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A General Resource-constrained Scheduling Framework For Multistage Batch Facilities With Sequence-dependent Changeovers

机译:具有序列相关转换的多阶段批处理设施的通用资源受限调度框架

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摘要

This work introduces a new MILP sequential approach to the short-term scheduling of multistage batch plants that accounts for sequence-dependent changeover times, intermediate due dates and limited availability of renewable resources. It relies on a continuous-time formulation based on the general precedence notion that uses different sets of binary variables to handle allocation and sequencing decisions. To avoid resource overloading, additional constraints in terms of sequencing variables and a new set of 0-1 overlapping variables are presented. They allow tracking the set of tasks requiring the same resource and running in parallel at the start of another process operation. In this way, the proposed formulation involves a reasonable number of binary variables and constraints and features a very good computational behavior, even in the presence of hard bottleneck resources. Four illustrative examples, one of them including multiple bottleneck resources shared by several processing stages, have been efficiently solved.
机译:这项工作为多阶段批处理工厂的短期调度引入了一种新的MILP顺序方法,该方法考虑了与序列有关的转换时间,中间到期日期和可再生资源的有限可用性。它依赖于基于一般优先级概念的连续时间公式,该概念使用不同的二进制变量集来处理分配和排序决策。为了避免资源超载,提出了有关排序变量和一组新的0-1个重叠变量的附加约束。它们允许跟踪需要相同资源的任务集,并在另一个流程操作开始时并行运行。这样,即使在存在瓶颈资源的情况下,所提出的公式也包含合理数量的二进制变量和约束条件,并且具有非常好的计算行为。四个示例性示例已得到有效解决,其中一个示例包括多个处理阶段共享的多个瓶颈资源。

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