Performing Information Extraction and Ontology Development for Mission Engineering Applications

S. Koski, James D. Moreland
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Abstract

The development and evaluation of Mission Engineering Threads (METs) require an understanding of the operational context for which a system-of-systems (SoS) will be employed as well as an assessment that the performance of a complex SoS is effective and safe. The information describing the design and performance parameters of the systems within the SoS is distributed in many different physical locations, and is represented in a variety of formats, both structured and unstructured. Because of this dynamic on the structuring of the data to include differing ontology frameworks, it is necessary to develop a framework and toolset to handle the automated extraction of information from disparate information sources. In addition, this extracted information needs to be categorized properly into defined data types as represented in the specific MET to correctly capture the appropriate context of the mission scenario. Semantic technique solutions will be researched, analysed, and applied as a means to infer new facts from existing facts and data. These techniques are particularly powerful when the amount of data and/or the relationships and constraints among data are too cumbersome and complex for human understanding and reasoning. Using the characteristics of wine as an example, we present our framework to show how it enables rapid and contextually relevant extraction, and represents complex information in a user-friendly format.
面向任务工程应用的信息提取与本体开发
任务工程线程(METs)的开发和评估需要了解系统的系统(SoS)将被使用的操作环境,以及评估复杂SoS的性能是有效和安全的。描述SoS内系统的设计和性能参数的信息分布在许多不同的物理位置,并以各种格式(结构化和非结构化)表示。由于这种动态的数据结构包括不同的本体框架,因此有必要开发一个框架和工具集来处理从不同信息源中自动提取信息。此外,需要将提取的信息适当地分类到特定MET中表示的定义数据类型中,以正确捕获任务场景的适当上下文。语义技术解决方案将被研究、分析和应用,作为从现有事实和数据推断新事实的一种手段。当数据量和/或数据之间的关系和约束对于人类的理解和推理来说过于繁琐和复杂时,这些技术尤其强大。以葡萄酒的特征为例,我们展示了我们的框架,以展示它如何实现快速和上下文相关的提取,并以用户友好的格式表示复杂的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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