带传输的“拨号乘车”问题的MILP模型

IF 2.1 Q2 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
Jacopo Pierotti, J. Theresia van Essen
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引用次数: 4

摘要

自动驾驶汽车正在成为现实。人们预计自动驾驶汽车最终将把个人出行从私人拥有的资产转变为按需服务。这种转变将增加共享出行的可能性,从而导致共享汽车(sav)的出现。本文的主要目的是为在这种新的驾驶条件下使用快速有效的算法奠定基础。这些算法必须能够解决Dial-a-Ride传输问题(DARPT)。因此,他们需要有效地将乘客分配到车辆和路线上,同时还要管理车辆调度,为空转车辆确定方便的停车位置,并实时管理车辆路线。本文建立了两个整数线性规划模型(一个连续时间模型和一个离散时间模型)及其扩展来求解DARPT问题。我们的模型在优化路线成本和服务质量的同时,考虑了路线、服务时间、最大路线时间跨度约束、未被服务的请求、首选到达和离开时间、非恒定旅行时间、方便停车。通过使用商业求解器求解,在基于谷歌Maps数据的实例上对模型进行了测试。这些测试的结果是验证即将在现实规模的场景中使用的特设元启发式性能的起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MILP models for the Dial-a-ride problem with transfers

Automated vehicles are becoming a reality. Expectations are that AVs will ultimately transform personal mobility from privately owned assets to on-demand services. This transformation will enhance the possibility of sharing trips, leading to shared AVs (SAVs). The preeminent aim of this paper is to lay foundations for fast and efficient algorithms to be used in such new driving conditions. These algorithms must be able to solve Dial-a-Ride problems with transfers (DARPT). Hence, they should efficiently assign passengers to vehicles and routes while also: administering vehicles dispatch, determining convenient parking for idling vehicles and managing vehicle routing in real-time. In this paper, we develop two integer linear programming models (one in continuous time and one in discrete time) and their extensions to solve the DARPT. Our models take into account routing, service times, constraints on maximum route time-span, unserved requests, preferred arrival and departure time, nonconstant travel times, convenient parking while optimizing routing costs and quality of the service. The models are tested on instances based on Google Maps data by solving them with a commercial solver. The results of these tests are the starting point for validating the performance of forthcoming, ad hoc metaheuristics to be used in real-life sized scenarios.

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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
24
审稿时长
129 days
期刊介绍: The EURO Journal on Transportation and Logistics promotes the use of mathematics in general, and operations research in particular, in the context of transportation and logistics. It is a forum for the presentation of original mathematical models, methodologies and computational results, focussing on advanced applications in transportation and logistics. The journal publishes two types of document: (i) research articles and (ii) tutorials. A research article presents original methodological contributions to the field (e.g. new mathematical models, new algorithms, new simulation techniques). A tutorial provides an introduction to an advanced topic, designed to ease the use of the relevant methodology by researchers and practitioners.
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