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Nonlinear model predictive control of fed-batch cultures of micro-organisms exhibiting overflow metabolism

机译:溢流代谢微生物的分批补料培养的非线性模型预测控制

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Overflow metabolism characterizes cells strains that are likely to produce inhibiting metabolites resulting from an excess of substrate feeding and a saturated respiratory capacity. The critical substrate level separating the two different metabolic pathways is generally not well defined. This occurs for instance in Escherichia coli cultures with aerobic acetate formation. This paper considers the control problem of a lab-scale E. coli biomass production. A preliminary study is presented to access the application of a multivariable nonlinear model predictive control approach to maximize the biomass production. This strategy is tested by simulation and its performance to control the bioreactor system is evaluated with various objective cost functions, and in the presence of noise and dead-time on the acetate concentration measurement.
机译:溢流代谢表征细胞株,这些细胞株可能由于过量的底物进料和饱和呼吸能力而产生抑制性代谢产物。分离两种不同代谢途径的关键底物水平通常没有很好地定义。这例如发生在具有需氧乙酸形成的大肠杆菌培养物中。本文考虑了实验室规模的大肠杆菌生物质生产的控制问题。提出了一项初步研究,以访问多变量非线性模型预测控制方法的应用,以最大程度地提高生物量的产量。通过仿真测试了该策略,并在各种目标成本函数下以及在乙酸盐浓度测量中存在噪音和停滞时间的情况下,评估了其控制生物反应器系统的性能。

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