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Modeling uncertainty reasoning with possibilistic Petri nets

机译:用可能的Petri网建模不确定性推理

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Manipulation of perceptions is a remarkable human capability in a wide variety of physical and mental tasks under fuzzy or uncertain surroundings. Possibilistic reasoning can be treated as a mechanism that mimics human inference mechanisms with uncertain information. Petri nets are a graphical and mathematical modeling tool with powerful modeling and analytical ability. The focus of this paper is on the integration of Petri nets with possibilistic reasoning to reap the benefits of both formalisms. This integration leads to a possibilistic Petri nets model (PPN) with the following features. A possibilistic token carries information to describe an object and its corresponding possibility and necessity measures. Possibilistic transitions are classified into four types: inference transitions, duplication transitions, aggregation transitions, and aggregation-duplication transitions. A reasoning algorithm, based on possibilistic Petri nets, is also presented to improve the efficiency of possibilistic reasoning and an example related to diagnosis of cracks in reinforced concrete structures is used to illustrate the proposed approach.
机译:在模糊或不确定的环境下,操纵知觉是人类在各种身体和心理任务中的非凡能力。可能推理可以被视为一种模仿具有不确定信息的人类推理机制的机制。 Petri网是具有强大建模和分析能力的图形和数学建模工具。本文的重点是将Petri网与可能的推理相集成,以从两种形式主义中受益。这种集成导致具有以下功能的可能的Petri网模型(PPN)。可能令牌携带信息来描述对象及其相应的可能性和必要性措施。可能转换分为四种类型:推断转换,复制转换,聚合转换和聚合复制转换。提出了一种基于概率Petri网的推理算法,以提高概率推理的效率,并以一个与钢筋混凝土结构裂缝诊断有关的实例来说明该方法。

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