Paper
30 July 2002 Global model of the Gran Telescopio Canarias
F. Javier Castro Lopez-Tarruella, Jose M Fernandez Ibarz
Author Affiliations +
Proceedings Volume 4757, Integrated Modeling of Telescopes; (2002) https://doi.org/10.1117/12.489823
Event: Workshop on Integrated Modeling of Telescopes, 2002, Lund, Sweden
Abstract
During the conceptual design of the GTC (Gran Telescopio Canarias) it was suggested to develop a Global Model of the behaviour of the GTC system to be used as a tool for the system engineering. This Global Model should be a dynamical simulation capable to predict the pointing, tracking, guiding and image quality of the GTC system in several simulation scenarios depending on the behavior of each subsystem. It was decided to develop the simulation in the Matlab/Simulink® environment. The kernel of the Global Model was a Simulink® model of the telescope mechanics. The model included the structural dynamics, control loops of the main axis (azimuth, elevation and rotators), and load models (wind, gravity, seism). Each component included error sources inherent to it (cogging and ripple on motors, encoding errors, bearing run-out, etc). The model permitted large rotations in elevation axis, which was necessary to test pointing performances. A specific simulation was developed within the project office for the analysis of the image quality of the optical system. It includes polishing defects of the optical surfaces (M1 segments, M2 and M3), low spatial frequency distortions of the optical surfaces (due to fabrication, gravity of instability) and misalignment between the primary mirror segments.
© (2002) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
F. Javier Castro Lopez-Tarruella and Jose M Fernandez Ibarz "Global model of the Gran Telescopio Canarias", Proc. SPIE 4757, Integrated Modeling of Telescopes, (30 July 2002); https://doi.org/10.1117/12.489823
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KEYWORDS
Mirrors

Device simulation

Telescopes

Motion models

Simulink

Computer programming

Finite element methods

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