :
Autom. Sch., Univ. of Sci. & Technol., Nanjing, China
fYear :
2014
fDate :
28-30 July 2014
Firstpage :
4354
Lastpage :
4359
Abstract :
The performance of guided flight missile systems is measured through the minimum miss-distance and its capability to overcome target maneuver in presence of different sources of disturbances and noises. To achieve this objective, mathematical model for different dynamical behavior phases of command to the line of sight (CLOS) system is introduced using system identification technique. However, these mathematical models cannot precisely represent a real physical system without uncertainties. To improve system performance, a multi-stages robust autopilot is designed (each stage applied with corresponding missile flight phase) and compared with single stage robust autopilot. By using the H approach, both controllers are obtained to adequate the nonlinear dynamical behavior and overcome different kind of uncertainties of the intended Command Line of Sight Guidance System (CLOS). Finally, the system performance and robustness are verified with flight path analysis by 6-DOF simulation model.
Keywords :
aerospace control; command and control systems; missile guidance; nonlinear control systems; path planning; robust control; uncertain systems; CLOS system; command line-of-sight guidance system; dynamical behavior phases; flight missile systems; flight path analysis; mathematical model; miss-distance; multistage robust autopilot; nonlinear command line; nonlinear dynamical behavior; sight guided system; system identification technique; system performance improvement; target maneuver; Aerodynamics; Atmospheric modeling; Mathematical model; Missiles; Robustness; Transfer functions; Uncertainty; 6DOF simulation model; Command Line of Sight Guidance System; Multi-stages Robust Control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2014 33rd Chinese
Conference_Location :
Nanjing
Type :
conf
DOI :
10.1109/ChiCC.2014.6895669
Filename :
6895669
Link To Document :
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