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Load plan selection for package express fleets.

机译:包裹快递车队的装载计划选择。

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摘要

A loader serves two roles during the loading process for package delivery. First, given a load plan, which is an assignment of regions to delivery vehicles, the loader takes each package to be delivered, one-by-one, reads the address, and assigns it to the proper vehicle, according to the load plan. Second, the loader can decide whether or not to change the load plan during the loading process. Changing a load plan involves the re-assignment of regions to vehicles and, when appropriate, removing packages from one vehicle and placing them on another vehicle. Moving already assigned packages takes time, delays fleet departure, and hence generates additional cost. However, load plan adjustment can better balance delivery workload, which reduces cost. The objective of the research presented is to aid the loader during the loading process in deciding whether or not the current load plan should be continued, and if not, identify a better load plan, assuming that the current package load of each delivery vehicle is known.; The load plan selection process is modeled as a Markov decision process (MDP) and analyzed in Chapter 2. We present structured results for the expected cost-to-go function which lead to an improved algorithm for computing an optimal load plan policy.; We describe the improved algorithm and compare it to traditional dynamic programming methods in Chapter 3. We present a heuristic, based on conditions for action elimination, that is computationally superior to the exact methods.; In Chapter 4, we present a prototype decision support system (DSS) for load plan selection in package express. We develop a statistical model to reflect a more complex information state and describe the implementation of the statistical model in an actual operation. We model the load plan selection process for air packages and suggest a solution technique. Conclusions are presented in Chapter 5.
机译:装入程序在装入程序的装入过程中扮演两个角色。首先,给定一个装载计划,该装载计划是对运送车辆的区域分配,装载者根据装载计划,一个接一个地拿走每个要运送的包裹,读取地址,并将其分配给合适的车辆。其次,装载机可以决定在装载过程中是否更改装载计划。更改装载计划需要将区域重新分配给车辆,并在适当的情况下从一辆车辆中取出包裹并将其放在另一辆车辆上。移动已经分配的包裹需要花费时间,延迟了机队的出发时间,因此产生了额外的成本。但是,调整负载计划可以更好地平衡交付工作量,从而降低成本。提出研究的目的是在装载过程中帮助装载机确定是否应继续当前的装载计划,如果不知道,则假设已知每个运载工具的当前包裹装载,确定更好的装载计划。 。;负荷计划选择过程被建模为马尔可夫决策过程(MDP),并在第2章中进行了分析。我们给出了预期成本函数的结构化结果,从而导致了一种用于计算最佳负荷计划策略的改进算法。在第3章中,我们描述了改进的算法,并将其与传统的动态规划方法进行了比较。我们在消除动作的条件基础上提出了一种启发式算法,该算法在计算上优于精确方法。在第4章中,我们介绍了用于包装快递中的装载计划选择的原型决策支持系统(DSS)。我们开发一种统计模型以反映更复杂的信息状态,并描述实际操作中该统计模型的实现。我们对航空货运的装载计划选择过程进行建模,并提出解决方法。结论见第5章。

著录项

  • 作者

    Benson, David E.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 99 p.
  • 总页数 99
  • 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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