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Optimized allocation of straddle carriers to reduce overall delays at multimodal container terminals

机译:优化跨运船分配,减少多式联运集装箱码头的总体延误

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Increased global container trade and strong competition are boosting the need for efficient container terminals. Using internal transport resources efficiently reduces transfer times and operating costs. This article addresses the allocation of straddle carriers at a tactical level at intermodal container terminals via optimization and simulation. Our objective is to reduce overall delays at the terminal—with special focus on delays of inland transport modes (rail, road and waterway). We introduce a notation to describe different service strategies and delay criteria and analyze the complexity of different service strategies. A generic mixed integer linear program—that can be easily adapted to different service strategies—models the allocation problem based on a network flow representation of the terminal. We conduct a case study for a container terminal at the Grand Port Maritime de Marseille to evaluate the proposed allocation: we adapt the optimization model to the specific terminal, implement a discrete event simulation model and conduct experiments on actual data. Results show that the allocation proposed by the optimization model reduces delays at the terminal and performs well in a stochastic environment.
机译:全球集装箱贸易的增长和激烈的竞争正在推动对高效集装箱码头的需求。有效利用内部运输资源可以减少运输时间和运营成本。本文通过优化和仿真解决了联运集装箱码头在战术层面上跨式载货舰的分配问题。我们的目标是减少码头的总体延误,特别是内陆运输方式(铁路,公路和水路)的延误。我们引入一种表示法来描述不同的服务策略和延迟标准,并分析不同服务策略的复杂性。通用混合整数线性程序(可以轻松地适应不同的服务策略)基于终端的网络流表示对分配问题进行建模。我们对马赛大港口的一个集装箱码头进行了案例研究,以评估拟议的分配:我们将优化模型适应特定的码头,实施离散事件模拟模型,并对实际数据进行实验。结果表明,优化模型提出的分配减少了终端的延迟,并且在随机环境中表现良好。

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