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An Assessment and Simulation Methodology of Sustainability in Manufacturing System

机译:制造系统可持续性评估与仿真方法

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摘要

This thesis work presents a new integrated framework to connect the economic, environmental and social factors, and to analyze sustainability performance of the system by balancing these factors. Sustainable manufacturing systems should be profitable and environmentally friendly while being safe both physically and socially for everyone in the system. This thesis work highlights the main aspects and requirements of sustainability, which are related to manufacturing systems, demonstrating that there are other aspects of sustainability in general that are not reflective on manufacturing. This work also highlights many useful assessment indices of manufacturing sustainability, which makes quantification, and then comparison and optimization of system performance possible. A comparative study on the existing sustainability assessment tools is performed to classify these tools based on appropriateness to manufacturing systems and limitations by reviewing the significant research work in system modeling for assessing and optimizing manufacturing sustainability. The review has revealed that the triple bottom line TBL factors, economic, social and environmental, are difficult to evaluate and optimize simultaneously due to the complex nature of manufacturing systems and the wide variety of processes and type of the system. Furthermore, the review has demonstrated that there is significant research gap in considering social sustainability for overall sustainability characterization. The consideration and the integration of social sustainability with other factors make this framework unique and more functional. Three case studies have been conducted to understand the applicability of this novel framework. The first case study reveals the difficulties associated with achieving social sustainability as most of the parameters in social sustainability are intangible in nature that's why it is difficult to optimize the parameters associated with social sustainability. The last two case studies are analyzed to evaluate the sustainability in oil and gas industry with the help of fuzzy interference modelling. Fuzzy interference modelling is the core unit of decision making and mathematical reasoning of the sustainability assessment simulation, when the outcomes are uncertain. The modelling is built with the help of triangle membership functions to fuzzify the variables. Fuzzy rules like 'IF THEN' along with operators "OR" or "AND" then come into play for generating necessary decision rules. In this work, these decision rules aggregately simulate and generate the overall sustainability assessment results for case studies 2 and 3. All case studies strongly demonstrate the pragmatic and facile application of the proposed framework to assess the overall sustainability in continuous manufacturing context. Finally, the scope of future research work is also presented for the proposed novel framework.
机译:本文工作提出了一个新的综合框架,以连接经济,环境和社会因素,并通过平衡这些因素来分析系统的可持续性表现。可持续制造系统应该是有利可图的,并且对环境友好,同时对系统中的每个人在身体和社会上都是安全的。这篇论文强调了可持续性的主要方面和要求,这些方面和要求与制造系统有关,表明总体上还有其他方面的可持续性方面无法反映制造。这项工作还重点介绍了制造可持续性的许多有用的评估指标,这些指标可以进行量化,然后可以对系统性能进行比较和优化。通过审查系统建模中用于评估和优化制造可持续性的重要研究工作,对现有可持续性评估工具进行了比较研究,以根据对制造系统的适用性和局限性对这些工具进行分类。审查显示,由于制造系统的复杂性质以及系统的各种过程和类型,难以同时评估和优化三重底线的TBL因素(经济,社会和环境)。此外,审查表明,在考虑社会可持续性以进行总体可持续性表征时,存在重大研究差距。社会可持续发展因素的考虑和整合以及其他因素,使得该框架具有独特性和功能性。已经进行了三个案例研究,以了解此新颖框架的适用性。第一个案例研究揭示了与实现社会可持续性相关的困难,因为社会可持续性中的大多数参数本质上都是无形的,这就是为什么难以优化与社会可持续性相关的参数的原因。通过模糊干扰建模,分析了最后两个案例研究,以评估石油和天然气行业的可持续性。当结果不确定时,模糊干扰建模是可持续性评估模拟决策和数学推理的核心单元。借助三角隶属函数构建模型,以模糊化变量。然后,使用诸如“ IF THEN”之类的模糊规则以及运算符“ OR”或“ AND”来生成必要的决策规则。在这项工作中,这些决策规则总体上模拟并生成了案例研究2和案例3的整体可持续性评估结果。所有案例研究都充分证明了所提出的框架在连续制造环境中评估总体可持续性的实用性和便捷性。最后,还为提出的新颖框架提出了未来研究工作的范围。

著录项

  • 作者

    Islam, Maksudul.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Industrial engineering.;Management.;Sustainability.
  • 学位 M.S.E.M.
  • 年度 2018
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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