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Production planning in remanufacturing/manufacturing production system

机译:再制造/制造生产系统中的生产计划

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Remanufacturing end-of-use product is considered as one effective way to provide ecologically sustainable production industry. Realizing promising business opportunities of remanufacturing in addition to its contribution in saving the environment, this is the time for manufacturers to consider performing remanufacturing production activities accompanying their existing manufacturing. Including remanufacturing, production system is significantly different from conventional manufacturing production system. Instead of single forward flow of material in conventional supply chain, system now contains two material flows, named conventional manufacturing flow sourcing from new materials, and recovery flow sourcing from end-of-use products returned back to the production system. Therefore, to use current conventional production planning models in remanufacturing/manufacturing production system (RMPS) is questionable, and the optimal structure of the production system is still need to be further explored. This research focuses on this two flows characteristic and the return process that occurred in RMPS. We recognize that return process of end-of-use products forms sort of cyclical, or looping process in the system, that product release (sales to fulfill demands) and return affect each other, and have significant influence for system performance. For optimal production planning, a cyclic optimization approach is introduced here. The basic idea is to simultaneously consider the whole cyclical process in the system that caused by the return of end-of-use products, and allowing product release and return process to be treated as variables to be determined in generating optimal production plan. Besides remanufacturing and manufacturing production activities, disposing or sending excessive returned end-of-use parts (products) to material recycler are also carefully considered in production planning mechanism, along with all respective inventories. Based on the approach, a linear programming model for generating production plan in capacitated RMPS producing multi products with common parts is constructed, and applied in a numerical example. The result shows a superior optimality performance compared to conventional approach, as a merit that the whole cyclical process are now being included in optimal solution generation model.
机译:再制造最终产品被认为是提供生态可持续生产产业的一种有效方法。除了在保护环境方面做出贡献外,还实现了再制造的良好商机,现在是制造商考虑与现有制造同时进行再制造生产活动的时候。包括再制造在内,生产系统与常规制造生产系统明显不同。现在,系统不再包含传统供应链中的单一物料流,而是包含两种物料流,分别是从新物料中进行常规生产流程采购,以及从使用后产品返回生产系统的回收流程采购。因此,在再制造/再生产系统(RMPS)中使用当前的常规生产计划模型是有问题的,并且仍然需要进一步探索生产系统的最佳结构。这项研究集中在这两个流程特征以及在RMPS中发生的回流过程。我们认识到,最终用途产品的退货过程在系统中形成某种循环或循环过程,产品的发布(满足需求的销售)和退货会相互影响,并且对系统性能产生重大影响。为了优化生产计划,此处介绍了一种循环优化方法。基本思想是同时考虑由最终用途产品的退货引起的系统中的整个循环过程,并允许将产品的释放和退货过程视为在生成最佳生产计划时要确定的变量。除了重新制造和生产活动外,在生产计划机制中还应仔细考虑将过多的退还使用后的零件(产品)处置或发送给材料回收商,以及所有相应的库存。在此方法的基础上,构建了一种线性规划模型,该模型用于在带容量的RMPS中生产具有通用零件的多个产品中的生产计划,并将其应用于数值示例中。结果表明,与传统方法相比,其最优性能更高,这是因为整个循环过程现在已包含在最优解决方案生成模型中。

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