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Joint optimization of maintenance and inventory policies for multi-unit systems

机译:多单元系统的维护和库存策略联合优化

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摘要

A maintenance policy and the management of the inventory of spare parts and their joint optimization often challenge managers and researchers. In this paper, the first analytical joint optimization model is established. A simulation model is then developed for the system operating under the suggested condition-based maintenance to optimize the maintenance outline of mining dump truck motors based on oil monitoring. Our model is combined with a genetic algorithm to obtain the optimal response. In the presented model, the Inspection intervals (T) and the maximum stock level (S) are jointly optimized for minimizing cost. To build a sample and a simulation of various repair events, 11,000 oil analysis data is used. The deterioration of spare parts is shown with an increasing numerical variable over time, which follows a function. Using the existing datasets, the deterioration rate function is obtained. Another process required for simulation is the failure probability function. Due to the extent of deterioration with various breakdowns, there are uncertainties and different values. Condition-based maintenance is used to determine the deterioration level of failure. In the end, the results of the simulation are compared with the current costs resulting from the workshop policies.
机译:维护政策和备件清单的管理及其联合优化经常挑战经理和研究人员。本文建立了第一分析联合优化模型。然后为基于建议的条件的维护下运行的系统开发了一种模拟模型,以优化基于油监测的采矿自卸车电机的维护轮廓。我们的模型与遗传算法相结合以获得最佳响应。在所提出的模型中,检查间隔(T)和最大库存水平是为了最小化成本而共同优化。为构建样本和模拟各种修复事件,使用了11,000个油分析数据。备件的劣化显示在随着时间的推移随着时间的推移,随着时间的推移,备用变量增加。使用现有数据集,获得了劣化率函数。模拟所需的另一个过程是故障概率函数。由于各种崩溃的恶化程度,存在不确定性和不同的值。条件的维护用于确定失败的恶化水平。最后,将模拟结果与研讨会策略产生的当前成本进行了比较。

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