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A management model for closed-loop supply chains of reusable articles

机译:可重复使用物品的闭环供应链管理模型

摘要

This PhD dissertation is framed in the emergent fields of Reverse Logistics and ClosedLoop Supply Chain (CLSC) management. This subarea of supply chain management has gained researchers and practitioners' attention over the last 15 years to become a fully recognized subdiscipline of the Operations Management field. More specifically,udamong all the activities that are included within the CLSC area, the focus of this dissertation is centered in direct reuse aspects. The main contribution of this dissertation to current knowledge is twofold. First, audframework for the so-called reuse CLSC is developed. This conceptual model is grounded in a set of six case studies conducted by the author in real industrial settings. The model has also been contrasted with existing literature and with academic and professional experts on the topic as well. The framework encompasses four building blocks. In the first block, a typology for reusable articles is put forward, distinguishing between Returnable Transport Items (RTI), Reusable Packaging Materials (RPM), and Reusable Products (RP). In the second block, the common characteristics that render reuse CLSC difficult to manage from a logistical standpoint are identified, namely: fleet shrinkage, significant investment and limited visibility. In the third block, the main problems arising in the management of reuse CLSC are analyzed, such as: (1) define fleet size dimension, (2) control cycle time and promote articles rotation, (3) controludreturn rate and prevent shrinkage, (4) define purchase policies for new articles, (5) plan and control reconditioning activities, and (6) balance inventory between depots. Finally, in the fourth block some solutions to those issues are developed. Firstly, problems (2) and (3) are addressed through the comparative analysis of alternative strategies for controlling cycle time and return rate. Secondly, a methodology for calculating the required fleet size is elaborated (problem (1)). This methodology is valid for different configurations of the physical flows in the reuse CLSC. Likewise, some directions are pointed out for further development of a similar method for defining purchase policies for new articles (problem (4)). The second main contribution of this dissertation is embedded in the solutions part (block 4) of the conceptual framework and comprises a two-level decision problemudintegrating two mixed integer linear programming (MILP) models that have been formulated and solved to optimality using AIMMS as modeling language, CPLEX as solver and Excel spreadsheet for data introduction and output presentation. The results obtained are analyzed in order to measure in a client-supplier system the economic impact of two alternative control strategies (recovery policies) in the context of reuse. In addition, the models support decision-making regarding the selection of the appropriate recovery policy against the characteristics of demand pattern and the structure of the relevant costs in the system. The triangulation of methods used in this thesis has enabled to address the same research topic with different approaches and thus, the robustness of the results obtained is strengthened.
机译:本博士论文框架在反向物流和闭环供应链(CLSC)管理的新兴领域。在过去的15年中,供应链管理的这一领域吸引了研究人员和从业人员的注意力,成为运营管理领域公认的子学科。更具体地说,在CLSC领域内的所有活动中,本文的重点集中在直接重用方面。本文对当前知识的主要贡献是双重的。首先,为所谓的重用CLSC开发了一个 udframework。该概念模型基于作者在实际工业环境中进行的六个案例研究。该模型还与现有文献以及该主题的学术和专业专家进行了对比。该框架包含四个构建块。在第一部分中,提出了可重复使用物品的类型,以区分可回收运输物品(RTI),可重复使用包装材料(RPM)和可重复使用产品(RP)。在第二个块中,从物流的角度确定了使重用CLSC难以管理的共同特征,即:机队收缩,大量投资和有限的可见性。在第三块中,分析了重复使用CLSC管理中出现的主要问题,例如:(1)定义车队规模尺寸;(2)控制周期时间并促进物品旋转;(3)控制退货率并防止收缩,(4)定义新商品的购买政策,(5)计划和控制修复活动,以及(6)在各个仓库之间平衡库存。最后,在第四块中,针对这些问题提出了一些解决方案。首先,通过比较分析控制周期时间和返回率的替代策略来解决问题(2)和(3)。其次,阐述了一种计算所需机队规模的方法(问题(1))。该方法对于重用CLSC中的物理流的不同配置有效。同样,指出了一些方向,以进一步开发用于定义新商品的购买政策的类似方法(问题(4))。论文的第二个主要贡献被嵌入到概念框架的解决方案部分(第4块)中,包括一个两级决策问题将两个已混合的混合整数线性规划(MILP)模型进行积分,并已使用AIMMS对其进行了求解。作为建模语言,CPLEX作为求解器,以及Excel电子表格,用于数据导入和输出表示。分析所获得的结果,以便在客户-供应商系统中测量在重用的情况下两种替代控制策略(恢复策略)的经济影响。此外,这些模型支持根据需求模式的特征和系统中相关成本的结构来选择适当的回收策略的决策。本文所用方法的三角剖分使得能够以不同的方法解决同一研究课题,从而增强了所得结果的鲁棒性。

著录项

  • 作者

    Carrasco Gallego Ruth;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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