Journal Article

·2014 OPEN ACCESS

Modelling and simulation studies on adaptive controller for alt-azimuth telescopes despite unknown wind disturbance and mass

Onur Keskin , Ali Cem Ünal , Gökhan Kararsız YTU , Tuğrul Yılmaz , Cahit Yeşilyaprak

Advances in Mechanical Engineering

Abstract

Numerous ground-based observatories are using small sized ground telescopes for scientific research purposes. The telescopes that are available on the market have three main problems. These issues can be listed as: positioning repeatability, tuning requirement according to different wind speeds for different seasons, and the mass changing via different scientific equipments added to the telescope. This study is aimed at resolving these issues for ground based small alt-azimuth telescopes. Establishing of a set and forget system is performed by designing an adaptive controller. Motor dynamics are taken into consideration for a realistic mathematical model. The Wind-Gust model that consists of a sum of sinusoidal disturbances with unknown phase, amplitude and frequency is used for the wind model. The purposed controller cancels the disturbance effects on the plant while operational positioning and also the makes the plant insensitive to mass changes. The Lyapunov approach is utilised when proving the asymptotic stability. The proposed controller’s success is illustrated with thorough numerical evaluation.

Keywords

Controller (irrigation) Control theory (sociology) Azimuth Telescope Disturbance (geology) Lyapunov function Computer science Stability (learning theory) Set (abstract data type) Wind speed Control engineering Simulation Engineering Physics Meteorology Control (management) Geology Astrophysics Astronomy

Subject Areas

Adaptive optics and wavefront sensing ·Atomic and Molecular Physics, and Optics ·Physical Sciences
Adaptive Control of Nonlinear Systems ·Control and Systems Engineering ·Physical Sciences
Astronomy and Astrophysical Research ·Instrumentation ·Physical Sciences

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