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首页> 外文期刊>Transportation research >An optimal stopping approach to managing travel-time uncertainty for time-sensitive customer pickup
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An optimal stopping approach to managing travel-time uncertainty for time-sensitive customer pickup

机译:最佳的停车方式,用于管理旅行时间不确定性,以吸引对时间敏感的客户

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摘要

In dynamic vehicle routing, it is common to respond to real-time information with immediate updates to routes and fleet management. However, even if routes are updated continuously, in practice, some decisions once made are difficult to reverse. At times, it may thus be valuable to wait for additional information before acting on a decision. We use the theory of optimal stopping to determine the optimal timing of a recourse action when vehicles are likely to miss customer deadlines due to travel-time stochasticities and backup services are available. The factors involved in making this decision - that is, the likelihood that the primary vehicle will arrive late, the location of the backup vehicle, and value of waiting for additional travel-time information - each change dynamically over time. We develop a recourse model that accounts for this complexity. We formulate the optimal recourse policy as a stochastic dynamic program. Properties of the optimal policy are derived analytically, and its solution is approximated with a binomial lattice method used in the pricing of American options. Finally, we develop a two-stage stochastic optimization approach to show how the opportunity to take recourse dynamically might be integrated into a priori scheduling and routing. The framework is demonstrated for a stochastic dial-a -ride application in which taxis serve as backup to ridesharing vehicles. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在动态车辆路线选择中,通常通过立即更新路线和车队管理来响应实时信息。但是,即使路由不断更新,实际上,一旦做出某些决定也很难撤销。因此,有时在采取决定之前等待其他信息可能会很有价值。当车辆可能由于行驶时间的随机性而错过客户的最后期限时,我们使用最佳停止的理论来确定追索行动的最佳时机,并且可以使用备用服务。做出此决定所涉及的因素-即主要车辆到达迟到的可能性,备用车辆的位置以及等待其他行驶时间信息的价值-随时间动态变化。我们开发了解决此复杂性的资源模型。我们将最优追索权政策制定为随机动态程序。最优政策的性质是通过分析得出的,其解决方案是通过用于美式期权定价的二项式格子法进行近似的。最后,我们开发了一种两阶段的随机优化方法,以展示如何将动态求助的机会整合到先验调度和路由中。该框架针对随机拨号骑乘应用进行了演示,其中出租车可以作为共享乘车的后备。 (C)2017 Elsevier Ltd.保留所有权利。

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