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An automated methodology for a comprehensive definition of the supply chain using generic ontological components.

机译:一种使用通用本体论组件对供应链进行全面定义的自动化方法。

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摘要

Today, worldwide business communities are in the era of the Supply Chains. A Supply Chain is a collection of several independent enterprises that partner together to achieve specific goals. These enterprises may plan, source, produce, deliver, or transport materials to satisfy an immediate or projected market demand, and may provide the after sales support, warranty services, and returns. Each enterprise in the Supply Chain has roles and elements. The roles include supplier, customer, or carrier and the elements include functional units, processes, information, information resources, materials, objects, decisions, practices, and performance measures. Each enterprise, individually, manages these elements in addition to their flows, their interdependencies, and their complex interactions. Since a Supply Chain brings several enterprises together to complement each other to achieve a unified goal, the elements in each enterprise have to complement each other and have to be managed together as one unit to achieve the unified goal efficiently. Moreover, since there are a large number of elements to be defined and managed in a single enterprise, then the number of elements to be defined and managed when considering the whole Supply Chain is massive.; The supply chain community is using the Supply Chain Operations Reference model (SCOR model) to define their supply chains. However, the SCOR model methodology is limited in defining the supply chain. The SCOR model defines the supply chain in terms of processes, performance metrics, and best practices. In fact, the supply chain community, SCOR users in particular, exerts massive effort to render an adequate supply chain definition that includes the other elements besides the elements covered in the SCOR model. Also, the SCOR model is delivered to the user in a document, which puts a tremendous burden on the user to use the model and makes it difficult to share the definition within the enterprise or across the supply chain. This research is directed towards overcoming the limitations and shortcomings of the current supply chain definition methodology. This research proposes a methodology and a tool that will enable an automated and comprehensive definition of the Supply Chain at any level of details.; The proposed comprehensive definition methodology captures all the constituent parts of the Supply Chain at four different levels which are, the supply chain level, the enterprise level, the elements level, and the interaction level. (Abstract shortened by UMI.)
机译:如今,全球企业界都处于供应链时代。供应链是几个独立的企业的集合,这些企业共同合作以实现特定的目标。这些企业可以计划,采购,生产,交付或运输材料,以满足即时或预计的市场需求,并可以提供售后服务,保修服务和退货。供应链中的每个企业都有其角色和元素。角色包括供应商,客户或承运人,元素包括功能单元,流程,信息,信息资源,材料,对象,决策,实践和绩效度量。每个企业除了各自的流程,相互依存关系以及复杂的交互作用之外,还分别管理这些要素。由于供应链将多个企业聚集在一起,以相互补充,以实现一个统一的目标,因此,每个企业中的要素必须相互补充,并且必须作为一个单元一起进行管理,以有效地实现统一的目标。而且,由于在一个企业中要定义和管理大量元素,因此在考虑整个供应链时要定义和管理的元素数量很大。供应链社区正在使用供应链运营参考模型(SCOR模型)来定义其供应链。但是,SCOR模型方法学在定义供应链方面受到限制。 SCOR模型根据流程,绩效指标和最佳实践定义了供应链。实际上,供应链社区,特别是SCOR用户,付出了巨大的努力来提供适当的供应链定义,其中包括SCOR模型所涵盖的要素之外的其他要素。此外,SCOR模型以文档形式交付给用户,这给用户使用该模型带来了巨大负担,并使得难以在企业内部或整个供应链中共享定义。这项研究旨在克服当前供应链定义方法的局限性和不足。这项研究提出了一种方法和工具,可以在任何细节级别上对供应链进行自动而全面的定义。拟议的全面定义方法论在四个不同的层次上捕获了供应链的所有组成部分,这四个层次分别是供应链层次,企业层次,要素层次和交互层次。 (摘要由UMI缩短。)

著录项

  • 作者

    Fayez, Mohamed S.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 246 p.
  • 总页数 246
  • 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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