DocumentCode
619755
Title
Robust optimal guidance for hypersonic glide vehicle with hinge moment constraint
Author
Cai Wei-wei ; Yang Le-ping ; Liu Xin-jian ; Zhu Yan-wei
Author_Institution
Coll. of Aerosp. Sci. & Eng., Nat. Univ. of Defense Technol., Changsha, China
fYear
2013
fDate
25-27 May 2013
Firstpage
544
Lastpage
549
Abstract
The magnitude of hinge moment is a prominent problem for rapid dive maneuver of hypersonic glide vehicles. A robust optimal integrated guidance law considering constraints of hinge moment and terminal impact angle is proposed with excellent performance. Based on the analogy relationship of hinge moment and normal aerodynamic load, the constraint of hinge moment is transformed to normal load constraint; and the optimal guidance law under nominal conditions is derived utilizing optimal control theory. A terminal sliding mode control based guidance modification is designed to eliminate the inevitable departure brought by uncertainties in finite time; and the hyperbolic tangent function is introduced to reduce the high-frequency chatting. The theoretical analysis and simulation results are conducted to illustrate the capability of the proposed integrated guidance law for hypersonic glide vehicle.
Keywords
aerodynamics; aerospace control; aircraft; control system synthesis; optimal control; path planning; variable structure systems; high-frequency chatting reduction; hinge moment constraint; hypersonic glide vehicle; normal aerodynamic load; normal load constraint; optimal control theory; rapid dive maneuver; robust optimal guidance; robust optimal integrated guidance law; terminal impact angle constraint; terminal sliding mode control based guidance modification; Aerodynamics; Fasteners; Robustness; Sliding mode control; Uncertainty; Vehicle dynamics; Vehicles; Hinge moment; Hypersonic glide vehicle; Integrated guidance; Terminal sliding mode control;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Decision Conference (CCDC), 2013 25th Chinese
Conference_Location
Guiyang
Print_ISBN
978-1-4673-5533-9
Type
conf
DOI
10.1109/CCDC.2013.6560984
Filename
6560984
Link To Document