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The Orbital Space Environment and Space Situational Awareness Domain Ontology -Toward an International Information System for Space Data

机译:轨道空间环境和空间情境感知域本体 - 用于空间数据的国际信息系统

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The orbital space environment is home to natural and artificial satellites, debris, and space weather phenomena. As the population of orbital objects grows so do the potential hazards to astronauts, space infrastructure and spaceflight capability. Orbital debris, in particular, is a universal concern. This and other hazards can be minimized by improving global space situational awareness (SSA). By sharing more data and increasing observational coverage of the space environment we stand to achieve that goal, thereby making spaceflight safer and expanding our knowledge of near-Earth space. To facilitate data-sharing interoperability among distinct orbital debris and space object catalogs, and SSA information systems, I proposed ontology in (Rovetto, 2015) and (Rovetto and Kelso, 2016). 1 continue this effort toward formal representations and models of the overall domain that may serve to improve peaceful SSA and increase our scientific knowledge. This paper explains the project concept introduced in those publications, summarizing efforts to date as well as the research field of ontology development and engineering. I describe concepts for an ontological framework for the orbital space environment, near-Earth space environment and SSA domain. An ontological framework is conceived as a part of a potential international information system. The purpose of such a system is to consolidate, analyze and reason over various sources and types of orbital and SSA data toward the mutually beneficial goals of safer space navigation and scientific research. Recent internationals findings on the limitations of orbital data, in addition to existing publications on collaborative SSA, demonstrate both the overlap with this project and the need for data-sharing and integration.
机译:轨道空间环境是自然和人造卫星,碎片和空间天气现象的家园。随着轨道物体的群体增加了宇航员,空间基础设施和空间能力的潜在危害。特别是轨道碎片是普遍关注的。通过提高全球空间情境感知(SSA),可以最大限度地减少这种危害和其他危险。通过分享更多数据和增加空间环境的观察覆盖,我们立场实现这一目标,从而使空间更安全并扩大我们对近地球空间的了解。为了促进不同轨道碎片和空间对象目录和SSA信息系统之间的数据共享互操作性,我提出了(Rovetto,2015)和(Rovetto和Kelso,2016)的本体。 1继续这项努力,可以努力改善和平SSA的整体领域的正式陈述和模型,并增加我们的科学知识。本文介绍了这些出版物中介绍的项目概念,总结了迄今为止的努力以及本体论文开发和工程研究领域。我描述了轨道空间环境,近地空间环境和SSA域的本体论框架的概念。本体框架被认为是潜在的国际信息系统的一部分。这种系统的目的是通过各种来源和各种轨道和SSA数据进行巩固,分析和理由,朝着更安全的空间导航和科学研究的互利目标。除了在协作SSA的现有出版物外,最近的国际轨道数据的局限性调查结果表明了与该项目的重叠以及数据共享和集成的需求。

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