DocumentCode :
188904
Title :
Sliding mode based attitude and acceleration controller for a velocity-varying skid-to-turn missile
Author :
Yongwoo Lee ; Youdan Kim ; Gwanyoung Moon ; Byung-Eul Jun
Author_Institution :
Dept. of Mech. & Aerosp. Eng., Seoul Nat. Univ., Seoul, South Korea
fYear :
2014
fDate :
24-27 June 2014
Firstpage :
2951
Lastpage :
2956
Abstract :
Sliding mode based roll-pitch-yaw integrated attitude and acceleration controller for a fin-controlled skid-to-turn(STT) missile is proposed. In terms of aerodynamics, the missile model has severe nonlinearities and coupling effect between input channels and roll-pitch-yaw angles that make the controller design challenging. Moreover, the controller should be designed for the entire flight envelope consisting of boost-phase and gliding-phase where rapid velocity variation exists, and therefore parametric robustness with respect to rapid velocity change is strongly required. The attitude autopilot controls the Euler angles of the missile, and is configured as a single-loop. On the other hand, the acceleration autopilot, which is of two-loop structure, is used for the control of STT maneuver. The proposed autopilots use multiple sliding surfaces to generate control inputs for multiple channels simultaneously. Numerical simulation is performed to verify the performance of the proposed controllers.
Keywords :
acceleration control; attitude control; control nonlinearities; control system synthesis; military systems; missile control; numerical analysis; variable structure systems; Euler angles; STT missile; acceleration autopilot; acceleration controller; aerodynamics; attitude controller; autopilot controls; boost phase; controller design; fin controlled skid-to-turn; gliding phase; nonlinearities; numerical simulation; parametric robustness; roll pitch yaw integrated attitude; sliding mode control; velocity-varying skid-to-turn missile; Acceleration; Aerodynamics; Attitude control; Force; Missiles; Robustness; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 2014 European
Conference_Location :
Strasbourg
Print_ISBN :
978-3-9524269-1-3
Type :
conf
DOI :
10.1109/ECC.2014.6862251
Filename :
6862251
Link To Document :
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