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Virtual series-system models of imperfect repair

机译:不完全修复的虚拟系列系统模型

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Novel models of imperfect repair are fitted to classic reliability datasets. The models suppose that a virtual system comprises a component and a remainder in series. On failure of the component, the component is renewed, and on failure of the remainder, the component is renewed and the remainder is minimally repaired. It follows that the repair process is a counting process that is the superposition of a renewal process and a Poisson process. The repair effect, that is, the extent to the system is repaired by renewal of the component, depends on the relative intensities of the superposed processes. The repair effect may be negative, when the intensity of the part that is a renewal process is a decreasing function. Other special cases of the model exist (renewal process, Poisson process, superposed renewal process and homogeneous Poisson process). Model fit is important because the nature of the model and corresponding parameter values determine the effectiveness of maintenance, which we also consider. A cost-minimising repair policy may be determined provided the cost of preventive-repair is less than the cost of corrective-repair and the repairable part is ageing. If the remainder is ageing, then policy needs to be adapted as it ages.
机译:完美修复的新型模型适合经典的可靠性数据集。这些模型假定虚拟系统包括一个组件和一个串联的其余部分。组件发生故障时,将对组件进行更新,其余组件发生故障时,将对组件进行更新,并对其余组件进行最少的维修。因此,修复过程是一个计数过程,是续签过程和泊松过程的叠加。修复效果,即通过组件更新来修复系统的程度,取决于叠加过程的相对强度。当作为更新过程的零件的强度降低时,修复效果可能为负。存在模型的其他特殊情况(更新过程,泊松过程,叠加更新过程和齐次泊松过程)。模型拟合非常重要,因为模型的性质和相应的参数值决定了维护的有效性,这也是我们要考虑的。如果预防性维修的费用少于纠正性维修的费用且可维修部件老化,则可以确定成本最小的维修政策。如果其余部分正在老化,则需要在老化时调整策略。

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