Uncertainty in the Conjunctive Approach to Fuzzy Inference

IF 1.6 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS
P. Kudlacik
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引用次数: 1

Abstract

Abstract Fuzzy inference using the conjunctive approach is very popular in many practical applications. It is intuitive for engineers, simple to understand, and characterized by the lowest computational complexity. However, it leads to incorrect results in the cases when the relationship between a fact and a premise is undefined. This article analyses the problem thoroughly and provides several possible solutions. The drawbacks of uncertainty in the conjunctive approach are presented using fuzzy inference based on a fuzzy truth value, first introduced by Baldwin (1979c). The theory of inference is completed with a new truth function named 0-undefined for two-valued logic, which is further generalized into fuzzy logic as α-undefined. Eventually, the proposed modifications allow altering existing implementations of conjunctive fuzzy systems to interpret the undefined state, giving adequate results.
模糊推理联合方法中的不确定性
摘要使用合取方法进行模糊推理在许多实际应用中非常流行。它对工程师来说是直观的,易于理解,并且具有最低的计算复杂性。然而,当事实和前提之间的关系不明确时,它会导致不正确的结果。本文对这一问题进行了深入的分析,并提出了几种可能的解决方案。通过基于模糊真值的模糊推理,提出了连接方法中不确定性的缺点,该方法首先由Baldwin (1979c)提出。用二值逻辑的真值函数0-undefined完成了推理理论,并将其推广到模糊逻辑中为α-undefined。最后,提出的修改允许改变现有的连接模糊系统的实现来解释未定义状态,给出适当的结果。
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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来源期刊
CiteScore
4.10
自引率
21.10%
发文量
0
审稿时长
4.2 months
期刊介绍: The International Journal of Applied Mathematics and Computer Science is a quarterly published in Poland since 1991 by the University of Zielona Góra in partnership with De Gruyter Poland (Sciendo) and Lubuskie Scientific Society, under the auspices of the Committee on Automatic Control and Robotics of the Polish Academy of Sciences. The journal strives to meet the demand for the presentation of interdisciplinary research in various fields related to control theory, applied mathematics, scientific computing and computer science. In particular, it publishes high quality original research results in the following areas: -modern control theory and practice- artificial intelligence methods and their applications- applied mathematics and mathematical optimisation techniques- mathematical methods in engineering, computer science, and biology.
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