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

机译:Alt-Azimuth望远镜自适应控制器的建模与仿真研究,尽管风扰动未知

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摘要

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.
机译:许多地面的观察者正在使用小型地面望远镜进行科学研究。市场上可用的望远镜有三个主要问题。这些问题可以列为:定位重复性,根据不同季节的不同风速,调整要求,以及通过不同的科学设备添加到望远镜的不同科学设备。本研究旨在解决基于地面的小型Alt-Azimuth望远镜的这些问题。通过设计自适应控制器来执行设置和遗忘系统。考虑到现实数学模型的电机动力学。由具有未知相位,幅度和频率的正弦扰动之和的风力阵风模型用于风模型。紫色控制器取消了工厂的干扰效应,同时运行定位,也使得植物对质量变化不敏感。在证明渐近稳定性时,利用Lyapunov方法。拟议的控制器的成功是通过彻底的数值评估来说明。

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