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A Novel Work-Sharing Protocol for U-Shaped Assembly Lines.

机译:U型装配线的新型工作共享协议。

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摘要

Companies worldwide try to employ contemporary manufacturing systems that can cope with changes in external competitive environments and internal process variability. Just In Time (JIT) philosophy helps achieve the required resilience by its policy of having people, machines, and material just-in-time for any given process. U-shaped assembly lines (U-lines) are used to implement JIT principles. Another principle that helps achieve competitive advantage by developing a flexible workforce that responds efficiently to change is that of work-sharing. Operators share work and help each other in a dynamic and floating way, requiring little management effort to distribute workload amongst operators, or balance the assembly line.;The aim of this work is to develop an effective work-sharing protocol for U-shaped assembly lines that will provide the combined advantages of U-lines and work-sharing principles. The new protocol is based on two ideas from literature---the Cellular Bucket Brigade (CBB) system, and the Modified Work-Sharing (MWS) system. To keep the focus on developing the protocol, the scope of this work was limited to two worker systems. The methodology used is to model the protocol and U-line system as a discrete event simulation model, and then use an optimization model to maximize throughput and find optimal buffer locations and levels. A physical simulation experiment was conducted in the Toyota Production Systems lab at RIT to validate the model. Once validated, computer simulation experiments were run with industry data, and results obtained were compared with existing protocols from literature.;It was found that the new protocol performed at least as well as the CBB protocol, improving the output by an average of 1%, for the scenarios tested. Increase in processing speed variability as well as larger variation among workers were found to negatively impact the performance of the protocol. The results were analyzed further to understand why these factors are significant, and why there are anomalies and patterns, or lack thereof. Finally, limitations of the protocol, and opportunities for future research in the field are presented. Major limitations of the protocol are that it is difficult to comprehend, and the assumption of an assembly line divided into equal tasks is not practical in the industry.
机译:世界各地的公司都试图采用当代的制造系统来应对外部竞争环境和内部过程变化的变化。准时制(JIT)理念通过针对任何给定流程及时配备人员,机器和物料的策略,帮助实现了所需的弹性。 U形装配线(U线)用于实现JIT原理。通过培养对变化做出有效反应的灵活劳动力来帮助获得竞争优势的另一个原则是工作共享。操作员以动态和浮动的方式共享工作并互相帮助,几乎不需要管理工作即可在操作员之间分配工作量或平衡装配线。;这项工作的目的是为U形装配开发有效的工作共享协议线将提供U线和工作共享原则的综合优势。新协议基于文献中的两个想法-蜂窝桶大队(CBB)系统和改进的工作共享(MWS)系统。为了始终专注于开发协议,这项工作的范围仅限于两个工作者系统。所使用的方法是将协议和U线系统建模为离散事件模拟模型,然后使用优化模型来最大化吞吐量并找到最佳的缓冲区位置和级别。在RIT的丰田生产系统实验室中进行了物理模拟实验,以验证模型。验证之后,将使用行业数据进行计算机仿真实验,并将获得的结果与文献中的现有协议进行比较。;发现新协议的性能至少与CBB协议一样好,平均输出提高了1% ,用于测试的方案。发现处理速度可变性的增加以及工作人员之间的较大差异会对协议的性能产生负面影响。对结果进行了进一步分析,以了解这些因素为何如此重要,以及为什么存在异常和模式,或缺乏异常和模式。最后,介绍了该协议的局限性以及该领域未来研究的机会。该协议的主要局限性在于难以理解,并且将装配线划分为相同任务的假设在业界并不可行。

著录项

  • 作者

    Sriram, Srinath.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Engineering Industrial.;Business Administration Management.
  • 学位 M.S.
  • 年度 2014
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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