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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Mathematical Modeling and Discrete Firefly Algorithm to Optimize Scheduling Problem with Release Date, Sequence-Dependent Setup Time, and Periodic Maintenance
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Mathematical Modeling and Discrete Firefly Algorithm to Optimize Scheduling Problem with Release Date, Sequence-Dependent Setup Time, and Periodic Maintenance

机译:数学建模与离散萤火虫算法在发布日期,序列依赖的设置时间和周期性维护中优化调度问题

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摘要

An evolutionary discrete firefly algorithm (EDFA) is presented herein to solve a real-world manufacturing system problem of scheduling a set of jobs on a single machine subject to nonzero release date, sequence-dependent setup time, and periodic maintenance with the objective of minimizing the maximum completion time “makespan.” To evaluate the performance of the proposed EDFA, a new mixed-integer linear programming model is also proposed for small-sized instances. Furthermore, the parameters of the EDFA are regulated using full factorial analysis. Finally, numerical experiments are performed to demonstrate the efficiency and capability of the EDFA in solving the abovementioned problem.
机译:这里介绍了一种进化的离散萤火虫算法(EDFA),旨在解决在经过非零发布日期,序列相关的设置时间,序列相关的设置时间和定期维护的单个机器上调度一组作业的真实制造系统问题,并通过最小化最大完成时间“makespan”。为了评估所提出的EDFA的性能,还提出了一种新的混合整数线性编程模型,用于小型实例。此外,EDFA的参数使用完整的因子分析调节。最后,进行数值实验以证明EDFA在解决上述问题方面的效率和能力。

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