DocumentCode
2699357
Title
The application of the MATLAB/SIMULINK analysis packages to the design of a discrete linear quadratic optimal missile autopilot
Author
Jones, Llyr Campbell
Author_Institution
Dept. of Syst. Anal. & Assessment, British Aerosp. Defence Ltd. (Dynamics Div.), UK
fYear
1995
fDate
34725
Firstpage
42430
Lastpage
42435
Abstract
This paper describes the application of the MATLAB and SIMULINKT packages in the design and analysis of a discrete-time lateral autopilot for a generic tactical missile. This missile is highly manoeuvrable, tail controlled, and has a symmetric cruciform configuration. Such a missile exhibits a non-minimum phase response to acceleration commands and may be open loop unstable at some points in the flight envelope. This paper makes use of modern discrete-time linear quadratic (LQ) optimal control techniques to design the missile autopilot. The performance of the final design is assessed by examining the closed loop step response. Open loop gain margin and phase margin are the standard indicators of robustness
Keywords
aerospace computing; control system CAD; control system analysis computing; linear quadratic control; missile control; software packages; MATLAB; SIMULINK; analysis software packages; closed loop step response; discrete linear quadratic optimal control; generic tactical missile; missile autopilot; nonminimum phase response;
fLanguage
English
Publisher
iet
Conference_Titel
Applied Control Techniques Using MATLAB, IEE Colloquium on
Conference_Location
London
Type
conf
DOI
10.1049/ic:19950054
Filename
478047
Link To Document