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A formal, scalable approach to semantic interoperability

机译:正式的,可扩展的语义互操作方法

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Scientific progress is increasingly dependent upon the acquisition, processing, and analysis of large volumes of data. The validity of results and the safety of applications rely upon an adequate understanding of the real-world semantics of this data: its intended interpretation, and the context in which it is acquired and processed. This presents a challenge: interpretations vary, context is infinite, and either may change over time. This paper addresses that challenge. It introduces a language for the description of real-world semantics that allows for multiple, evolving interpretations, together with a high degree of automation in the capture and creation of contextual metadata. The language itself has a mathematical semantics, and supports a notion of semantic interoperability closely related to existing, formal notions of refinement. The language represents a scalable approach in three respects: it is compositional, in terms of composing real-world semantics piece by piece; it allows for multiple perspectives, allowing the parallel development of different interpretations; and it supports automatic transformations to and from implementation languages. The practical application of the approach is illustrated with examples from large-scale medical research.
机译:科学进步越来越依赖于大量数据的获取,处理和分析。结果的有效性和应用程序的安全性取决于对该数据的真实语义的充分理解:预期的解释以及获取和处理数据的上下文。这就提出了一个挑战:解释各不相同,上下文是无限的,并且两者都可能随时间变化。本文解决了这一挑战。它引入了一种用于描述现实世界语义的语言,该语言允许进行多种不断发展的解释,并在捕获和创建上下文元数据时实现高度自动化。语言本身具有数学语义,并且支持与现有的正式提炼概念紧密相关的语义互操作性概念。该语言从三个方面代表了一种可扩展的方法:就组成逐个语义构成的现实世界而言,它是组成性语言;它具有多种视角,可以并行发展不同的解释;并且它支持与实现语言之间的自动转换。通过大规模医学研究的实例说明了该方法的实际应用。

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