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Running a distributed virtual observatory: U.S. Virtual Astronomical Observatory operations

机译:运行分布式虚拟天文台:U.S.虚拟天文天文台操作

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Operation of the US Virtual Astronomical Observatory shares some issues with modern physical observatories, e.g.,intimidating data volumes and rapid technological change, and must also address unique concerns like the lack of directcontrol of the underlying and scattered data resources, and the distributed nature of the observatory itself. In this paperwe discuss how the VAO has addressed these challenges to provide the astronomical community with a coherent set ofscience-enabling tools and services. The distributed nature of our virtual observatory-with data and personnelspanning geographic, institutional and regime boundaries-is simultaneously a major operational headache and theprimary science motivation for the VAO. Most astronomy today uses data from many resources. Facilitation ofmatching heterogeneous datasets is a fundamental reason for the virtual observatory. Key aspects of our approachinclude continuous monitoring and validation of VAO and VO services and the datasets provided by the community,monitoring of user requests to optimize access, caching for large datasets, and providing distributed storage services thatallow user to collect results near large data repositories. Some elements are now fully implemented, while others areplanned for subsequent years. The distributed nature of the VAO requires careful attention to what can be astraightforward operation at a conventional observatory, e.g., the organization of the web site or the collection andcombined analysis of logs. Many of these strategies use and extend protocols developed by the international virtualobservatory community. Our long-term challenge is working with the underlying data providers to ensure high qualityimplementation of VO data access protocols (new and better 'telescopes'), assisting astronomical developers to buildrobust integrating tools (new 'instruments'), and coordinating with the research community to maximize the scienceenabled.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:美国虚拟天文天文台的运作与现代物理观察者共享一些问题,例如,威胁数据卷和快速的技术变革,并且还必须满足独特的担忧,如缺乏潜在的数据资源和分散的数据资源的直接控制,以及分布式性质天文台本身。在本文中,我们讨论了VAO如何解决这些挑战,以便为天文社区提供一系列相干的支持工具和服务。我们的虚拟天文台的分布性质与数据和人为人人的地理,机构和政权界限 - 同时是对VAO的主要业务头痛和三明治科学动机。今天最多的天文学使用许多资源的数据。促进异构数据集的促进是虚拟天文台的根本原因。我们的方法必须连续监控和验证VAO和VO服务以及社区提供的数据集,监控用户请求优化访问,缓存大型数据集,以及提供分布式存储服务,以便用户在大数据存储库附近收集结果。现在已经完全实现了一些元素,而其他元素则在随后的几年中酝酿。 VAO的分布性质需要仔细关注传统天文台的Astraightforword操作,例如,网站的组织或收集的日志分析。其中许多策略使用和扩展由国际VirtualObserervatory社区开发的协议。我们的长期挑战正在与底层数据提供商合作,以确保VO数据访问协议(新和更好的“望远镜”)的高度高度识别,协助天文开发人员巩固整合工具(新的“仪器”),并与研究界协调最大化Scessenableable。©(2012)照片光学仪表工程师的版权协会(SPIE)。仅供个人使用的摘要下载。

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