温室气体
交通管理
网络规划与设计
运输工程
流量网络
铁路货物运输
服务(商务)
整数规划
地铁列车时刻表
调度(生产过程)
业务
绿色物流
环境经济学
运筹学
计算机科学
工程类
运营管理
电信
经济
营销
生态学
生物
数学优化
数学
算法
操作系统
作者
John Bauer,Tolga Bektaş,Teodor Gabriel Crainic
标识
DOI:10.1057/jors.2009.102
摘要
Freight transport has undesirable effects on the environment. The most prominent of these is greenhouse gas emissions. Intermodal freight transport, where freight is shipped from origin to destination by a sequence of at least two transportation modes, offers the possibility of shifting freight (either partially or in full) from one mode to another in the hope of reducing the greenhouse emissions by appropriately scheduling the services and routing the freight. Traditional planning methods for scheduling services in an intermodal transportation network usually focus on minimizing travel or time-related costs of transport. This article breaks away from such an approach by addressing the issue of incorporating environment-related costs (greenhouse gases, to be specific) into freight transportation planning and proposes an integer program in the form of a linear cost, multicommodity, capacitated network design formulation that minimizes the amount of greenhouse gas emissions of transportation activities. Computational results based on an application of the proposed approach on a real-life rail freight transportation network are presented.
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