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Online model-based redesign of experiments for improving parameter precision in continuous flow reactors

机译:基于在线模型的实验重新设计,以提高连续流反应器中的参数精度

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Online model-based redesign of experiments (OMBRE) techniques reduce the experimental effort substantially for achieving high model reliability along with the precise estimation of model parameters. In dynamic systems, OMBRE techniques allow redesigning an experiment while it is still running and information gathered from samples collected at multiple time points is used to update the experimental conditions before the completion of the experiment. For processes evolving through a sequence of steady state experiments, significant time delays may exist when collecting new information from each single run, because measurements can be available only after steady state conditions are reached. In this work an online model-based optimal redesign technique is employed in continuous flow reactors for improving the accuracy of estimation of kinetic parameters with great benefit in terms of time and analytical resources during the model identification task. The proposed approach is applied to a simulated case study and compared with the conventional sequential model-based design of experiments (MBDoE) techniques as well as the offline optimal redesign of experiments.
机译:基于在线模型的实验重新设计(OMBRE)技术大大降低了为实现高模型可靠性以及精确估计模型参数而付出的努力。在动态系统中,OMBRE技术允许在实验仍在运行时重新设计实验,并且在完成实验之前,将从在多个时间点收集的样本中收集的信息用于更新实验条件。对于通过一系列稳态实验演变的过程,从每个单次运行中收集新信息时可能会存在明显的时间延迟,因为只有在达到稳态条件后才能进行测量。在这项工作中,在连续流反应堆中采用了基于在线模型的最佳重新设计技术,以提高动力学参数估计的准确性,从而在模型识别任务中在时间和分析资源方面大有裨益。所提出的方法应用于模拟案例研究,并与传统的基于顺序模型的实验设计(MBDoE)技术以及离线优化的实验重新设计进行了比较。

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