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Towards a Digital Earth: using archetypes to enable knowledge interoperability within geo-observational sensor systems design

机译:朝向数字地球:使用原型可以在地理观测传感器系统设计中启用知识互操作性

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Earth System Science (ESS) observational data are often inadequately semantically enriched by geo-observational information systems to capture the true meaning of the associated data sets. Data models underpinning these information systems are often too rigid in their data representation to allow for the ever-changing and evolving nature of ESS domain concepts. This impoverished approach to observational data representation reduces the ability of multi-disciplinary practitioners to share information in a computable way. Object oriented techniques that are typically employed to model data in a complex domain (with evolving domain concepts) can unnecessarily exclude domain specialists from the design process, invariably leading to a mismatch between the needs of the domain specialists, and how the concepts are modelled. In many cases, an over simplification of the domain concept is captured by the computer scientist. This paper proposes that two-level modelling methodologies developed by health informaticians to tackle problems of domain specific use-case knowledge modelling can be re-used within ESS informatics. A translational approach to enable a two-level modelling process within geo-observational sensor systems design is described. We show how the Open Geospatial Consortium's (OGC) Observations & Measurements (O&M) standard can act as a pragmatic solution for a stable reference-model (necessary for two-level modelling), and upon which more volatile domain specific concepts can be defined and managed using archetypes. A rudimentary use-case is presented, followed by a worked example showing the implementation methodology and considerations leading to an O&M based, two-level modelling design approach, to realise semantically rich and interoperable Earth System Science based geo-observational sensor systems.
机译:地球系统科学(ESS)观察数据通常由地理观测信息系统富有语义富裕,以捕获相关数据集的真实含义。基于这些信息系统的数据模型通常在其数据表示中往往太僵化,以允许ESS域概念的不断变化和不断发展的性质。这种贫困的观察数据表示方法降低了多学科从业者以可增值方式共享信息的能力。面向对象的技术,通常用于在复杂域中模拟数据(具有不断发展的域概念),可以不必要地排除从设计过程中的域专家,总是导致域专家的需求之间的不匹配,以及如何建模概念。在许多情况下,计算机科学家捕获了域概念的过度简化。本文提出了健康机构开发的两级建模方法,以解决域特定用途知识建模的问题,可以在ESS信息学中重复使用。描述了在地理观测传感器系统设计中实现双层建模过程的翻译方法。我们展示了开放地理空间联盟的(OGC)观测和测量(O&M)标准如何充当稳定参考模型的语用解决方案(两级建模所必需),并且可以定义更多的挥发性域特定概念使用原型管理。提出了一个基本的用例,其次是一个有效的示例,显示了导致基于O&M的两级建模设计方法的实施方法和考虑因素,以实现基于语义丰富和可互操作的地球系统科学的地理观测传感器系统。

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