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A fuzzy Petri net-based expert system and its application to damage assessment of bridges

机译:基于模糊Petri网的专家系统及其在桥梁损伤评估中的应用

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In this paper, a fuzzy Petri net approach to modeling fuzzy rule-based reasoning is proposed to bring together the possibilistic entailment and the fuzzy reasoning to handle uncertain and imprecise information. The three key components in our fuzzy rule-based reasoning-fuzzy propositions, truth-qualified fuzzy rules, and truth-qualified fuzzy facts-can be formulated as fuzzy places, uncertain transitions, and uncertain fuzzy tokens, respectively. Four types of uncertain transitions-inference, aggregation, duplication, and aggregation-duplication transitions-are introduced to fulfil the mechanism of fuzzy rule-based reasoning. A framework of integrated expert systems based on our fuzzy Petri net, called fuzzy Petri net-based expert system (FPNES), is implemented in Java. Major features of FPNES include knowledge representation through the use of hierarchical fuzzy Petri nets, a reasoning mechanism based on fuzzy Petri nets, and transformation of modularized fuzzy rule bases into hierarchical fuzzy Petri nets. An application to the damage assessment of the Da-Shi bridge in Taiwan is used as an illustrative example of FPNES.
机译:本文提出了一种基于模糊规则的推理的模糊Petri网方法,将可能的蕴涵和模糊推理结合在一起,以处理不确定和不精确的信息。我们基于模糊规则的推理中的三个关键组成部分-模糊命题,符合条件的模糊规则和符合条件的模糊事实-可以分别表述为模糊位置,不确定过渡和不确定模糊标记。为了实现基于模糊规则的推理机制,引入了四种类型的不确定性转换:推理,聚合,复制和聚合-复制转换。在Java中实现了基于我们的模糊Petri网的集成专家系统框架,称为基于模糊Petri网的专家系统(FPNES)。 FPNES的主要特征包括通过使用分层模糊Petri网进行知识表示,基于模糊Petri网的推理机制以及将模块化模糊规则库转换为分层模糊Petri网。以台湾大石桥的损伤评估为例,以FPNES为例。

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