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1.
Opt Express ; 22(19): 23565-91, 2014 Sep 22.
Artigo em Inglês | MEDLINE | ID: mdl-25321824

RESUMO

Adaptive optics provides real time correction of wavefront disturbances on ground based telescopes. Optimizing control and performance is a key issue for ever more demanding instruments on ever larger telescopes affected not only by atmospheric turbulence, but also by vibrations, windshake and tracking errors. Linear Quadratic Gaussian control achieves optimal correction when provided with a temporal model of the disturbance. We present in this paper the first on-sky results of a Kalman filter based LQG control with vibration mitigation on the CANARY instrument at the Nasmyth platform of the 4.2-m William Herschel Telescope. The results demonstrate a clear improvement of performance for full LQG compared with standard integrator control, and assess the additional improvement brought by vibration filtering with a tip-tilt model identified from on-sky data, thus validating the strategy retained on the instrument SPHERE at the VLT.


Assuntos
Astronomia/instrumentação , Simulação por Computador , Lentes , Modelos Teóricos , Óptica e Fotônica/instrumentação , Telescópios , Desenho de Equipamento
2.
Appl Opt ; 49(32): 6354-63, 2010 Nov 10.
Artigo em Inglês | MEDLINE | ID: mdl-21068868

RESUMO

The Durham adaptive optics (AO) real-time controller was initially a proof of concept design for a generic AO control system. It has since been developed into a modern and powerful central-processing-unit-based real-time control system, capable of using hardware acceleration (including field programmable gate arrays and graphical processing units), based primarily around commercial off-the-shelf hardware. It is powerful enough to be used as the real-time controller for all currently planned 8 m class telescope AO systems. Here we give details of this controller and the concepts behind it, and report on performance, including latency and jitter, which is less than 10 µs for small AO systems.

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