A new strategy for controlling substrate feed in the exponential growth phase of aerated fed-batch fermentations is presented. The challenge in this phase is typically to maximize specific growth rate while avoiding the accumulation of overflow metabolites which can occur at high substrate feed rates. In the new strategy, regular perturbations to the feed rate are applied and the proximity to overflow metabolism is continuously assessed from the frequency spectrum of the dissolved oxygen signal. The power spectral density for the frequency of the external perturbations is used as a control variable in a controller to regulate the substrate feed. The strategy was implemented in an industrial pilot scale fermentation set up and calibrated and...
The topic of this thesis is bioprocess control, more specifically control of industrial-scale microb...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
Overflow metabolism, i.e. the production of metabolic by-products at a high glycolytic flux, is a re...
The work presented here is based on two papers, both pertaining to perturbation-based control strate...
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...
A study of the feasibility of perturbation-based control methods in industrial fed-batch fermentatio...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
The specific growth rate is one of the most important process variables characterizing the state of ...
Overflow metabolism characterizes cells strains that are likely to produce inhibiting by-products re...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
The topic of this thesis is bioprocess control, more specifically control of industrial-scale microb...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
Overflow metabolism, i.e. the production of metabolic by-products at a high glycolytic flux, is a re...
The work presented here is based on two papers, both pertaining to perturbation-based control strate...
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...
A study of the feasibility of perturbation-based control methods in industrial fed-batch fermentatio...
Accurate control of the specific growth rate (µ) of microorganisms is dependent on the ability to qu...
The specific growth rate is one of the most important process variables characterizing the state of ...
Overflow metabolism characterizes cells strains that are likely to produce inhibiting by-products re...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
The topic of this thesis is bioprocess control, more specifically control of industrial-scale microb...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...
In this paper we present a growth rate controller for a fed-batch bioprocess. An observer estimates ...