Holistic optimization of a dynamic cross-flow filtration process towards a cyber-physical system

Jörn Tebbe, T. Pawlik, Marc Trilling, Jannis Löbner, Markus Lange-Hegermann, Jan Schneider-Barnes
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Abstract

Cyber-physical production systems have emerged with the rise of Industry 4.0 in different industrial fields. Especially the food sector, where inhomogeneous input products like beer/yeast suspensions with different qualities and properties have yet slowed down automation, has potential for this evolution. This contribution presents optimization methods for a dynamical cross-flow filtration plant which is driven by an advanced control concept in combination with data driven product monitoring via inline near infrared spectroscopy (NIR) in order to improve energy savings and filtration performance. Using a hierarchical control and optimization structure, the non stationary batch process is steered towards a high production rate with low energy consumption for a variety of different input products.
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面向信息物理系统的动态横流过滤过程的整体优化
随着工业4.0在不同工业领域的兴起,信息物理生产系统已经出现。特别是在食品行业,具有不同质量和特性的啤酒/酵母悬浊液等非同质投入产品已经减缓了自动化的速度,因此有可能发生这种演变。本文提出了一种动态横流过滤装置的优化方法,该装置由先进的控制概念与通过在线近红外光谱(NIR)进行的数据驱动产品监测相结合,以提高节能和过滤性能。采用分层控制和优化结构,非平稳批处理过程被引导到各种不同输入产品的高生产率和低能耗。
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