A General Mathematical Approach Based on the Possibility Theory for Handling Measurement Results and All Uncertainties

S. Salicone, Harsha Vardhana Jetti
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引用次数: 1

Abstract

The concept of measurement uncertainty was introduced in the 1990s by the “Guide to the expression of uncertainty in measurement”, known as GUM. The word uncertainty has a lexical meaning and reflects the lack of exact knowledge or lack of complete knowledge about the value of the measurand. Thanks to the suggestions in the GUM and following the mathematical probabilistic approaches therein proposed, an uncertainty value can be found and be associated to the measured value. In the last decades, however, other methods have been proposed in the literature, which try to encompass the definitions of the GUM, thus overcoming its limitations. Some of these methods are based on the possibility theory, such as the one known as the RFV method. The aim of this paper is to briefly recall the RFV method, starting from the very beginning and the initial motivations, and summarize in a unique paper the most relevant obtained results.
基于可能性理论的处理测量结果和所有不确定性的一般数学方法
测量不确定度的概念是在20世纪90年代由《测量不确定度表达指南》(简称GUM)引入的。不确定性这个词有一个词汇意义,反映了对测量值缺乏确切的知识或缺乏完整的知识。根据GUM中的建议和其中提出的数学概率方法,可以找到一个不确定值并将其与测量值相关联。然而,在过去的几十年里,文献中提出了其他方法,这些方法试图包含GUM的定义,从而克服其局限性。其中一些方法是基于可能性理论,如RFV方法。本文的目的是简要回顾RFV方法,从最开始和最初的动机开始,并在一篇独特的论文中总结最相关的获得结果。
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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