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A mixed-integer linear programming model for integrated production and preventive maintenance scheduling in the capital goods industry

机译:混合整数线性规划模型,用于资本货物行业的集成生产和预防性维护计划

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摘要

The scheduling literature is extensive, but much of this work is theoretical and does not capture the complexity of real world systems. Capital goods companies produce products with deep and complex product structures, each of which requires the coordination of jobbing, batch, flow and assembly processes. Many components require numerous operations on multiple machines. Integrated scheduling problems simultaneously consider two or more simultaneous decisions. Previous production scheduling research in the capital goods industry has neglected maintenance scheduling and used metaheuristics with stochastic search that cannot guarantee an optimal solution. This paper presents a novel mixed integer linear programming model for simultaneously solving the integrated production and preventive maintenance scheduling problem in the capital goods industry, which was tested using data from a collaborating company. The objective was to minimise total costs including: tardiness and earliness penalty costs; component and assembly holding costs; preventive maintenance costs; and set-up, production, transfer and production idle time costs. Thus, the objective function and problem formulation were more extensive than previous research. The tool was successfully tested using data obtained from a collaborating company. It was found that the company's total cost could be reduced by up to 63.5%.
机译:调度方面的文献非常丰富,但是其中的大部分工作都是理论性的,并未涵盖现实世界系统的复杂性。资本货物公司生产的产品具有复杂的产品结构,每种产品都需要协调工作,批生产,流程和组装过程。许多组件需要在多台机器上进行大量操作。集成调度问题同时考虑两个或多个同时决策。先前在资本货物行业中的生产调度研究忽略了维护调度,并在随机搜索中使用了元启发法,这种算法无法保证最优解决方案。本文提出了一种新颖的混合整数线性规划模型,用于同时解决资本货物行业的集成生产和预防性维护计划问题,并使用合作公司的数据进行了测试。目的是使总成本降至最低,包括:延误和提前处罚成本;零件和组件的持有成本;预防性维护费用;以及设置,生产,传输和生产空闲时间的成本。因此,目标函数和问题表述比以前的研究更为广泛。使用从合作公司获得的数据成功测试了该工具。发现该公司的总成本最多可以降低63.5%。

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