Title :
Hybrid reentry guidance based on reference-trajectory and predictor-corrector
Author :
Liang Zixuan ; Ren Zhang ; Bai Chen ; Xiong Zihao
Author_Institution :
Sci. & Technol. on Aircraft Control Lab., Beihang Univ., Beijing, China
Abstract :
According to the shortcoming of the conventional guidance, a hybrid reentry guidance algorithm based on the reference-trajectory and the predictor-corrector is presented for the reentry vehicles. The guidance system is separately designed in the longitudinal plane and the lateral plane. Two kinds of the longitudinal guidance laws are studied: one guidance law via the linear quadratic regulator (LQR) and another via the fuzzy logic. A switch law between the two different guidance laws is designed based on the trajectory feature points. To test the capacity of the hybrid guidance method, the Monte Carlo simulations are taken. The proposed hybrid guidance method and the two conventional methods are simulated and compared. The result indicates that the hybrid reentry guidance law has less computing time, high guidance precision, and good robustness.
Keywords :
Monte Carlo methods; aircraft control; fuzzy logic; linear quadratic control; predictor-corrector methods; LQR; Monte Carlo simulation; fuzzy logic; guidance system design; hybrid reentry guidance algorithm; lateral plane; linear quadratic regulator; longitudinal guidance laws; longitudinal plane; predictor corrector; reentry vehicles; reference trajectory; switch law; Aerospace control; Digital TV; Electronic mail; Fuzzy logic; Laboratories; Regulators; Vehicles; Fuzzy logic; LQR; Predictor-corrector; Reentry guidance; Reference-trajectory;
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese