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一种基于代谢热信号序列滤波的生物过程控制软传感器。

A soft sensor for bioprocess control based on sequential filtering of metabolic heat signals.

作者信息

Paulsson Dan, Gustavsson Robert, Mandenius Carl-Fredrik

机构信息

Division of Biotechnology/IFM, Linköping University, Linköping 581 83, Sweden.

出版信息

Sensors (Basel). 2014 Sep 26;14(10):17864-82. doi: 10.3390/s141017864.

Abstract

Soft sensors are the combination of robust on-line sensor signals with mathematical models for deriving additional process information. Here, we apply this principle to a microbial recombinant protein production process in a bioreactor by exploiting bio-calorimetric methodology. Temperature sensor signals from the cooling system of the bioreactor were used for estimating the metabolic heat of the microbial culture and from that the specific growth rate and active biomass concentration were derived. By applying sequential digital signal filtering, the soft sensor was made more robust for industrial practice with cultures generating low metabolic heat in environments with high noise level. The estimated specific growth rate signal obtained from the three stage sequential filter allowed controlled feeding of substrate during the fed-batch phase of the production process. The biomass and growth rate estimates from the soft sensor were also compared with an alternative sensor probe and a capacitance on-line sensor, for the same variables. The comparison showed similar or better sensitivity and lower variability for the metabolic heat soft sensor suggesting that using permanent temperature sensors of a bioreactor is a realistic and inexpensive alternative for monitoring and control. However, both alternatives are easy to implement in a soft sensor, alone or in parallel.

摘要

软传感器是将可靠的在线传感器信号与用于推导额外过程信息的数学模型相结合。在此,我们通过利用生物量热法将这一原理应用于生物反应器中的微生物重组蛋白生产过程。来自生物反应器冷却系统的温度传感器信号用于估算微生物培养物的代谢热,并由此推导比生长速率和活性生物量浓度。通过应用顺序数字信号滤波,使软传感器在工业实践中对在高噪声水平环境中产生低代谢热的培养物更具鲁棒性。从三级顺序滤波器获得的估计比生长速率信号允许在生产过程的补料分批阶段控制底物的进料。还将软传感器对生物量和生长速率的估计与替代传感器探头和电容在线传感器针对相同变量进行了比较。比较表明,代谢热软传感器具有相似或更好的灵敏度和更低的变异性,这表明使用生物反应器的永久温度传感器是用于监测和控制的一种现实且廉价的替代方案。然而,这两种替代方案都易于在软传感器中单独或并行实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b2d/4239934/127685b4de67/sensors-14-17864f1.jpg

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