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Enforcing Model Adequacy in Real-Time Optimization via Dedicated Parameter Adaptation

机译:通过专用参数自适应执行模型充分性

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Iterative real-time optimization schemes that employ modifier adaptation add bias and gradient correction terms to the model that is used for optimization. These affine corrections lead to meeting the first-order necessary conditions of optimality of the plant despite plant-model mismatch. However, since the added terms do not include curvature information, satisfaction of the second-order sufficient conditions of optimality is not guaranteed, and the model might be deemed inadequate for optimization. In the context of modifier adaptation, this paper proposes to include a dedicated parameter-estimation step such that also the second-order optimality conditions arc met at the plant optimum. In addition, we propose a procedure to select the best parameters to adapt based on a local sensitivity analysis. A simulation study dealing with product maximization in a fed-batch reactor demonstrates that the proposed scheme can both select the right parameters and determine their values such that modifier adaptation can drive the plant to optimality fast and without oscillations.
机译:使用修改器适配的迭代实时优化方案将偏差和渐变校正项添加到用于优化的模型。尽管植物模型不匹配,这些仿射校正导致符合植物最优性的一阶必要条件。然而,由于所添加的术语不包括曲率信息,因此不保证对二阶充分的最优性条件的满足,并且该模型可能被认为是不充分的优化。在改进剂适应的背景下,本文提出包括专用参数估计步骤,使得二阶最优性条件也在植物最佳时满足。此外,我们提出了一种方法来基于局部灵敏度分析选择最佳参数以适应。处理FED批量反应堆中产品最大化的仿真研究表明,所提出的方案可以选择合适的参数并确定它们的值,使得调节剂适应可以快速且无振荡地将工厂驱动到最优性。

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