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Eco-efficient management of a feeding system in an automobile assembly-line

机译:汽车装配线中的饲养系统的生态高效管理

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Purpose - This study aims to reduce carbon emissions and costs in an automobile production plant by improving the operational management efficiency of a serial assembly line assisted by a feeding electric tow vehicle (ETV). Design/methodology/approach - A multi-objective function is formulated to minimize the energy consumption of the ETV from which emissions and costs are measured. First, a mixed-integer linear programming model is used to solve the feeding problem for different sizes of the assembly line. Second, a bi-objective optimization (HBOO) model is used to simultaneously minimize the most eco-efficient objectives: the number of completed runs (tours) by the ETV along the assembly line, and the number of visits (stops) made by the ETV to deliver kits of components to workstations. Findings - The most eco-efficient strategy is always the bi-objective optimal solution regardless of the size of the assembly line, whereas, for single objectives, the optimization strategy differs depending on the size of the assembly line. Research limitations/implications - Instances of the problem are randomly generated to reproduce real conditions of a particular automotive factory according to a previous case study. The optimization procedure allows managers to assess real scenarios improving the assembly line eco-efficiency. These results promote the implementation of automated control of feeding processes in green manufacturing. Originality/value - The HBOO-model assesses the assembly line performance with a view to reducing the environmental impact effectively and contributes to reducing the existent gap in the literature. The optimization results define key strategies for manufacturing industries eager to integrate battery-operated motors or to address inefficient traffic of automated transport to curb the carbon footprint.
机译:目的 - 本研究旨在通过提高送料电动牵引车(ETV)辅助的串行装配线的运行管理效率降低汽车生产设备中的碳排放和成本。设计/方法/方法 - 配制多目标函数以最小化测量排放和成本的ETV的能量消耗。首先,使用混合整数线性编程模型来解决组装线的不同尺寸的馈电问题。其次,双目标优化(HBOE)模型用于同时最小化最有效的目标:沿着装配线沿ETV的​​完成运行(TOWS)的数量,以及由此产生的访问数(停止) ETV将组件套件提供给工作站。调查结果 - 最生态的策略始终是双目标最佳解决方案,无论装配线的大小如何,而对于单一目标,优化策略根据装配线的尺寸而不同。研究限制/含义 - 根据先前的案例研究,随机产生问题的实例以重现特定汽车工厂的真实条件。优化过程允许管理人员评估改善装配线生态效率的实际方案。这些结果促进了绿色制造中饲养过程自动控制的实施。原创性/值 - HBOEM-MODEM评估装配线性能,以有效地减少环境影响,有助于降低文献中存在的差距。优化结果定义了制造工业渴望集成电池电机电机的关键策略或解决自动运输的低效交通来抑制碳足迹。

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