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Failure modes, effects and criticality analysis (FMECA) of power electronic devices using fuzzy logic

机译:使用模糊逻辑的电力电子设备故障模式,影响和临界度分析(FMECA)

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The objective of this paper is to present an efficient methodology for the Failure Modes Effects and Criticality Analysis (FMECA) of power electronic devices. The methodology uses fuzzy sets to represent the parameters being used in the conventional FMECA and a knowledge base is developed to identify the rules governing the fuzzy inputs and output. A fuzzy failure mode risk index is introduced to prioritise the criticality of the components for the system operation. The fuzzy inference module is Mam-dani type and uses the min-max implication-aggregation method while it was developed in Matlab 6.1. The developed methodology was applied to a typical power electronic device such as a switched-mode-power-supply. The required data of the component failure modes were estimated using a reliability prediction procedure and a failure mode database. The crisp values of the conventional FMECA were used as inputs to the fuzzy FMECA and the fuzzy failure mode risk indices were calculated and compared with the respective indices calculated by the conventional FMECA.
机译:本文的目的是提出一种有效的方法,用于电力电子设备的失效模式影响和临界分析(FMECA)。该方法使用模糊集表示常规FMECA中使用的参数,并开发了知识库来识别控制模糊输入和输出的规则。引入模糊故障模式风险指数以优先考虑系统运行组件的关键性。模糊推理模块是Mam-dani类型,在Matlab 6.1中开发时使用了最小-最大蕴涵-聚合方法。所开发的方法已应用于典型的电力电子设备,例如开关电源。使用可靠性预测程序和故障模式数据库估算了组件故障模式所需的数据。将常规FMECA的清晰值用作模糊FMECA的输入,并计算出模糊失效模式风险指数,并将其与常规FMECA计算的各个指数进行比较。

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