通用调度程序的即时事件感知模型与算法

T. Dulai, A. Werner-Stark, K. Hangos
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引用次数: 2

摘要

本文研究了一个随机调度问题,该问题将工件按照包含由工作站执行的制造步骤的单个配方作为资源进行制造。工作站的意外随机故障或配方的错误终止,当制造故障使工件不符合规格时,形成了一组即时事件。提出了一个模型和算法作为调度程序的基础,该调度程序考虑了可能发生的即时事件,估计了它们的概率,并建议在即时事件发生时提供最佳的整体工作流的资源分配。该模型包含了处理可替代资源的可能性,这些资源可以在紧急事件(如资源的突然技术故障)的情况下相互替代。即时事件是无法完全预测的;然而,根据以往的经验,它们的概率是可以估计的。我们的模型使用资源的属性(包括它们如何替代其他类型的资源)和工作流中所需的资源序列(即配方)。提出的调度算法构建了一个解决方案工作流,即使对于意外事件也能以最佳方式(平均而言)做出反应。通过两个工业实例对所提出的模型和调度算法进行了说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immediate Event-Aware Model and Algorithm of a General Scheduler
A stochastic scheduling problem is investigated in this work that considers workpieces to be manufactured according to individual recipes containing manufacturing steps performed by workstations as resources. Unexpected stochastic breakdown of a workstation or the faulty termination of a recipe, when a manufacturing failure renders the workpiece out of specifications, forms the set of immediate events. A model and an algorithm are proposed as the basis of a scheduler, which takes into account the possible immediate events, estimates their probability and suggests resource allocations which provide the best overall work-flow even when an immediate event happens. This model includes the possibility of handling alternative resources that can substitute each other in case of an immediate event, like sudden technical failure of a resource. Immediate events are not exactly predictable; however, based on previous experiences, their probabilities can be estimated. Our model uses the properties of the resources (including how they can substitute other types of resources) and the required sequence of them during the workflow (i.e. the recipes). The proposed scheduling algorithm constructs a solution workflow that reacts in the best way (in average) even for an unexpected event. The proposed model and scheduling algorithm is illustrated on two industrial case studies.
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