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Robust optimization framework for process parameter and tolerance design

机译:工艺参数和公差设计的强大优化框架

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摘要

This article introduces a framework for including different uncertainties at the chemical plant design stage. Through an integrated robust optimization approach and problem formulation, equipment, operating, control, and quality costs are simultaneously taken into account, leading to system, parameter, and tolerance design. Rather than using single pointwise solutions in the decision space, operating windows leading to overall best performance are identified and defined. Such windows and their width allow us to point out control needs and goals at a very early stage of plant design. Two small-scale case studies (for a CSTR and a batch distillation column) provide enough evidence to support the practicality of the optimization framework: the robust solutions found are different and much better than the corresponding solutions obtained with the fully deterministic optimization paradigms.
机译:本文介绍了一个框架,用于在化工厂设计阶段包括不同的不确定性。通过集成的强大优化方法和问题解决方案,可以同时考虑设备,操作,控制和质量成本,从而进行系统,参数和公差设计。确定并定义了导致总体最佳性能的操作窗口,而不是在决策空间中使用单点解决方案。这样的窗口及其宽度使我们能够在工厂设计的早期阶段就指出控制需求和目标。两个小规模的案例研究(用于CSTR和间歇蒸馏塔)提供了足够的证据来支持优化框架的实用性:发现的可靠解决方案与完全确定性优化范例所获得的相应解决方案有所不同,并且要好得多。

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