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A Bilevel Programming Formulation for Dynamic Real-time Optimization ?

机译:动态实时优化的双层编程公式

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Due to ever-challenging global market conditions, plant economic optimization is becoming more critical. Recent advances have transformed the traditional steady-state real-time optimization (RTO) system of plant economic optimization to dynamic real-time optimization (DRTO) based on a dynamic prediction model. DRTO strategies that have been proposed perform economic optimization in an open-loop fashion without taking into account the presence of the plant control system. In this work, we propose a bilevel programming formulation for DRTO that includes effects of the closed-loop dynamics of an underlying constrained model predictive controller (MPC). The bilevel program is subsequently reformulated and solved as a single-level mathematical program with complementarity constraints (MPCC). We investigate the economics and control performance of the proposed strategy under varying MPC controller design parameters, and compare them to open-loop DRTO and rigorous multilevel closed-loop DRTO approaches.
机译:由于充满挑战的全球市场状况,工厂经济优化变得越来越重要。最新进展已将基于工厂经济优化的传统稳态实时优化(RTO)系统转换为基于动态预测模型的动态实时优化(DRTO)。已提出的DRTO策略以开环方式执行经济优化,而无需考虑工厂控制系统的存在。在这项工作中,我们为DRTO提出了一个双层编程公式,其中包括底层约束模型预测控制器(MPC)的闭环动力学的影响。随后将双层程序重新制定并求解为具有互补性约束(MPCC)的单级数学程序。我们研究了在变化的MPC控制器设计参数下所提出策略的经济性和控制性能,并将它们与开环DRTO和严格的多级闭环DRTO方法进行了比较。

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