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Individual Column State and Parameter Estimation in the Simulated Moving Bed Process: an Optimization-based Method

机译:模拟移动床处理中的单个列状态和参数估计:基于优化的方法

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The aim of this work is to propose a method for the simultaneous state and parameter estimation of the individual columns in the Simulated Moving Bed chromatographic process based on concentration measurements only in the switched product outlets. The method exploits the fact that the measurements switch from the inlets of the columns to their outlets sequentially. The estimation problem is cast as a dynamic optimization problem where the prediction error of the output profile is minimized. The initial concentrations in the individual columns and the parameters of the columns are treated as degrees of freedom of the optimization problem. As at each outlet the concentrations of one component are very small and therefore are subject to large relative measurement errors for given expected absolute errors of the concentration measurements, measurements for two different points in time, when the extract port and when the raffinate port is at the outlet of the column under consideration are taken into account simultaneously. The effectiveness of the method is demonstrated for the separation of an isopropanolol racemic mixture.
机译:本作作品的目的是提出基于仅在开关产品出口中的浓度测量的模拟运动床色谱法中的单个柱同时状态和参数估计方法。该方法利用测量从列的入口顺序地从列的入口切换到出口。估计问题作为动态优化问题被投射,其中输出轮廓的预测误差最小化。单个列中的初始浓度和列的参数被视为优化问题的自由度。如在每个出口处,一个组分的浓度非常小,因此对于给定浓度测量的预期绝对误差的相对测量误差是非常大的,对于提取端口以及抽筋端口时,两次不同点的测量值。正在考虑的列的出口同时考虑。对该方法的有效性用于分离异丙醇外消旋混合物。

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