论文标题

SSODNET:太阳系开放数据库网络

SsODNet: The Solar system Open Database Network

论文作者

Berthier, J., Carry, B., Mahlke, M., Normand, J.

论文摘要

在过去的十年中,太阳系对象的样本已大大增加。测得的特性数量(例如,直径,分类法,旋转期,热惯性)的数量甚至更快。但是,每个物体的许多不同的名称都以无数的文章分布在无数的文章上。我们为从其任何多个名称或名称中的任何一个识别太阳系对象提供了解决方案。我们还编译和合理化其属性,以简化访问它们。我们的目标是随着新测量的可用,我们的目标不断更新数据库。我们构建了一个Web服务SSODNET,该服务提供了四个访问点,每个服务都与社区中确定的必要性相对应:姓名分辨率(quaero),大量属性语料库(DataCloud)的汇编(DataCloud),确定编译值(SSOCARD)中最佳估计值(SSOCARD)和人口统计描述(SSSOBFT)。 SSODNET接口是完全运行的,每个人都可以自由访问。 Resolver Quaero的名称将约530万个对象指定中的任何一个转换为当前的正式名称。 DataCloud编制了约1.05亿个参数(示波和适当的元素,配对和家庭成员,直径,反照率,质量,密度,旋转期,自旋坐标,相位函数参数,颜色,分类法,热惯性和Yarkovsky漂移),来自3,000多个文章(以及成长)(以及生长)。对于每个已知的小行星和矮星行星(约120万),可以为每个参数提供一个最佳估计的SSOCARD。 SSODNET服务在查询时以第二次的时间提供这些资源。最后,大型SSOBFT表将单个表格中的所有最佳估计量汇编而成,以进行整个人口研究。

The sample of Solar system objects has dramatically increased over the last decade. The amount of measured properties (e.g., diameter, taxonomy, rotation period, thermal inertia) has grown even faster. However, this wealth of information is spread over a myriad of articles, under many different designations per object. We provide a solution to the identification of Solar system objects from any of their multiple names or designations. We also compile and rationalize their properties to provide an easy access to them. We aim to continuously update the database as new measurements become available. We built a Web Service, SsODNet, that offers four access points, each corresponding to an identified necessity in the community: name resolution (quaero), compilation of a large corpus of properties (datacloud), determination of the best estimate among compiled values (ssoCard), and statistical description of the population (ssoBFT). The SsODNet interfaces are fully operational and freely accessible to everyone. The name resolver quaero translates any of the ~5.3 million designations of objects into their current official designation. The datacloud compiles about 105 million parameters (osculating and proper elements, pair and family membership, diameter, albedo, mass, density, rotation period, spin coordinates, phase function parameters, colors, taxonomy, thermal inertia, and Yarkovsky drift) from over 3,000 articles (and growing). For each of the known asteroids and dwarf planets (~1.2 million), a ssoCard providing a single best-estimate for each parameter is available. The SsODNet service provides these resources in a fraction of second upon query. Finally, the large ssoBFT table compiles all the best-estimates in a single table for population-wide studies.

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