守恒元/溶液元法在模拟移动床色谱过程中的模型预测控制

Valentin Plamenov Chernev, Lino O. Santos, A. Wouwer, A. Kienle
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引用次数: 0

摘要

模拟移动床色谱(SMB)过程用于制药,生物技术和石油化工行业的难分离。由于对干扰的高度敏感性,这些过程通常在次优条件下以开环模式运行。本文提出了一种基于全色谱模型在线优化模型预测控制(MPC)的过程控制方法。为了快速准确地求解由偏微分代数方程组描述的底层模型,采用了所谓的时空守恒元/解法(CE/SE)。作为一个应用实例,考虑了比卡鲁胺外消旋混合物的分离,其中比卡鲁胺是一种有价值的活性药物成分。为了评估控制器的性能,模拟了参考跟踪(纯度要求的变化)和干扰抑制(饲料混合物组成的变化)场景。由于不存在植物模型不匹配,控制器能够密切跟踪参考从完全纯度分离到降低纯度分离的变化。然而,干扰抑制仿真结果表明,为了有效地抑制干扰,控制器需要自适应机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model Predictive Control of Simulated Moving Bed Chromatographic Processes Using Conservation Element/Solution Element Method
Simulated moving bed chromatographic (SMB) processes are used for difficult separations in pharmaceutical, biotechnological and petrochemical industries. Due to high sensitivity to disturbances these processes are usually operated in open-loop mode under suboptimal conditions. In the present work, operation of such processes based on the online optimizing model predictive control (MPC) using the full blown chromatographic model is proposed. For the fast and accurate solution of the underlying model described by a system of partial differential algebraic equations, the so-called space-time conservation element/solution method (CE/SE) is used. As an application example, the separation of racemic mixture of bicalutamides, one of which is a valuable active pharmaceutical component, is considered. To evaluate the performance of the controller, reference tracking (change of the purity requirements) and disturbance rejection (change of the composition of the feed mixture) scenarios are simulated. Since there is no plant-model mismatch, the controller is able to follow the change of the reference from complete to reduced purity separation closely. However, the results of the disturbance rejection simulation shows that the controller requires an adaption mechanism in order to efficiently reject the disturbance.
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