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Scheduling two-way ship traffic for the Kiel Canal: Model, extensions and a matheuristic

机译:安排基尔运河的双向船舶通行:模型,扩展和数学

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摘要

The Kiel Canal is an artificial waterway of about 100km that connects the North Sea and the Baltic Sea. It allows ships to save several hundred kilometers of travel distance compared with going around the Jutland Peninsula (Denmark). Since the canal contains several narrow segments where large ships cannot pass each other, it needs to be decided on which ships have to wait in the wider siding segments to ensure a fast and safe passage of all ships. With this paper, several new optimization models are proposed for this traffic managing problem, which include variable ship speeds, capacities of siding segments, and limits for waiting times of ships. All model variants capture the relevant traffic rules and safety requirements with the goal to minimize the total transit time of ships. A matheuristic is proposed for solving the problem quickly. Experiments on real world data confirm the excellent performance of the heuristic and identify the potentials for providing high quality service to ships. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基尔运河是连接北海和波罗的海约100公里的人工水道。与在日德兰半岛(丹麦)周围旅行相比,它可以节省几百公里的旅行距离。由于运河包含几个狭窄的部分,大型船只无法通过这些狭窄的部分,因此需要确定哪些船必须在较宽的壁板部分中等待,以确保所有船只快速安全地通过。本文针对此交通管理问题提出了几种新的优化模型,其中包括可变的船速,侧线段的容量以及轮船的等待时间限制。所有模型变型都捕获了相关的交通规则和安全要求,目的是最大程度地减少船舶的总运输时间。提出了一种数学方法来快速解决问题。对现实世界数据的实验证实了启发式算法的出色性能,并确定了为船舶提供高质量服务的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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