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Adaptation strategies for tracking constraints under plant-model mismatch

机译:植物模型不匹配下跟踪约束的适应策略

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Optimal operating conditions for a process plant are typically obtained via model-based optimization. However, due to modeling errors, the operating conditions found are often sub-optimal or, worse, they can violate critical process constraints. Hence, model corrections become a necessity and are done by exploiting measured process data. To this end, either model parameters are adapted and/or correction terms are added to the model-based optimization problem. The modifier-adaptation methodology does the latter by adding bias and gradient correction terms that are calledmodifiers.The role of modifiers and model parameters are often seen as competing, and which one of the two is better suited to track the optimality conditions is an open problem. This paper attempts to shed light on finding a synergy between the model parameters and the modifiers in the case when tracking constraints is sufficient for near-optimal performance. We demonstrate through the simulation study of a batch-to-batch optimization problem that a set of model parameters can be selected that mirror the role of modifiers. The modifiers are then added only when there is insufficient number ofmirror parametersfor independent constraint tracking.
机译:通常通过基于模型的优化来获得加工厂的最佳运行条件。但是,由于建模错误,发现的操作条件通常不是最佳的,或者更糟的是,它们可能违反关键的过程约束。因此,模型校正成为必要,并通过利用测量的过程数据来完成。为此,可以修改模型参数和/或将校正项添加到基于模型的优化问题中。修改器自适应方法通过添加称为修改器的偏差和梯度校正项来实现后者,修改器和模型参数的作用通常被认为是竞争的,而这两者中哪个更适合跟踪最优条件是一个未解决的问题。当跟踪约束足以实现近乎最佳的性能时,本文试图阐明在模型参数与修饰符之间的协同作用。通过对批次间优化问题的仿真研究,我们证明可以选择一组反映修饰符作用的模型参数。然后仅在镜像参数数量不足以进行独立约束跟踪时才添加修饰符。

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