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A case study in adaptable and reusable infrastructure at the Keck Observatory Archive: VO interfaces, moving targets, and more

机译:凯克天文台档案馆的适应性和可重用基础结构案例研究:VO接口,移动目标等

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摘要

The Keck Observatory Archive (KOA) (https://koa.ipac.caltech.edu) curates all observations acquired at the W. M. Keck Observatory (WMKO) since it began operations in 1994, including data from eight active instruments and two decommissioned instruments. The archive is a collaboration between WMKO and the NASA Exoplanet Science Institute (NExScI). Since its inception in 2004, the science information system used at KOA has adopted an architectural approach that emphasizes software re-use and adaptability. This paper describes how KOA is currently leveraging and extending open source software components to develop new services and to support delivery of a complete set of instrument metadata, which will enable more sophisticated and extensive queries than currently possible.ud In August 2015, KOA deployed a program interface to discover public data from all instruments equipped with an imaging mode. The interface complies with version 2 of the Simple Imaging Access Protocol (SIAP), under development by the International Virtual Observatory Alliance (IVOA), which defines a standard mechanism for discovering images through spatial queries. The heart of the KOA service is an R-tree-based, database-indexing mechanism prototyped by the Virtual Astronomical Observatory (VAO) and further developed by the Montage Image Mosaic project, designed to provide fast access to large imaging data sets as a first step in creating wide-area image mosaics (such as mosaics of subsets of the 4.7 million images of the SDSS DR9 release). The KOA service uses the results of the spatial R-tree search to create an SQLite data database for further relational filtering. The service uses a JSON configuration file to describe the association between instrument parameters and the service query parameters, and to make it applicable beyond the Keck instruments.ud The images generated at the Keck telescope usually do not encode the image footprints as WCS fields in the FITS file headers. Because SIAP searches are spatial, much of the effort in developing the program interface involved processing the instrument and telescope parameters to understand how accurately we can derive the WCS information for each instrument. This knowledge is now being fed back into the KOA databases as part of a program to include complete metadata information for all imaging observations.ud The R-tree program was itself extended to support temporal (in addition to spatial) indexing, in response to requests from the planetary science community for a search engine to discover observations of Solar System objects. With this 3D-indexing scheme, the service performs very fast time and spatial matches between the target ephemerides, obtained from the JPL SPICE service. Our experiments indicate these matches can be more than 100 times faster than when separating temporal and spatial searches. Images of the tracks of the moving targets, overlaid with the image footprints, are computed with a new command-line visualization tool, mViewer, released with the Montage distribution. The service is currently in test and will be released in late summer 2016.
机译:凯克天文台档案馆(KOA)(https://koa.ipac.caltech.edu)整理了W. M.凯克天文台(WMKO)自1994年开始运行以来获得的所有观测资料,包括八台现役仪器和两台退役仪器的数据。该档案是WMKO与NASA系外科学研究所(NExScI)的合作。自2004年成立以来,KOA所使用的科学信息系统采用了一种架构方法,强调软件的重用性和适应性。本文介绍了KOA当前如何利用和扩展开源软件组件来开发新服务并支持交付完整的仪器元数据集,这将使比目前可能的更为复杂和广泛的查询成为可能。 ud 2015年8月,部署了KOA一个程序接口,可从配备了成像模式的所有仪器中发现公共数据。该接口符合国际虚拟天文台联盟(IVOA)正在开发的简单成像访问协议(SIAP)的版本2,该版本定义了用于通过空间查询发现图像的标准机制。 KOA服务的核心是虚拟天文台(VAO)原型化并由Montage Image Mosaic项目进一步开发的基于R树的数据库索引机制,旨在提供对大型成像数据集的快速访问。创建广域图像镶嵌图的步骤(例如SDSS DR9版本的470万幅图像的子集的镶嵌图)。 KOA服务使用空间R树搜索的结果来创建SQLite数据数据库,以进行进一步的关系过滤。该服务使用JSON配置文件来描述仪器参数与服务查询参数之间的关联,并使其适用于Keck仪器以外。 ud Keck望远镜生成的图像通常不会将图像足迹编码为WCS字段。 FITS文件头。由于SIAP搜索是空间性的,因此开发程序界面的大部分工作都涉及对仪器和望远镜参数的处理,以了解我们可以多么准确地得出每种仪器的WCS信息。现在,该知识已作为程序的一部分反馈到KOA数据库中,以包括所有成像观测的完整元数据信息。 ud R-tree程序本身已扩展为支持时间(除了空间)索引,以响应行星科学界对搜索引擎的请求,以发现太阳系天体的观测结果。使用此3D索引方案,该服务可以从JPL SPICE服务获得目标星历之间的非常快速的时间和空间匹配。我们的实验表明,这些匹配比将时空搜索分开的速度快100倍以上。使用蒙太奇发行版发布的新命令行可视化工具mViewer,可以计算出覆盖有图像足迹的移动目标的轨迹图像。该服务目前正在测试中,将于2016年夏末发布。

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