For historic reasons, industrial knowledge of reproducibility and restrictions imposed by regulations, open-loop feeding control approaches dominate in industrial fed-batch cultivation processes. In this study, a generic gray box biomass modeling procedure uses relative entropy as a key to approach the posterior similarly to how prior distribution approaches the posterior distribution by the multivariate path of Lagrange multipliers, for which a description of a nuisance time is introduced. The ultimate purpose of this study was to develop a numerical semi-global convex optimization procedure that is dedicated to the calculation of feeding rate time profiles during the fed-batch cultivation processes. The proposed numerical semi-global conv...
IIIA.5.1-IIIA.5.6 (puslapių numeracija publikacijoje)Bioreactors with fed-batch cultivation technolo...
The article at hand describes an integrating system for the intelligent control of complex bio techn...
The article at hand describes an integrating system for the intelligent control of complex bio techn...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Development and optimization of biopharmaceutical production processes with cell cultures is cost- a...
A microbial cultivation process model with variable biomass yield, control of substrate concentratio...
This paper addresses the control of biomass growth rate in fed-batch bioreactors. The main difficult...
This paper presents a unifying methodology for optimization of biotechnological processes, namely op...
The specific growth rate is one of the most important process variables characterizing the state of ...
The development of digital bioprocessing technologies is critical to operate modern industrial biopr...
Two optimisation techniques for the fed-batch cultivation of high cell density Escherichia coli prod...
IIIA.5.1-IIIA.5.6 (puslapių numeracija publikacijoje)Bioreactors with fed-batch cultivation technolo...
The article at hand describes an integrating system for the intelligent control of complex bio techn...
The article at hand describes an integrating system for the intelligent control of complex bio techn...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
Development and optimization of biopharmaceutical production processes with cell cultures is cost- a...
A microbial cultivation process model with variable biomass yield, control of substrate concentratio...
This paper addresses the control of biomass growth rate in fed-batch bioreactors. The main difficult...
This paper presents a unifying methodology for optimization of biotechnological processes, namely op...
The specific growth rate is one of the most important process variables characterizing the state of ...
The development of digital bioprocessing technologies is critical to operate modern industrial biopr...
Two optimisation techniques for the fed-batch cultivation of high cell density Escherichia coli prod...
IIIA.5.1-IIIA.5.6 (puslapių numeracija publikacijoje)Bioreactors with fed-batch cultivation technolo...
The article at hand describes an integrating system for the intelligent control of complex bio techn...
The article at hand describes an integrating system for the intelligent control of complex bio techn...