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A qualified description of extended fuzzy logic

机译:扩展模糊逻辑的合格描述

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The sense of approximate reasoning within fuzzy logic has given rise to speculation as to whether precise reasoning within classical logic can even be considered a feasible way of handling most of the world's problems. Now, another question can be raised; can fuzzy logic, by itself, justify/handle the sort of uncertainty found in problems that belong to the class of open world problems? This family of problems corresponds to the case of ambiguous mathematical theories mainly due to the fact that there is just imperfect/incomplete information about them. Recently, Zadeh introduced an extension of fuzzy logic, claimed to bridge the gaps in conventional approaches to the open world problems. In this paper, we present a basic background of extended fuzzy logic (FLe). We address several main concepts such as f-transformation and f-validity, enhance the definition of generalized constraints, and propose that FLe's rules have two layers: one based on the implication model and another based on the conjunction model. In addition, we explore how FLe can handle those conditions described in antonym pairs as well as those occurred without considering rationality in the framework. Both cases challenge most decision-making theories. We also suggest FLe and second-order probability are f-complementary rather than f-competitive. The paper asserts that FLe is highly capable of constructing mathematical solutions to problems (including computational problems) that are stated in natural language.
机译:模糊逻辑内的近似推理感引起了猜测古典逻辑中的精确推理是否可以被视为处理世界上大部分问题的可行方式。现在,可以提出另一个问题;可以模糊逻辑,本身可以证明/处理属于开放世界类别的问题中的存在的不确定性吗?这一家庭的问题对应于模糊数学理论的情况,主要是由于关于它们的不完美/不完整的信息。最近,Zadeh引入了模糊逻辑的延伸,声称将常规方法的差距弥合在开放的世界问题中。在本文中,我们展示了延长模糊逻辑(FLE)的基本背景。我们解决了若干主要概念,如F转型和F-validity,增强了广义约束的定义,并提出了Fle的规则具有两层:一个基于含义模型和基于联合模型的另一个层。此外,我们探索飞行如何处理对反义剧中描述的那些条件以及发生的那些条件,而不是考虑框架中的合理性。这两种情况都挑战了大多数决策理论。我们还建议Fle,二阶概率是F互补而不是F竞争力。该论文断言,FLE能够强大能够构建自然语言中所述的问题(包括计算问题)的数学解决方案。

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