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A unified complex network framework for environmental decision-making with applications to green logistics and electronic waste recycling.

机译:用于环境决策的统一复杂网络框架,应用于绿色物流和电子废物回收。

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摘要

In this dissertation, I developed a unified complex network framework for environmental decision-making. I focused on complex network systems arising in the context of green logistics, including global supply chains, and electronic waste recycling. The framework that I developed is able to handle many decision-makers at the tiers of the networks, and enables the prediction of the flows of the materials between tiers as well as the prices at the tiers, along with the emissions generated, and the incurred costs and profits.; I first developed a theoretical framework for supply chain networks with environmental concerns in the context of decision-making in the Information Age today. I allowed different decision-makers to weight the criteria (including the environmental ones) in distinct fashion. Subsequently, I generalized the original model to a global supply chain network model which included environmental criteria, electronic commerce, and risk management.; I then developed an integrated reverse supply chain management framework that allows for the modeling, analysis, and computation of the material flows as well as the prices associated with the different tiers in the multitiered electronic recycling network. I also extended this model in order to deal with the environmental risk caused by hazardous material generated from the recycling processes. I assumed that the environmental risk due to hazardous material depends on the amount of residual hazardous material that is not extracted from electronic wastes by the processor as well as on the storage amount of hazardous waste that is not disposed yet by the hazardous material disposer.; The models and computational methods were based on the methodologies of variational inequality theory for the study of the statics (cf. Nagurney (1999)) and projected dynamical systems for the dynamics (cf. Nagurney and Zhang (1996)).
机译:本文针对环境决策开发了统一的复杂网络框架。我专注于在绿色物流环境下出现的复杂网络系统,包括全球供应链和电子废物回收。我开发的框架能够处理网络层上的许多决策者,并能够预测层之间的物料流以及层的价格,以及产生的排放量和产生的排放量。成本和利润。我首先在当今信息时代的决策环境中为具有环境问题的供应链网络开发了一个理论框架。我允许不同的决策者以不同的方式对标准(包括环境标准)进行加权。随后,我将原始模型推广到一个全球供应链网络模型,其中包括环境标准,电子商务和风险管理。然后,我开发了一个集成的逆向供应链管理框架,该框架允许对物料流以及与多层电子回收网络中不同层级相关的价格进行建模,分析和计算。我还扩展了该模型,以应对由回收过程中产生的有害物质引起的环境风险。我认为,由有害物质引起的环境风险取决于处理器未从电子废物中提取的残余有害物质的量以及尚未由有害物质处置者处置的危险废物的存储量。这些模型和计算方法基于变分不等式理论的方法论,以研究静力学(参见Nagurney(1999))和投影动力学系统(参见Nagurney and Zhang(1996))。

著录项

  • 作者

    Toyasaki, Fuminori.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Industrial.; Operations Research.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;运筹学;
  • 关键词

  • 入库时间 2022-08-17 11:42:13

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