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Integrated Tactical-Operational Supply Chain Planning with Stochastic Dynamic Considerations.

机译:考虑随机动态因素的综合战术-运营供应链计划。

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摘要

Integrated robust planning systems that cover all levels of SC hierarchy have become increasingly important. Strategic, tactical, and operational SC plans should not be generated in isolation to avoid infeasible and conflicting decisions. On the other hand, enterprise planning systems contain over millions of records that are processed in each planning iteration. In such enterprises, the ability to generate robust plans is vital to their success because such plans can save the enterprise resources that may otherwise have to be reserved for likely SC plan changes. A robust SC plan is valid in all circumstances and does not need many corrections in the case of interruption, error, or disturbance. Such a reliable plan is proactive as well as reactive. Proactivity can be achieved by forecasting the future events and taking them into account in planning. Reactivity is a matter of agility, the capability of keeping track of system behaviour and capturing alarming signals from its environment, and the ability to respond quickly to the occurrence of an unforeseen event. Modeling such a system behaviour and providing solutions after such an event is extremely important for a SC.;This study focuses on integrated supply chain planning with stochastic dynamic considerations. An integrated tactical-operational model is developed and then segregated into two sub-models which are solved iteratively. A SC is a stochastic dynamic system whose state changes over time often in an unpredictable manner. As a result, the customer demand is treated as an uncertain parameter and is handled by exploiting scenario-based stochastic programming. The increase in the number of scenarios makes it difficult to obtain quick and good solutions. As such, a Branch and Fix algorithm is developed to segregate the stochastic model into isolated islands so as to make the computationally intractable problem solvable. However not all the practitioners, planners, and managers are risk neutral. Some of them may be concerned about the risky extreme scenarios. In view of this, the robust optimization approach is also adopted in this thesis. Both the solution robustness and model robustness are taken into account in the tactical model. Futhermore, the dynamic behaviour of a SC system is handled with the concept of Model Predictive Control (MPC).
机译:涵盖SC层级所有级别的强大集成计划系统变得越来越重要。不应孤立地制定战略,战术和运营的可持续发展计划,以避免不可行和相互矛盾的决定。另一方面,企业计划系统包含数百万条记录,这些记录在每次计划迭代中都得到处理。在此类企业中,生成可靠计划的能力对其成功至关重要,因为此类计划可以节省企业资源,而这些资源否则可能不得不保留给可能的SC计划更改。健壮的SC计划在所有情况下均有效,并且在中断,错误或干扰的情况下无需进行许多更正。这样一个可靠的计划既积极又被动。可以通过预测未来事件并在计划中将它们考虑在内来实现主动。反应性是敏捷性,跟踪系统行为和从其环境捕获警报信号的能力,以及对意外事件的快速响应的能力。对这样的系统行为进行建模并在事件发生后提供解决方案对于供应链管理极为重要。;本研究着重于考虑随机动态因素的集成供应链计划。建立了综合战术作战模型,然后将其分为两个子模型,这些子模型可以迭代求解。 SC是一种随机动态系统,其状态通常会以不可预测的方式随时间变化。结果,客户需求被视为不确定参数,并通过利用基于场景的随机规划来处理。方案数量的增加使得难以获得快速,良好的解决方案。这样,开发了一种“分支和修复”算法,将随机模型隔离到孤立的孤岛中,从而使计算上难以解决的问题得以解决。但是,并非所有从业者,计划者和管理者都是风险中立的。他们中的一些人可能会担心危险的极端情况。有鉴于此,本文还采用了鲁棒优化方法。战术模型中考虑了解决方案的鲁棒性和模型的鲁棒性。此外,SC系统的动态行为是通过模型预测控制(MPC)的概念来处理的。

著录项

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering System Science.
  • 学位 M.Sc.
  • 年度 2011
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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