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New Control System for the 1.5m and 0.9m Telescopes at Sierra Nevada Observatory

机译:塞拉尼达田天文台的1.5米和0.9米望远镜的新控制系统

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The Sierra Nevada Observatory (Granada, Spain) has a number of telescopes. Our study will focus on two Nasmyth telescopes with apertures of 1.5m and 0.9m and an equatorial mount. The system currently installed to control these telescopes is a 1995 centralized VME module. However, given the problems which have arisen due to the number of wires and other complications, we have decided to change this control module. We will control each telescope with a distributed control philosophy, using a serial linear communication bus between independent nodes, although all system capabilities are accessible from a central unit anywhere and at any time via internet. We have divided the tasks and have one node for alpha control, another for delta control, one for the dome, one for the focus and the central unit to interface with a pc. The nodes for alpha, delta and the dome will be used by means of FPGA's in order to efficiently sample the encoders and the control algorithms, and to generate the output for the motors and the servo. The focus will have a microcontroller, and the system is easy to expand in the event of the inclusion of more nodes. After having studied several fieldbus systems, we have opted for the CAN bus, because of its reliability and broadcasting possibilities. In this way, all the important information will be on the bus, and every node will be able to access the information at any time. This document explains the new design made in the IAA for the new consoles of control whose basic characteristics are, the distributed control, the hardware simplify, the cable remove, the safety and maintenance improve and facilitating the observation improving the interface with the user, and finally to prepare the system for the remote observation.
机译:内华达山脉天文台(格拉纳达,西班牙)有许多望远镜。我们的研究将集中在两个内史密斯望远镜用1.5M和0.9米和孔口式赤道仪。当前安装的控制这些望远镜系统是1995年集中VME模块。然而,鉴于已因电线和其他并发症的数量出现的问题,我们决定改变这种控制模块。我们将控制与分布式控制理念每个望远镜,使用独立的节点之间的串行线性通信总线,尽管所有的系统功能是从一个中央单元在任何地方和通过互联网的任何时间访问。我们已分割的任务,并具有用于α-控制一个节点,另一个用于Δ控制,一个用于穹顶,一个用于聚焦和与PC的接口的中央处理单元。为α,δ和圆顶的节点将通过FPGA的的装置,以便用来有效地采样的编码器和控制算法,并且产生用于电机和伺服输出。重点将有一个微控制器,系统容易在包含多个节点的情况下扩大。有研究多个现场总线系统后,我们选择了CAN总线,由于其可靠性和广播可能性。这样一来,所有的重要信息将在总线上,每个节点将能够在任何时间访问信息。本文档说明在IAA用于控制其基本特征是,分布式控制,硬件简化,除去电缆的安全性和保养改进和便于观察提高与用户的接口的新游戏机提出的新的设计,并且最后,制备的系统用于远程观察。

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