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A Cost Model for Repairable System Considering Multi-failure type over Finite Time Horizon

机译:有限时间范围内考虑多故障类型的可修复系统成本模型

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In general, downtime of a system can be attributed due to multiple failure categories and repair costs for each failure categories can be different. Many of these failure types are repaired to a state which can be called as bad as old and such repair actions are termed as "minimal repair". Many system or components are replaced after a certain number of such minimal repair actions. In this study, we intend to prove that if the system failure process can be described by NHPP (Non Homogenous Poisson Process), then each failure category can also be modelled by NHPP. Based on this, a cost model is developed by using the decomposition of the NHPP and renewal theory. Using the cost model, a model is developed to obtain the optimal number of minimum repair action every failure category. Since it is not possible to find any analytical solution, solution to the renewal function, an approximate approach is introduced to obtain numerical solution. Finally, a numerical example is presented to demonstrate the method.
机译:通常,由于多个故障类别,可以将系统的停机时间归因于每个故障类别,并且维修成本可能不同。这些故障类型中的许多都被修复为可以称为坏的状态,这种修复动作被称为“最小修复”。一定数量的此类最少维修操作后,将更换许多系统或组件。在这项研究中,我们打算证明,如果系统故障过程可以用NHPP(非均质泊松过程)描述,那么每个故障类别也可以用NHPP建模。在此基础上,利用NHPP的分解和更新理论建立了成本模型。使用成本模型,可以开发一个模型,以获取每个故障类别的最小维修措施的最佳数量。由于不可能找到任何解析解,即更新函数的解,因此引入了一种近似方法来获得数值解。最后,通过数值例子说明了该方法。

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