A Robust Pickup and Delivery Problem with Uncertain Travel Time

Z. Al-Chami, Bechara Bechara, H. Manier, M. Manier
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引用次数: 1

Abstract

This paper discusses a robust variant of the well known Pickup and Delivery Problem (PDP) which we called the Robust Selective PDP (RSPDP). In this problem, a fleet composed of several vehicles with a given capacity should satisfy a set of transportation requests while respecting various constraints in relation with the precedence between suppliers and customers, the capacity of vehicles, the opening and closing times of each site. Because of all these constraints, the honoring of all requests over a given period (for example, one day) is sometimes impossible so the selective aspect consists in choosing the sites to be served. This robust variant is characterized by the presence of different scenarios used to handle the uncertain traveling time for each arc. Subject to all scenarios and constraints, the goal is to find the best solution (with the higher profit) which validates all scenarios. This study introduces the mathematical formulation for this new variant. Then, an exact and a metaheuristic approaches will be used to solve it. Several tests have been done, on new generated instances for the considered problem, in order to show the efficiency of developed methods.
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旅行时间不确定的鲁棒取货问题
本文讨论了众所周知的取货问题(PDP)的一个鲁棒变体,我们称之为鲁棒选择性PDP (RSPDP)。在这个问题中,由若干辆具有给定容量的车辆组成的车队应满足一组运输请求,同时尊重与供应商和客户之间的优先级、车辆的容量、每个站点的开放和关闭时间有关的各种约束。由于所有这些限制,在给定时间内(例如,一天)执行所有请求有时是不可能的,因此选择方面包括选择要提供服务的站点。这种鲁棒变体的特点是存在不同的场景,用于处理每条弧的不确定旅行时间。受所有场景和约束的影响,目标是找到验证所有场景的最佳解决方案(具有更高的利润)。本文介绍了这种新变体的数学表达式。然后,将使用精确和元启发式方法来求解它。为了证明所开发方法的有效性,对所考虑问题的新生成实例进行了多次测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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