DocumentCode :
2060482
Title :
Robust control techniques for adaptive optic space telescopes
Author :
Burtz, Major Daniel
Author_Institution :
United States Air Force, Nokesville, VA, USA
fYear :
2010
fDate :
6-13 March 2010
Firstpage :
1
Lastpage :
17
Abstract :
Future space telescopes will contain lightweight, flexible, segmented mirrors. Traditional control approaches for mirror alignment and shape control may be inadequate due to flexibilities and low natural frequencies. Using adaptive optics for space telescopes presents a possible solution. This research proposes H¿ robust control techniques for these types of systems. An H¿ controller is synthesized for a complex analytical model. This was accomplished with a new technique for model reduction using Zernike polynomials. The H¿ design process used was validated on a simpler adaptive optics testbed. The experimental verification also showed that the robust control techniques outperformed the classical control techniques in the presence of disturbances. The results are a Zernike polynomial method for model reduction, robust controller synthesis for a complex adaptive optics analytical model, and experimental verification on an AO testbed. Although the robust control design is more complex, it provides improved performance in the presence of uncertainty in the disturbances and modeling.
Keywords :
adaptive optics; astronomical techniques; astronomical telescopes; robust control; H¿ controller; H¿ design process; Zernike polynomial method; adaptive optic space telescopes; control techniques; mirror alignment; robust control techniques; shape control; Adaptive optics; Analytical models; Frequency; Mirrors; Polynomials; Reduced order systems; Robust control; Shape control; Telescopes; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2010 IEEE
Conference_Location :
Big Sky, MT
ISSN :
1095-323X
Print_ISBN :
978-1-4244-3887-7
Electronic_ISBN :
1095-323X
Type :
conf
DOI :
10.1109/AERO.2010.5446713
Filename :
5446713
Link To Document :
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