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An integrated optimization method for tactical-level planning in liner shipping with heterogeneous ship fleet and environmental considerations

机译:具有异质船队和环境考虑因素的划线运输战术水平规划的集成优化方法

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摘要

The maritime transportation flows and container demand have been increasing over time, although the COVID-19 pandemic may slow down this trend for some time. One of the common strategies adopted by shipping lines to efficiently serve the existing customers is the deployment of large ships. The current practice in the liner shipping industry is to deploy a combination of ships of different types with different carrying capacities (i.e., heterogeneous fleet), especially at the routes with a significant demand. However, heterogeneous fleets of ships have been investigated by a very few studies addressing the tactical liner shipping decisions (i.e., determination of service frequency, ship fleet deployment, optimization of ship sailing speed, and design of ship schedules). Moreover, limited research efforts have been carried out to simultaneously capture all the major tactical liner shipping decisions using a single solution methodology. Therefore, this study proposes an integrated optimization model that addresses all the major tactical liner shipping decisions and allows the deployment of a heterogeneous ship fleet at each route, considering emissions generated throughout liner shipping operations. The model's objective maximizes the total turnaround profit generated from liner shipping operations. A decomposition-based heuristic algorithm is presented in this study to solve the model proposed and efficiently tackle large-size problem instances. Numerical experiments, carried out for a number of real-world liner shipping routes, demonstrate the effectiveness of the proposed methodology. A set of managerial insights, obtained from the proposed methodology, are also provided.
机译:海上运输流量和集装箱需求随着时间的推移而越来越多,虽然Covid-19大流行可能会减缓这一趋势一段时间。运输线采用的共同策略之一,以有效地满足现有客户的部署是大船的部署。班轮航运业的目前的实践是部署不同类型的船舶的组合,具有不同的承载能力(即异构舰队),特别是在具有重要需求的路线上。然而,通过解决战术衬里运输决策的几项研究(即,服务频率,船舶舰队部署,船舶航行速度优化以及船舶时间表的设计),已经研究了异质舰队。此外,已经开展了有限的研究工作,以便使用单一解决方案方法同时捕获所有主要的战术衬里运输决策。因此,本研究提出了一种集成的优化模型,解决了所有主要的战术衬里运输决策,并允许在每条路线上部署异构船队,考虑在整个衬里运输操作中产生的排放。该模型的目标最大限度地提高了衬里运输业务产生的总转变利润。本研究介绍了一种基于分解的启发式算法,以解决建议和有效地解决大尺寸问题实例的模型。数值实验,为许多现实世界衬里运输路线进行,证明了所提出的方法的有效性。还提供了一系列从所提出的方法获得的管理洞察力。

著录项

  • 来源
    《Advanced engineering informatics》 |2021年第4期|101299.1-101299.18|共18页
  • 作者单位

    Department of Civil & Environmental Engineering Florida A&M University-Florida State University (FAMU-FSU) College of Engineering 2525 Pottsdamer Street Building B Suite B339 Tallahassee FL 32310-6046 USA;

    Department of Civil & Environmental Engineering Florida A&M University-Florida State University (FAMU-FSU) College of Engineering 2525 Pottsdamer Street Building A Suite A124 Tallahassee FL 32310-6046 USA;

    Department of Electrical Engineering Ecole de Technologie Superieure University of Quebec 1100 Notre-Dame St. W. Montreal Quebec Canada;

    School of Mechanical Engineering Shandong University Jinan 250061 China;

    Division of Business and Hospitality Management College of Professional and Continuing Education The Hong Kong Polytechnic University;

    Department of Civil & Environmental Engineering Florida A&M University-Florida State University (FAMU-FSU) College of Engineering 2525 Pottsdamer Street Building B Suite B339 Tallahassee FL 32310-6046 USA;

    School of Management Wuhan University of Technology Wuhan 430070 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Liner shipping; Heterogeneous fleet; Service frequency determination; Ship fleet deployment; Sailing speed optimization; Ship scheduling;

    机译:衬里运输;异质舰队;服务频率测定;船舰队部署;帆船速度优化;船舶安排;

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