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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Unit-Specific Event-Based and Slot-Based Hybrid Model Framework with Hierarchical Structure for Short-Term Scheduling
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Unit-Specific Event-Based and Slot-Based Hybrid Model Framework with Hierarchical Structure for Short-Term Scheduling

机译:具有分层结构的短期调度的基于单元的基于事件和基于插槽的混合模型框架

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摘要

Unit-specific event-based continuous-time model has inaccurate calculation problems in involving resource constraints, due to the heterogeneous locations of the event points for different units. In order to address this limitation, a continuous-time unit-specific event-based and slot-based hybrid model framework with hierarchical structure is proposed in this work. A unit-specific event-based model without utility constraints is formulated in upper layer, and a slot-based model is introduced in lower layer. In the hierarchical structure, the two layers jointly address the short-term production scheduling problem of batch plants under utility consideration. The key features of this work include the following: (a) eliminating overstrict constraints on utility resources, (b) solving multiple counting problems, and (c) considering duration time of event points in calculating utility utilization level. The effectiveness and advantages of proposed model are illustrated through two benchmark examples from the literatures.
机译:特定于单元的基于事件的连续时间模型由于涉及不同单元的事件点的位置不同,因此在涉及资源限制方面存在不准确的计算问题。为了解决这一局限性,在这项工作中提出了一种具有层次结构的连续时间特定于事件的基于事件和基于时隙的混合模型框架。不受效用约束的基于单位特定事件的模型在上层形成,而基于时隙的模型在下层被引入。在分层结构中,这两层共同解决了公用事业公司考虑的批处理厂的短期生产计划问题。这项工作的主要特点包括:(a)消除对公用事业资源的过度限制,(b)解决多个计数问题,以及(c)在计算公用事业利用水平时考虑事件点的持续时间。通过文献中的两个基准示例说明了该模型的有效性和优势。

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