A New Formulation for the Dial-a-Ride Problem

Yannik Rist, M. Forbes
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引用次数: 10

Abstract

This paper proposes a new mixed integer programming formulation and branch and cut (BC) algorithm to solve the dial-a-ride problem (DARP). The DARP is a route-planning problem where several vehicles must serve a set of customers, each of which has a pickup and delivery location, and includes time window and ride time constraints. We develop “restricted fragments,” which are select segments of routes that can represent any DARP route. We show how to enumerate these restricted fragments and prove results on domination between them. The formulation we propose is solved with a BC algorithm, which includes new valid inequalities specific to our restricted fragment formulation. The algorithm is benchmarked on existing and new instances, solving nine existing instances to optimality for the first time. In comparison with current state-of-the-art methods, run times are reduced between one and two orders of magnitude on large instances.
拨乘问题的一个新公式
本文提出了一种新的混合整数规划公式和分支切断算法来解决拨乘问题。DARP是一个路线规划问题,其中几辆车必须为一组客户服务,每辆车都有一个取货和送货地点,并包括时间窗口和行驶时间限制。我们开发了“受限片段”,这是可以代表任何DARP路由的选择路由段。我们展示了如何列举这些受限制的片段,并证明了它们之间支配的结果。我们提出的公式用BC算法求解,该算法包含了针对我们的受限片段公式的新的有效不等式。该算法对现有实例和新实例进行了基准测试,首次求解了9个现有实例的最优性。与当前最先进的方法相比,在大型实例上运行时间减少了一到两个数量级。
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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