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A novel layered fuzzy Petri nets modelling and reasoning method for process equipment failure risk assessment

机译:一种新型分层模糊Petri网络建模与工艺设备故障风险评估推理方法

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摘要

The continuous and stable operations of equipment are the crucial factor for the safety of process industries. Risk assessment has demonstrated its capabilities as a practical method to analyze and prevent process equipment failure. Since the status of equipment is mainly determined by its components and the coupling relationship is complex, a systematical and practicable method is needed to help risk assessment. Petri nets provide a graphical and mathematical representation for risk modelling and reasoning. With the complexity of equipment, there could be lots of diagnosis rules, which makes the network complicated and huge. In order to describe the coupling relationship clearly and make the computational process flexible, a layered Petri nets method is presented in this context to conduct complex rule-based risk analysis and assessment. Moreover, The fuzzy logic is introduced to represent expert knowledge in a semi-quantitative way. The method presented was applied for assessing the risk of reciprocating compressor failure, which is the supercharging equipment widely used in the natural gas transportation process.
机译:设备的连续和稳定操作是工艺行业安全的关键因素。风险评估证明其能力作为分析和防止过程设备故障的实用方法。由于设备的状态主要由其组件决定,并且耦合关系复杂,因此需要一种系统和可行的方法来帮助风险评估。 Petri网提供风险建模和推理的图形和数学表示。随着设备的复杂性,可能存在许多诊断规则,这使得网络复杂和巨大。为了清楚地描述耦合关系并使计算过程柔性,在这种情况下提出了一种分层的Petri网方法,以进行复杂的基于规则的风险分析和评估。此外,引入模糊逻辑以半量值的方式代表专业知识。呈现的方法应用于评估往复式压缩机故障的风险,这是天然气运输过程中广泛应用的增压设备。

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