首页> 外文会议>Conference on Observatory Operations: Strategies, Processes, and Systems >Multi-object spectroscopic operations with the Sloan Digital Sky Survey V
【24h】

Multi-object spectroscopic operations with the Sloan Digital Sky Survey V

机译:与斯隆数字天空测量v的多对象光谱操作

获取原文

摘要

The Sloan Digital Sky Survey V (SDSS-V) is an all-sky spectroscopic survey of more than 6 million objects, designed to decode the history of the Milky Way. reveal the inner workings of stars, investigate the origin of solar systems, and track the growth of supermassive black holes across the Universe. SDSS-V presents significant innovations in both hardware and software, chiefly due to the introduction of a robotic Focal Plane System (FPS) that replaces plug-plate operations. This new mode of operations introduces new challenges with respect to target scheduling, fibre robot positioner reconfiguration optimisation, telescope guiding, observer interfaces, and observatory operations. During normal operations SDSS-V will observe a new field every 15 minutes. For each field requiring a new telescope pointing the FPS will reconfigure 500 robotic fibre positioners with feedback from an external Field Viewing Camera (FVC) in less than two minutes. Six CCD cameras mounted on the FPS will be used to automatically acquire the field and maintain the necessary guiding accuracy. These strict requirements highlight the need for streamlined operations software and procedures to minimise the time spent during FPS reconfigurations. We describe the overall design and implementation of the SDSS-V survey operations, with special emphasis on software development, conventions, and observing procedures. While specific to SDSS-V, the solutions we describe can be readily applied to other astronomical surveys and are of special interest given the rapid increase in projects employing robotic fibre positioners.
机译:Sloan Digital Sky Survey V(SDSS-V)是一项超过600万物体的全天光谱调查,旨在解散银河系的历史。揭示星星的内部工作,调查太阳系的起源,并跟踪宇宙中超大分料黑洞的生长。 SDSS-V在硬件和软件中提出了重大的创新,主要是由于引入了取代插件操作的机器人焦平面系统(FPS)。这种新的操作模式引入了目标调度,光纤机器人定位器重新配置优化,望远镜引导,观察者界面和天文台操作的新挑战。在正常操作期间,SDSS-V将每15分钟观察一次新字段。对于指向FPS的新望远镜的每个领域,将重新配置500个机器人光纤定位器,在不到两分钟内从外部场观察摄像机(FVC)的反馈重新配置500个机器人光纤定位器。安装在FPS上的六个CCD摄像头将用于自动获取该领域并保持必要的指导精度。这些严格的要求突出了简化操作软件​​和程序的需求,以最大限度地减少FPS重新配置期间花费的时间。我们描述了SDSS-V调查业务的整体设计和实施,特别强调软件开发,公约和观察程序。虽然特定于SDSS-V,我们描述的解决方案可以容易地应用于其他天文调查,并且在采用机器人光纤定位器的项目的快速增加,我们的特殊兴趣是特殊的利益。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号