Title :
Fuzzy-scored genetically-designed controller for the VLS-1 launcher
Author :
Ramos, Felix ; Araujo, Ernesto
Author_Institution :
Div. of Space Syst., Inst. de Aeronaut. e Espaco, Sao Jose dos Campos
Abstract :
A fuzzy system intertwined with an optimization technique based on genetic algorithm for designing a VLS-1 Launcher attitude control system is proposed in this paper. A linear-quadratic optimization yields gain-scheduled controllers, where Q and R weighting matrices are scored by means of a fuzzy system, instead of directly being chosen by a human designer. As a consequence, not only the optimization technique is extended to the entire launcher simulated trajectory, but also the specifications can be dealt individually. The linguistic variables of the fuzzy system are defined according to performance (rise time and overshoot) and robustness (gain and phase margins) issues, regarding gain vector smoothness, as well. The control system obtained with fuzzy design presents many favorable results according a linear analysis and nonlinear digital simulations.
Keywords :
aerospace simulation; attitude control; control system synthesis; fuzzy control; fuzzy reasoning; fuzzy systems; genetic algorithms; linear programming; matrix algebra; position control; quadratic programming; robust control; space vehicles; VLS-1 launcher attitude control system design; fuzzy system; fuzzy-score; gain vector smoothness; gain-scheduled controller; genetic algorithm; launcher simulated trajectory; linear-quadratic optimization; linguistic variable; robustness analysis; weighting matrices; Algorithm design and analysis; Control system synthesis; Control systems; Design optimization; Fuzzy systems; Genetic algorithms; Humans; Performance gain; Robustness; Vectors;
Conference_Titel :
Fuzzy Systems, 2008. FUZZ-IEEE 2008. (IEEE World Congress on Computational Intelligence). IEEE International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-1818-3
Electronic_ISBN :
1098-7584
DOI :
10.1109/FUZZY.2008.4630494