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Dynamic scheduling of multiproduct pipelines with multiple delivery due dates

机译:具有多个交付到期日期的多产品管道的动态调度

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Scheduling product batches in pipelines is a very complex task with many constraints to be considered. Several papers have been published on the subject during the last decade. Most of them are based on large-size MILP discrete time scheduling models whose computational efficiency greatly diminishes for rather long time horizons. Recently, an MILP continuous problem representation in both time and volume providing better schedules at much lower computational cost has been published. However, all model-based scheduling techniques were applied to examples assuming a static market environment, a short single-period time horizon and a unique due-date for all deliveries at the horizon end. In contrast, pipeline operators generally use a monthly planning horizon divided into a number of equal-length periods and a cyclic scheduling strategy to fulfill terminal demands at period ends. Moreover, the rerouting of shipments and time-dependent product requirements at distribution terminals force the scheduler to continuously update pipeline operations. To address such big challenges facing the pipeline industry, this work presents an efficient MILP continuous-time framework for the dynamic scheduling of pipelines over a multiperiod moving horizon. At the completion time of the current period, the planning horizon moves forward and the re-scheduling process based on updated problem data is triggered again over the new horizon. Pumping runs may extend over two or more periods and a different sequence of batches may be injected at each one. The approach has successfully solved a real-world pipeline scheduling problem involving the transportation of four products to five destinations over a rolling horizon always comprising four 1 -week periods.
机译:在管道中计划产品批次是一项非常复杂的任务,需要考虑许多约束。在过去的十年中,已经发表了几篇关于该主题的论文。它们中的大多数基于大型MILP离散时间调度模型,在相当长的时间范围内,其计算效率会大大降低。近来,已经发表了在时间和数量上都连续的MILP问题表示,以更低的计算成本提供了更好的进度。但是,所有基于模型的调度技术均应用于假设静态市场环境,较短的单周期时间范围以及所有在范围末尾交货的唯一到期日的示例。相反,管道运营商通常使用每月计划范围划分为多个等长期间,并使用周期性调度策略来满足期末的终端需求。此外,装运的重新路由和分销终端的时间相关产品要求迫使调度程序不断更新管道操作。为了解决管道行业面临的巨大挑战,这项工作提出了一种有效的MILP连续时间框架,用于在多周期的移动范围内动态调度管道。在当前时间段的完成时间,计划范围会向前移动,并且基于新问题数据的重新计划过程会在新范围内再次触发。泵送运行可能会持续两个或更多个时间段,并且每次可能会注入不同顺序的批次。该方法已成功解决了一个现实世界的管道调度问题,该问题涉及在始终包含四个1周周期的滚动范围内将四种产品运输到五个目的地。

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