DocumentCode :
487963
Title :
Optimal Rocket-Powered Ascent Study
Author :
Seywald, H. ; Cliff, E.M.
Author_Institution :
Aerospace and Ocean Engineering, Interdisciplinary Center for Applied Mathematics, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061
fYear :
1989
fDate :
21-23 June 1989
Firstpage :
2026
Lastpage :
2031
Abstract :
The Goddard Problem is that of maximizing the final altitude for a vertically ascending, rocket-powered vehicle under the influence of an inverse square gravitational field and atmospheric drag. The present study is concerned with the effects of two additional constraints: a dynamic pressure limit [qmax], and a specified final time [tf]. Nine different switching structures involving zero-thrust arcs, full-thrust arcs, singular-thrust arcs, and constrained arcs are obtained for prescribed values of qmax and final time tf between tf,min and tf*. Here tf,min is the minimum possible time within which all the fuel can be burned, and tf* is the optimal final time. For all points in the above defined domain of the qmax,tf-plane the associated optimal switching structure is clearly identified. Finally, a comparison between the optimal solutions and a simple intuitive feedback law is given.
Keywords :
Birth disorders; Equations; Fuels; Optimal control; Rockets; Tellurium; Vehicle dynamics; Vehicles; Velocity control; Weight control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1989
Conference_Location :
Pittsburgh, PA, USA
Type :
conf
Filename :
4790523
Link To Document :
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