Title :
Dynamic calibration of adaptive optics systems: A system identification approach
Author :
Chiuso, Alessandro ; Muradore, Riccardo ; Marchetti, Enrico
Author_Institution :
Univ. di Padova (sede di Vicenza), San Nicola, Italy
Abstract :
Adaptive optics is used in astronomy to obtain high resolution images, close to diffraction limited, of stars and galaxies with ground telescopes, otherwise blurred by atmospheric turbulence. The measurements of one or more wavefront sensor are used to flatten distorted wavefronts with one or more deformable mirror in a feedback loop. In this paper we shall report our experience on the problem of building an accurate (dynamical) model of the actuation (deformable mirror) and sensing (wavefront sensor) of adaptive optics system. This will be done adapting state-of-the-art system identification and model reduction techniques to the problem at hand. Our results are based on real data collected under various operating conditions from a demonstrator developed at the European Southern Observatory (ESO), which is now operating in the Paranal observatory (Chile).
Keywords :
adaptive optics; astronomical telescopes; feedback; mirrors; optical control; reduced order systems; European Southern Observatory; Paranal observatory; adaptive optics systems; astronomy; atmospheric turbulence; deformable mirror; distorted wavefronts; dynamic calibration; feedback loop; model reduction techniques; resolution images; state-of-the-art system identification; system identification approach; wavefront sensor; Adaptive optics; Astronomy; Atmospheric waves; Calibration; Image resolution; Mirrors; Observatories; Optical diffraction; System identification; Telescopes; Adaptive Optics; Closed Loop Identification; Subspace Methods;
Conference_Titel :
Decision and Control, 2008. CDC 2008. 47th IEEE Conference on
Conference_Location :
Cancun
Print_ISBN :
978-1-4244-3123-6
Electronic_ISBN :
0191-2216
DOI :
10.1109/CDC.2008.4739096