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Reference architecture for configuration, planning and control of 21st century manufacturing systems

机译:用于21世纪制造系统的配置,规划和控制的参考架构

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摘要

Today's dynamic marketplace requires flexible manufacturing systems capable of cost-effective high variety - low volume production in frequently changing product demand and mix. Several new paradigms, e.g. holonic, fractal, biological and responsive manufacturing, have recently been proposed and studied in the academic literature. These 'next generation of manufacturing systems' have been especially designed to meet the requirements of an unstable and unpredictable marketplace. However, very little in-depth research of the configuration, planning and control methodologies of these new concepts has been conducted. This research aims to improve the comprehension and implementation of these 21st century manufacturing systems by developing an integrated reference architecture from the combination of their distinctive features that would enable manufacturing enterprises to handle successfully the configuration/reconfiguration, planning and control activities under the conditions of uncertainty and continuous change.In the course of the research, a detailed investigation into the fractal, biological and responsive manufacturing systems is conducted in order to identify the strengths and weaknesses of each concept. The common and distinctive features of the paradigms are then used to merge them to create an integrated reference architecture. The fractal configuration, biological scheduling and 'resource element' representation of resource capabilities and product processing requirements are selected as the major elements of the new system. A detailed study of fractal layout design resulted in seven distinctive methods for structuring and managing fractal cellular systems. A design methodology that supports three types of dynamic scheduling is developed for biological manufacturing systems. Resource elements are used with fractal layouts and biological scheduling to enhance performance and to enable an integration of the concepts. The proposed reference architecture is modelled and evaluated using object-oriented programming, computer simulation and heuristic algorithms. The research results indicate that the performance of systems that employ biological scheduling and fractal layouts can be improved by using the concept of resource elements to utilise any hidden capabilities of resources and to achieve an optimal distribution of resources on the shop floor.
机译:当今瞬息万变的市场需要灵活的制造系统,这些系统必须具有成本效益高的品种-在经常变化的产品需求和组合中进行小批量生产。几个新的范例,例如最近,在学术文献中已经提出并研究了整体,分形,生物和响应式制造。这些“下一代制造系统”经过专门设计,可以满足不稳定和不可预测的市场的需求。但是,很少对这些新概念的配置,计划和控制方法进行深入研究。这项研究旨在通过结合其独特功能开发集成的参考体系结构,以提高这些21世纪制造系统的理解和实施,这将使制造企业能够在不确定性条件下成功处理配置/重新配置,计划和控制活动在研究过程中,对分形,生物和响应式制造系统进行了详细研究,以确定每个概念的优缺点。然后,将范式的共同和独特特征用于合并它们以创建集成的参考体系结构。分形配置,生物调度以及资源能力和产品加工要求的“资源要素”表示被选为新系统的主要要素。对分形布局设计的详细研究得出了七种独特的方法来构造和管理分形细胞系统。为生物制造系统开发了一种支持三种动态调度的设计方法。资源元素与分形布局和生物调度一起使用,以增强性能并实现概念的整合。使用面向对象的程序设计,计算机仿真和启发式算法对建议的参考体系结构进行建模和评估。研究结果表明,通过使用资源元素的概念来利用资源的任何隐藏功能并在车间实现资源的最佳分配,可以提高采用生物调度和分形布局的系统的性能。

著录项

  • 作者

    Lassila, Anna-Maija.;

  • 作者单位

    Sheffield Hallam University (United Kingdom).;

  • 授予单位 Sheffield Hallam University (United Kingdom).;
  • 学科 Industrial engineering.;Operations research.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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