DocumentCode :
2505269
Title :
Suborbital vehicle re-entry dynamic inversion controller design and control allocation research
Author :
Li, Kefeng ; Hameed, Tahir ; Ren, Zhang ; Zhang, Qingzhen
Author_Institution :
Sch. of Autom. Sci. & Electron. Eng., Beijing Univ. of Aeronaut. & Astronaut., Beijing
fYear :
2008
fDate :
25-27 June 2008
Firstpage :
5467
Lastpage :
5471
Abstract :
To solve the re-entry control problem of suborbital vehicle, which has a large dynamic range and uncertainty, a dynamic inversion control system based on time-scale and linear feedback was presented. There is no gain scheduling required in this controller, and it can adapt to the nonlinear, strong-coupled plant characteristics and large-scale changes of the environment. This controller also decreases the dependency on the aerodynamics and structure parameters in different flight conditions. In order to use different kind of actuators efficiently, a double layer control allocation method was proposed. The first layer allocates the controlling moments to the reaction control system (RCS) and aerosurface control system (ACS) depending upon the phases of flight. The second layer allocates them to the different jets in case of RCS and actuators in case of ACS (aileron, elevator and rudder) in order to generate the moments in the desired direction. It was proved by 6 degree of freedom (DOF) nonlinear simulation that the control system can accurately track guidance commands in the presence of significant aerodynamic uncertainties.
Keywords :
control system synthesis; feedback; nonlinear control systems; space vehicles; uncertain systems; vehicle dynamics; actuators; aerodynamics; aerosurface control system; control allocation method; control allocation research; dynamic inversion control system; flight conditions; linear feedback; nonlinear simulation; reaction control system; suborbital vehicle re-entry dynamic inversion controller design; Actuators; Aerodynamics; Control systems; Dynamic range; Elevators; Large-scale systems; Linear feedback control systems; Nonlinear dynamical systems; Uncertainty; Vehicle dynamics; Dynamic inversion; control allocation; nonlinear control; suborbital vehicle; time-scale;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Control and Automation, 2008. WCICA 2008. 7th World Congress on
Conference_Location :
Chongqing
Print_ISBN :
978-1-4244-2113-8
Electronic_ISBN :
978-1-4244-2114-5
Type :
conf
DOI :
10.1109/WCICA.2008.4594545
Filename :
4594545
Link To Document :
بازگشت