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Piecewise modelling and parameterestimation of repairable system failure rate

机译:分段建模和参数可修复系统故障率的估计

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摘要

Lifetime failure data usually presents a bathtub-shaped failure rate, and random failure phase dominates its life cycle. Relatively large errors always existed when single distribution model is used for analysis and modelling. Therefore, a bathtub-shaped reliability model based on piecewise intensity function was proposed for repairable system. Parameter estimation was studied by using maximum likelihood method in conjunction with two-stage Weibull process interval estimation and Artificial Bee Colony Algorithm. The proposed model and estimation approach fit the failure rate under bathtub curve very well, adequately reflect the duration of random failure phase, and guarantee the feasibility of quantitative analysis. Moreover, the estimated critical point of bathtub curve could be calculated. At last, the proposed model was applied in the reliability analysis of a repairable Computer Numerical Control system, and the validity of the proposed model and its parameter estimation method were verified.
机译:终生故障数据通常呈现出浴缸状的故障率,而随机故障阶段则主导着其生命周期。当使用单一分布模型进行分析和建模时,总是会存在相对较大的误差。因此,提出了一种基于分段强度函数的浴缸形可靠性模型。结合最大似然法,两阶段Weibull过程区间估计和人工蜂群算法,对参数估计进行了研究。提出的模型和估计方法很好地拟合了浴缸曲线下的失效率,充分反映了随机破坏阶段的持续时间,并保证了定量分析的可行性。此外,可以计算出浴缸曲线的临界点。最后,将该模型应用于可修复计算机数控系统的可靠性分析中,验证了该模型及其参数估计方法的有效性。

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