Belief Reliability Modeling for a System with Degradation Interaction Effect

Hao Li, Fangyou Fu, Fuqiang Sun
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Abstract

Complex systems often have multiple performance characteristics deteriorating with time. Due to the influence of some common factors (such as internal structure, application experience, environmental operating conditions, etc.), the dependence among multiple performance characteristics should be considered. Aiming at the problem of how to describe the coupling relationship of multiple degradation processes, a reliability modeling method for a system with bivariate dependent degradation processes based on the belief reliability theory and degradation interaction effect is proposed in this paper. Firstly, the degradation interaction effect is employed to describe the dependence between two performance characteristics during their degradation evolution process. Secondly, the degradation equation, margin equation and matric equation of two performance characteristics are established according to the belief reliability theory framework. Then, the statistical inference method based on genetic algorithm is used to estimate the unknown parameters. Finally, a real application on the tuner is provided to illustrate the performance of the proposed model and statistical estimation method.
具有退化交互效应系统的信念可靠性建模
复杂系统通常具有多种性能特征,并随着时间的推移而退化。由于一些共同因素(如内部结构、应用经验、环境运行条件等)的影响,应考虑多种性能特征之间的依赖关系。针对如何描述多个退化过程的耦合关系问题,提出了一种基于信念可靠性理论和退化交互效应的二元依赖退化过程系统的可靠性建模方法。首先,利用退化交互效应来描述两种性能特征在退化演化过程中的依赖关系。其次,根据信度理论框架,建立了两种性能特性的退化方程、裕度方程和矩阵方程;然后,采用基于遗传算法的统计推理方法对未知参数进行估计。最后,给出了在调谐器上的实际应用,以说明所提模型和统计估计方法的性能。
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