Simulation method for multi-machine and multi-task production scheduling in steelmaking-continuous casting process

Jianyu Long, Zhong Zheng, Xiaoqiang Gao, Kai Chen
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引用次数: 3

Abstract

The steelmaking-continuous casting (SCC) process, which consists of steelmaking, refining and continuous casting stage, is usually the critical process in iron and steel industry. This paper aims to propose a simulation method for the realistic hybrid flow shop scheduling problem resulting from the SCC process. A mathematic model based on a comprehensive investigation is built first. Then, a simulation method which can decide the time scope of production materials on each stage in the simulation initialization is presented. Additionally, the matching decision algorithm is employed to match the machines and production materials in the simulation running process. To evaluate the simulation method, numerical experiments are conducted with an 8 hours test instance generated according to a real-world production process. The results show that the simulation method is a feasible and effective method for production scheduling in SCC process.
炼钢-连铸多机多任务生产调度仿真方法
炼钢-连铸工艺通常是钢铁工业的关键工艺,由炼钢、精炼和连铸三个阶段组成。本文的目的是提出一种仿真方法来解决由SCC过程引起的现实混合流水车间调度问题。首先建立了基于综合调查的数学模型。在此基础上,提出了在仿真初始化过程中确定各阶段生产物料的时间范围的仿真方法。在仿真运行过程中,采用匹配决策算法对机器和生产材料进行匹配。为了验证仿真方法的有效性,根据实际生产过程生成了一个8小时的测试实例,进行了数值实验。结果表明,仿真方法是一种可行、有效的SCC生产调度方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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