Robotising Existing Astronomical Observatories

G. Tuparev, H. Andreasyan, T. Jackson
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Abstract

Astronomical observatories can be operated either manually or remotely, but both of these options currently have many disadvantages. Manual observatories require real-time staffing by on-site astronomers and technicians, and observation time is often not used optimally. Remote observatories, on the other hand, often make it cumbersome or near-impossible to modify any observing schedules already fed into the system, making reacting to important events like gamma-ray bursts unrealistic. In addition, it is generally expected that the cheapest way to upgrade an ageing observatory is to simply build a new one, but this is not always the case. For many relatively modern observatories, it is possible to convert to a fully robotic mode of operation. In these proceedings, we describe a few straightforward ways to robotise an existing observatory and how to connect it to a network of other robotic observatories. We also discuss the use of inexpensive device controllers, the importance of emergency shut-down procedures, the introduction of local and network schedulers, and the implementation of fully automated observation planning. We finally also describe hardware and software solutions, including an example of how this is currently being applied.
现有天文台机器人化
天文台可以手动或远程操作,但这两种选择目前都有许多缺点。人工天文台需要现场天文学家和技术人员实时配备人员,而且观测时间往往没有得到最佳利用。另一方面,远程观测站通常会使修改已经输入系统的观测计划变得麻烦或几乎不可能,从而使对伽马射线爆发等重要事件的反应变得不切实际。此外,人们普遍认为,升级一个老化天文台最便宜的方法就是简单地建造一个新的,但情况并非总是如此。对于许多相对现代化的天文台来说,完全可以转换为机器人操作模式。在这些程序中,我们描述了几种直接的方法来实现现有天文台的机器人化,以及如何将其连接到其他机器人天文台的网络。我们还讨论了廉价设备控制器的使用、紧急关闭程序的重要性、本地和网络调度程序的引入以及全自动观察计划的实施。最后,我们还描述了硬件和软件解决方案,包括当前如何应用的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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