DocumentCode :
487365
Title :
Optimal Reentry Guidance for Aeroassisted Orbit Transfer Vehicles
Author :
Calise, Anthony J. ; Bae, Gyoung H.
Author_Institution :
Georgia Institute of Technology, School of Aerospace Engineering, Atlanta, GA 30332-0150
fYear :
1988
fDate :
15-17 June 1988
Firstpage :
990
Lastpage :
995
Abstract :
A three-state model is presented for analyzing the problem of optimal changes in heading with minimum energy loss for a hypersonic gliding vehicle. A further model order reduction to a single state model is examined using singular perturbation theory. the optimal solution for the reduced problem defines an optimal altitude profile dependent on the current energy of the vehicle. A separate boundary layer analysis is used to account for altitude and flight path angle dynamics, and to obtain lift and bank angle control solutions. By considering alternative approximations to solve the boundary layer problem, three guidance laws are obtained, each having a feedback form. The guidance laws are evaluated for a hypothetical vehicle, and compared to an optimal solution obtained using a multiple shooting algorithm.
Keywords :
Aerodynamics; Aerospace engineering; Algorithm design and analysis; Energy loss; Energy states; Equations; Feedback; Navigation; Space vehicles; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1988
Conference_Location :
Atlanta, Ga, USA
Type :
conf
Filename :
4789866
Link To Document :
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