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Simulation Optimization for the Multihoist Scheduling Problem

机译:仿真优化对多层调度问题的仿真优化

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Although the Multihoist Scheduling Problem (MHSP) can be detailed as a job-shop configuration, the MHSP has additional constraints. Such constraints increase the difficulty and complexity of the schedule. Operation conditions in chemical processes are certainly different from other types of processes. Therefore, in order to model the real-world environment on a chemical production process, a simulation model is built and it emulates the feasibility requirements of such a production system. The results of the model, i.e., the makespan and the workload of the most loaded tank, are necessary for providing insights about which schedule on the shop floor should be implemented. A new biobjective optimization method is proposed, and it uses the results mentioned above in order to build new scenarios for the MHSP and to solve the aforementioned conflicting objectives. Various numerical experiments are shown to illustrate the performance of this new experimental technique, i.e., the simulation optimization approach. Based on the results, the proposed scheme tackles the inconvenience of the metaheuristics, i.e., lack of diversity of the solutions and poor ability of exploitation. In addition, the optimization approach is able to identify the best solutions by a distance-based ranking model and the solutions located in the first Pareto-front layer contributes to improve the search process of the aforementioned scheme, against other algorithms used in the comparison.
机译:虽然多层调度问题(MHSP)可以详细为作业商店配置,但MHSP具有额外的约束。这种约束增加了计划的难度和复杂性。化学过程中的操作条件肯定与其他类型的过程不同。因此,为了对化学生产过程进行建模,建造了一种模拟模型,它模拟了这种生产系统的可行性要求。该模型的结果,即Makespan和最负载罐的工作量,对于提供关于该店地板上的时间表的见解是必要的。提出了一种新的生物起始优化方法,它使用上面提到的结果,以便为MHSP构建新的场景,并解决上述冲突目标。示出了各种数值实验来说明这种新实验技术的性能,即模拟优化方法。根据结果​​,拟议方案应对核心学,即缺乏解决方案的多样性和剥削能力差的不便。另外,优化方法能够通过基于距离的排名模型来识别最佳解决方案,并且位于第一静态前层中的溶液有助于改善上述方案的搜索过程,而是对比较中使用的其他算法。

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