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Configuration optimization methods for multi-echelon and multi-constraints spare parts based on dynamic demands

机译:基于动态需求的多级多约束备件配置优化方法

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摘要

To achieve quick and precise support, configuration optimization methods for multi-echelon spare parts of aviation material basic combat unit considering uncertainly demands and multi-constraints are studied. Selecting availability as comprehensive measurement parameter, availability modeling methods based on dynamic mission are proposed at first, which conclude spare parts demand models considering dynamic mission and instantaneous availability models and mission availability models for two-echelon spare parts support. Moreover, from economic efficiency and deploy flexibility, multi-constraints spare parts configuration optimization models are constructed considering cost, weight and volume. And the characteristics of objective function are analyzed. Solving arithmetic and flow of multi-constraints optimization models are given based on Lagrange duality theory. Finally, an example is provided to verify the validity of the models. The study can provide technological means for scientific configuration of basic combat unit multi-echelon spares parts, and at the same time, serve as theoretical support for effectively improving support availability of aviation material basic combat unit.
机译:为了获得快速,准确的支持,研究了考虑不确定需求和多约束条件的航空物资基础作战部队多级备件配置优化方法。首先选择可用性作为综合的测量参数,首先提出了基于动态任务的可用性建模方法,总结了考虑动态任务和瞬时可用性模型以及两级备件支持的任务可用性模型的备件需求模型。此外,从经济效率和部署灵活性的角度出发,考虑成本,重量和体积,构建了多约束备件配置优化模型。并分析了目标函数的特征。基于拉格朗日对偶理论,给出了多约束优化模型的求解算法和流程。最后,提供一个示例来验证模型的有效性。该研究可为基础作战部队多级备件的科学配置提供技术手段,同时为有效提高航空物资基础作战部队的保障可用性提供理论支持。

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