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首页> 外文期刊>Journal of Process Control >Simultaneous design and control of chemical processes with application to the Tennessee Eastman process
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Simultaneous design and control of chemical processes with application to the Tennessee Eastman process

机译:在田纳西州伊士曼过程中同时进行化学过程的设计和控制

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摘要

This paper presents a new methodology to integrate process design and control design for chemical processes. The proposed method estimates infinite-time horizon bounds for worst-case scenarios and enforces process feasibility constraints using Structured Singular Value analysis (mu). By using these bounds expensive dynamic optimizations are avoided thus permitting the formulation of a computationally efficient algorithm that is suitable for large-scale systems. The approach was applied to the simultaneous design and control of the Tennessee Eastman process. The effect of different parameters on the resulting process design and control design for this plant were analyzed. The results indicate that an increase of the reactor's capacity with respect to the currently used value may result in significant cost reduction.
机译:本文提出了一种将化学过程的过程设计和控制设计相集成的新方法。所提出的方法估计最坏情况下的无限时域边界,并使用结构奇异值分析(mu)强制执行过程可行性约束。通过使用这些界限,避免了昂贵的动态优化,从而允许制定适用于大规模系统的高效计算算法。该方法应用于田纳西州伊士曼过程的同时设计和控制。分析了不同参数对该工厂最终过程设计和控制设计的影响。结果表明,相对于当前使用的值,反应堆容量的增加可能会导致成本的显着降低。

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