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Optimization modeling for the operation of closed-loop supply chains.

机译:闭环供应链运作的优化模型。

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摘要

Environmentally conscious manufacturing and remanufacturing/recycling of end-of-life products are steadily growing in importance. The problem of managing the waste generated due to the disposal of many types of products has many aspects. The main driving forces for solving this growing problem are the rapid diminishment of raw material resources, decreasing space in landfills and increasing levels of pollution. The drivers associated with these forces are governmental regulations which require that the manufacturers take back the end-of-life products and customer perspectives on environmental issues.; This research considers the problem of increasing levels of electronic and electrical equipments waste. The implementation of closed-loop supply chains can be beneficial both economically and ecologically for these problems. Relevant literature to understand various issues involved in the operation of reverse logistics systems and closed-loop supply chains is reviewed.; Upon reviewing the issues involved in closed-loop supply chains, the problem is considered as an ill-structured problem. A problem structuring technique called Why-What's Stopping Analysis is used to analyze the problem from various perspectives. Also, since a closed-loop supply chain involves multiple objectives, two techniques for categorizing the objectives into fundamental and means objectives are presented: Fundamental Objective Hierarchy and Means Objective Network techniques, respectively.; A Goal Program (GP) modeling approach is used to handle many of the objectives identified by the previously mentioned techniques. In this research a consolidated objective function is defined which includes all of the deviational variables considered in various goals defined in the model. The consolidated goal is to minimize the weighted sum of all deviational variables. A non preemptive goal programming approach has been used with goals being assigned different weights according to their priorities. The values of the deviational variables help the decision maker to see which of the different goals are satisfied with the existing values of parameters and which of the goals aren't.; The goal program has been run with both uniform and variable demand values in all the periods. In the absence of real data, all the parameter values considered for this research have been assumed. The major contributions of the research are as follows: each member of the supply chain has its own individual objective and the related constraints which is a more realistic approach, the model considers multiple products, and the model considers operations at the product, subassembly, part, and material levels. All the above contributions make this research as the first approach of its kind which has never been attempted (based on literature reviewed) and the goal programming methodology used is also a well accepted approach among all the multi-objective programming approaches.; Results show the effect of varying the priority/weight associated with a goal. Results also show that values of the deviational variables (positive or negative) help a decision maker to analyze the model. The goal programming approach is considered to be the most effective approach in terms of defining the mathematical model, analyzing the output, and modifying the model (if needed).
机译:注重环保的制造以及报废产品的再制造/再循环的重要性正在稳步增长。管理由于处置多种类型的产品而产生的废物的问题有很多方面。解决这一日益严重的问题的主要动力是原材料资源的迅速减少,垃圾掩埋场的减少以及污染水平的提高。与这些力量相关的驱动因素是政府法规,要求制造商收回报废产品和客户对环境问题的看法。这项研究考虑了电子电气设备废物水平日益增加的问题。闭环供应链的实施对于这些问题在经济和生态上都是有益的。审查了有关理解逆向物流系统和闭环供应链运作中涉及的各种问题的相关文献。在审查闭环供应链中涉及的问题时,该问题被认为是结构不良的问题。一种名为“为什么停止分析”的问题结构化技术可从多种角度分析问题。另外,由于闭环供应链涉及多个目标,因此提出了两种将目标分为基本目标和均值目标的技术:基本目标层次结构和均值目标网络技术。目标程序(GP)建模方法用于处理由前面提到的技术确定的许多目标。在这项研究中,定义了一个合并的目标函数,其中包括在模型中定义的各个目标中考虑的所有偏差变量。综合目标是使所有偏差变量的加权总和最小化。已经使用了一种非抢占式的目标编程方法,并根据其优先级为目标分配了不同的权重。偏差变量的值可帮助决策者查看使用参数的现有值满足哪些不同目标,以及哪些目标不满足。在所有期间,均以统一和可变需求值运行了目标程序。在没有实际数据的情况下,已假定了本研究考虑的所有参数值。该研究的主要贡献如下:供应链的每个成员都有其自己的目标和相关约束,这是一种更现实的方法,该模型考虑了多个产品,并且该模型考虑了产品,子装配体,零件的操作以及材料级别。所有上述贡献使这项研究成为从未尝试过的此类第一方法(根据文献综述),并且所使用的目标编程方法也是所有多目标编程方法中公认的方法。结果显示了改变与目标相关的优先级/权重的效果。结果还表明,偏差变量的值(正值或负值)有助于决策者分析模型。就定义数学模型,分析输出和修改模型(如果需要)而言,目标编程方法被认为是最有效的方法。

著录项

  • 作者

    Gupta, Aman.;

  • 作者单位

    University of Louisville.;

  • 授予单位 University of Louisville.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;
  • 关键词

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