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Promoting Collaborative Relations at Intermodal Hubs Using an Iterative MPC Approach

机译:使用迭代MPC方法促进联运枢纽的协作关系

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Intermodal hubs are part of transportation networks in a world scale. All partners in a transportation network should contribute to move cargo from a source to a final destination at the agreed time. With the increase of globalization, source and final destinations are becoming far distant from each other. This geographical separation leads to an increase of transportation cargo demand despite the current economic crisis. The increase in freight commerce creates a challenge to transportation networks: the same infrastructure (intermodal hubs and transport providers) has to be able to move a higher amount of cargo without compromising the client satisfaction. In this paper it is shown that collaborative relations can be promoted at intermodal hubs using an iterative approach. Cargo is categorized in terms of type, final destination and due time to be delivered. Using a mathematical model to update the existent cargo per destination and due time at a terminal it is possible to make predictions about the future. These predictions can be used on the Model Predictive Control (MPC) problem formulated for cargo assignment at each terminal within an intermodal hub. Collaborative relations among terminals are implemented through information exchange from the solution of the MPC problem of each terminal, without compromising private information. A central coordinator collects the information from all terminals and updates the transport capacity allocated for each terminal. The iterative procedure is based in terms of achieving a better solution from both a hub, transport operator and client perspective. The iterative approach is illustrated with numerical experiments considering an intermodal hub composed of three container terminals.
机译:多式联运枢纽是世界范围内运输网络的一部分。运输网络中的所有合作伙伴均应在约定的时间内为将货物从货源运送到最终目的地做出贡献。随着全球化的发展,来源地和最终目的地之间的距离越来越远。尽管当前发生了经济危机,但这种地理上的分隔导致运输货物需求的增加。货运贸易的增长给运输网络带来了挑战:相同的基础设施(多式联运枢纽和运输提供商)必须能够运输更多数量的货物而又不影响客户满意度。本文表明,可以使用迭代方法在多式联运枢纽促进协作关系。货物按照类型,最终目的地和交货时间进行分类。通过使用数学模型来更新每个目的地的现有货物以及在码头上的到期时间,可以对未来进行预测。这些预测可用于模型预测控制(MPC)问题,该模型针对联运枢纽内每个码头的货物分配制定。终端之间的协作关系通过解决每个终端的MPC问题的信息交换来实现,而不会损害私人信息。中央协调器从所有终端收集信息,并更新为每个终端分配的传输容量。迭代过程基于从枢纽,运输运营商和客户角度实现更好的解决方案的基础。考虑了由三个集装箱码头组成的联运枢纽的数值实验说明了这种迭代方法。

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