Title :
Simplified robust compensator design for an Adaptive Optics system
Author :
Maimaiti, R. ; Eisaka, T.
Author_Institution :
Dept. of Comput. Sci., Kitami Inst. of Technol., Kitami, Japan
Abstract :
Most of the adaptive optics (AO) system can be considered as a feedback loop that involves both discrete-time and continuous-time signals. Atmospheric turbulence is major obstacle to achieve high-resolution imaging of object since telescopes were invented. To achieve high-resolution imaging of targets in space, it is of key importance to reduce the effects of atmospheric turbulence by operating a deformable mirror. Various computer control approaches have been applied to overcome this problem. However, these are generally focused on optimizing only the wavefront estimates, or the individual control loop bandwidths. In this paper, we propose a simple and tunable robust controller design for an AO system, based on the robust model matching (RMM) strategies. Since the compensator design procedure is very simple and rather flexible, there is less real-time computational burden than high-order complex controllers, and the robustness can be tuned easily. Simulation and experimental results are presented demonstrating the efficiency of the proposed design.
Keywords :
adaptive optics; astronomical image processing; atmospheric techniques; atmospheric turbulence; compensation; control engineering computing; control system synthesis; feedback; image resolution; robust control; adaptive optics system; atmospheric turbulence; computer control approach; continuous-time signals; discrete-time signals; feedback loop; high-order complex control; high-resolution imaging; individual control loop bandwidth; robust model matching; simplified robust compensator design; tunable robust controller design; Adaptive optics; Atmospheric waves; Bandwidth; Feedback loop; High-resolution imaging; Mirrors; Optical design; Robust control; Robustness; Telescopes;
Conference_Titel :
Asian Control Conference, 2009. ASCC 2009. 7th
Conference_Location :
Hong Kong
Print_ISBN :
978-89-956056-2-2
Electronic_ISBN :
978-89-956056-9-1