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首页> 外文期刊>European Journal of Operational Research >Inventory constrained maritime routing and scheduling for multi-commodity liquid bulk, Part I: Applications and model
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Inventory constrained maritime routing and scheduling for multi-commodity liquid bulk, Part I: Applications and model

机译:多商品液体散货的库存约束海上航路和调度,第一部分:应用和模型

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This paper formulates a model for finding a minimum cost routing in a network for a heterogeneous fleet of ships engaged in pickup and delivery of several liquid bulk products. The problem is frequently encountered by maritime chemical transport companies, including oil companies serving an archipelago of islands. The products are assumed to require dedicated compartments in the ship. The problem is to decide how much of each product should be carried by each ship from supply ports to demand ports, subject to the inventory level of each product in each port being maintained between certain levels that are set by the production rates, the consumption rates, and the storage capacities of the various products in each port. This important and challenging inventory constrained multi-ship pickup-delivery problem is formulated as a mixed-integer nonlinear program. We show that the model can be reformulated as an equivalent mixed-integer linear program with special structure. Over 100 test problems are randomly generated and solved using CPLEX 7.5. The results of our numerical experiments illuminate where problem structure can be exploited in order to solve larger instances of the model. Part II of the sequel will deal with new algorithms that take advantage of model properties. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文提出了一个模型,用于为从事多种液体散装产品的运输的异构舰队在网络中寻找最低成本路由。海上化学运输公司经常遇到这个问题,包括为群岛群岛服务的石油公司。假定产品在船上需要专用隔间。问题是要决定每艘船从补给港到需求港应携带多少种产品,但要视每个港中每种产品的库存水平保持在由生产率,消耗率设定的特定水平之间,以及每个端口中各种产品的存储容量。这个重要且具有挑战性的库存约束多船取货问题被公式化为混合整数非线性程序。我们表明,该模型可以重新构造为具有特殊结构的等效混合整数线性程序。使用CPLEX 7.5随机生成并解决了100多个测试问题。我们的数值实验结果阐明了在哪里可以利用问题结构来求解模型的更大实例。续集的第二部分将介绍利用模型属性的新算法。 (c)2005 Elsevier B.V.保留所有权利。

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