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An MPC-based control structure selection approach for simultaneous process and control design

机译:基于MPC的控制结构选择方法可同时进行过程和控制设计

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摘要

An optimization framework that addresses the simultaneous process and control design of chemical systems including the selection of the control structure is presented. Different control structures composed of centralized and fully decentralized predictive controllers are considered in the analysis. The system's dynamic performance is quantified using a variability cost function that assigns a cost to the worst-case closed-loop variability, which is calculated using analytical bounds derived from tests used for robust control design. The selection of the controller structure is based on a communication cost term that penalizes pairings between the manipulated and the controlled variables based on the tuning parameters of the MPC controller and the process gains. Both NLP and MINLP formulations are proposed. The NLP formulation is shown to be faster and converges to a similar solution to that obtained with the MINLP formulation. The proposed methods were applied to a wastewater treatment industrial plant.
机译:提出了针对化学系统同时处理和控制设计的优化框架,包括控制结构的选择。分析中考虑了由集中式和完全分散式预测控制器组成的不同控制结构。使用可变性成本函数对系统的动态性能进行量化,可变性成本函数将成本分配给最坏情况的闭环可变性,该可变性使用从用于鲁棒控制设计的测试得出的分析界限来计算。控制器结构的选择基于通信成本项,该通信项项基于MPC控制器的调整参数和过程收益来惩罚受控变量和受控变量之间的配对。提出了NLP和MINLP配方。 NLP制剂显示出更快的速度,并且收敛到与MINLP制剂获得的溶液相似的溶液。所提出的方法被应用于废水处理工厂。

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