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Service network design in inland waterway liner transportation with empty container repositioning

机译:内陆空箱调运内河班轮运输服务网络设计

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Abstract Introduction As inland shipping has been playing a more and more important role in integrated transportation system, the optimization of such a network with empty containers repositioning is of great practical significance to raise inland shipping service level so as to promote freight mode shift from land to water. This paper addresses the construction of system service network for inland water containers transportation (IWCT). Method We incorporate the specific natures of inland waterway containers transportation and formulate the inland waterway system containers transportation into a mathematic model. It is a complex giant problem to optimize routing and fleet deployment for the whole network at the same time. Thus, a combined algorithm with genetic algorithm (GA) and Integer programming (IP) calculations are designed to solve this program. Further, a network of Yangtze River ports is studied. Results A set of shipping routes, including the calling ports, service frequency and type of the used ship of each route are figured out by the IWCT network optimization model. This set of shipping routes is a combination of short routes and long routes. The direct links are commonly used for moving large quantities of containers between two ports. While for small containers flow, longer routes are used to bund cargo flows by calling as many ports as possible. Conclusion Most present network optimization studies are focused on network design and fleet deployment about ocean and coastal container shipping. However the features of inland water shipping network are different and related studies are rare. This paper aims to fill this gap. Taking the specific features of IWCT into consideration, the proposed model is suitable for the service network design in IWCT network. And the experimental results verify the validity of the combined algorithm. Point-to-point direct route is the most economic mode for large cargo flows between ports. When the containers flow is small, routes calling at multiple ports can achieve economies of scale through bundling.
机译:摘要引言随着内陆航运在综合运输系统中发挥着越来越重要的作用,这种优化空箱重定位的网络对提高内陆航运服务水平,促进货运模式从陆运向陆运转变具有重要的现实意义。水。本文论述了内陆水路集装箱运输(IWCT)的系统服务网络的建设。方法我们结合内陆水路集装箱运输的特殊性质,将内陆水路系统集装箱运输公式化为数学模型。同时优化整个网络的路由和队列部署是一个复杂的巨大问题。因此,设计了一种具有遗传算法(GA)和整数编程(IP)计算的组合算法来解决该程序。此外,研究了长江港口网络。结果IWCT网络优化模型可以得出一组运输路线,包括呼叫港口,服务频率和每条路线的使用船舶类型。这套运输路线是短途路线和长途路线的组合。直接链接通常用于在两个端口之间移动大量容器。对于较小的集装箱流,较长的路线通过呼叫尽可能多的港口来捆绑货物流。结论当前大多数网络优化研究都集中在有关海洋和沿海集装箱运输的网络设计和舰队部署上。但是,内陆水运网络的特征是不同的,相关研究很少。本文旨在填补这一空白。考虑到IWCT的特点,该模型适用于IWCT网络中的服务网络设计。实验结果验证了组合算法的有效性。点对点直航是港口之间大量货物运输的最经济方式。当集装箱流量很小时,在多个港口停靠的航线可以通过捆绑实现规模经济。

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