Modeling and control design of batch process plant by timed Petri net

S. Lloyd, Y.M. Salleh
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引用次数: 9

Abstract

A design scheme for control of a batch process plant is proposed. The batch is assumed to be given in the form of events, conditions, their relations, and time, and is modeled by a timed Petri net. Analytical results are obtained based on the timed Petri net which describe the plant performance such as makespan, reachability state, and utilization of resources. The results are used in a plant controller which through dynamic optimization provides total control of the batch process plant. The resulting algorithm can be implemented either offline or online in real-time. The batch process design scheme discussed is illustrated by application to a small multipurpose batch process and implemented by means of a simulation package. It is noted that the results obtained through timed Petri net modeling, dynamic programming, and the theory of optimality can be used in designing the total real-time control of the batch process plant.<>
间歇式工艺装置的定时Petri网建模与控制设计
提出了一种间歇式工艺装置控制的设计方案。该批假定以事件、条件、它们的关系和时间的形式给出,并通过定时Petri网建模。基于时间Petri网的分析结果描述了工厂的完工时间、可达性状态和资源利用率等性能。该结果用于装置控制器,该控制器通过动态优化实现对间歇过程装置的总体控制。所得到的算法既可以离线实现,也可以在线实时实现。通过一个小型多用途批量工艺的应用说明了所讨论的批量工艺设计方案,并通过仿真包实现了该方案。通过定时Petri网建模、动态规划和最优性理论得到的结果可用于间歇处理装置的全实时控制设计。
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