UML knowledge model for measurement process including uncertainty of measurement

Priyanka Bharti, Qingping Yang, A. Forbes, Yacine Koucha
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引用次数: 1

Abstract

Measurement technology has made an enormous progress in the last decade. With the advent of knowledge representation, various object-oriented models for measurement systems have been developed in the past. Most common limitations of all these models were not incorporating the uncertainty in the measurement process. In this paper, we proposed an object-oriented model depicting the information and knowledge flow in the measurement process, including the measurement uncertainty. The model has three major object classes, namely measurement planning, measurement system and analysis & documentation. These are further classified into sub-classes and relationships amongst them. Attributes and operations are also defined within the classes. This gives a practical and conceptual view of knowledge in the form of object-model for measurement processes. A case study is presented which evaluates the uncertainty of the measurement of a 100 mm gauge block, using both Type A and Type B evaluation methods of the GUM approach.This case study is very similar to the evaluation of calibration uncertainty of CMM. This model can be converted into semantic knowledge representation such as ontology of measurement process domain. Other use of this model is to support the quality engineering in manufacturing industry and research.
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测量过程的UML知识模型,包括测量不确定度
测量技术在过去十年中取得了巨大的进步。随着知识表示的出现,过去开发了各种面向对象的测量系统模型。所有这些模型最常见的限制是没有在测量过程中纳入不确定性。在本文中,我们提出了一个面向对象的模型来描述测量过程中的信息和知识流,包括测量不确定度。该模型有三个主要对象类,即测量计划、测量系统和分析与文档。它们被进一步划分为子类和它们之间的关系。属性和操作也在类中定义。这给了测量过程的对象模型形式的知识的实际和概念性的观点。给出了一个应用GUM方法的A型和B型评估方法对100mm量块测量不确定度进行评估的实例研究。本案例与三坐标测量机标定不确定度的评定非常相似。该模型可以转换为测量过程域本体等语义知识表示形式。该模型的其他用途是支持制造业的质量工程和研究。
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来源期刊
International Journal of Metrology and Quality Engineering
International Journal of Metrology and Quality Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.70
自引率
0.00%
发文量
8
审稿时长
8 weeks
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