散货码头综合存储空间分配与船舶调度问题

Lixin Tang, Defeng Sun, Jiyin Liu
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引用次数: 21

摘要

本研究的动机是大型钢铁公司的实践,这些公司对铁矿石、煤炭、石灰石等大宗原材料有稳定和大量的需求。这些材料通常由船舶运输到散货码头(或由火车运输到车站)。一旦卸下,它们就被转移到散装物料堆场并储存起来,等待在生产中使用。有效的存储空间分配和船舶调度是实现高空间利用率、低材料损耗和低运输成本的关键。本文主要研究散货码头的仓储空间分配与船舶调度问题。我们的问题不同于其他相关的问题,因为材料的运输和储存方式是特殊的。提出了一种新的混合整数规划模型,并利用Benders分解算法进行求解,该算法通过使用各种有效不等式、组合Benders切割、变量约简检验和迭代启发式过程得到增强。计算结果表明,所提出的求解方法比标准求解软件CPLEX的求解效率高得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated storage space allocation and ship scheduling problem in bulk cargo terminals
ABSTRACT This study is motivated by the practices of large iron and steel companies that have steady and heavy demands for bulk raw materials, such as iron ore, coal, limestone, etc. These materials are usually transported to a bulk cargo terminal by ships (or to a station by trains). Once unloaded, they are moved to and stored in a bulk material stockyard, waiting for retrieval for use in production. Efficient storage space allocation and ship scheduling are critical to achieving high space utilization, low material loss, and low transportation costs. In this article, we study the integrated storage space allocation and ship scheduling problem in the bulk cargo terminal. Our problem is different from other associated problems due to the special way that the materials are transported and stored. A novel mixed-integer programming model is developed and then solved using a Benders decomposition algorithm, which is enhanced by the use of various valid inequalities, combinatorial Benders cuts, variable reduction tests, and an iterative heuristic procedure. Computational results indicate that the proposed solution method is much more efficient than the standard solution software CPLEX.
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来源期刊
IIE Transactions
IIE Transactions 工程技术-工程:工业
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4.5 months
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