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Main Authors: Asswad, Rand, Gouzé, Jean-Luc, Cinquemani, Eugenio
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2509.03096
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author Asswad, Rand
Gouzé, Jean-Luc
Cinquemani, Eugenio
author_facet Asswad, Rand
Gouzé, Jean-Luc
Cinquemani, Eugenio
contents Microalgae are an important source of precursors (e.g. lipids) for a variety of biosynthetic processes (e.g. biofuel production). Their co-culturing with other organisms providing essential substrates for growth may reduce cost and provide new handles to control and robustify the production process. In previous work, we have introduced a nonlinear ordinary differential equation model for an optogenetically controllable algal-bacterial consortium, and studied maximization of algal biomass productivity in a continuous-flow bioreactor relative to optogenetic action and dilution rate. In this work, we expand the investigation of steady-state production performance for different objective criteria and control knobs. We additionally consider a yield criterion and a cost criterion, as well as a multiobjective optimization problem whose solution is shown to directly relate with a notion of net process profit. We investigate dependence of the optimal solutions on all the available bioprocess control knobs (optogenetics, dilution rate, richness of input medium), providing analytical results to characterize the solutions from different criteria and the relations among them, as well as simulations illustrating our results for a realistic set of biological system parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2509_03096
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Single and Multi-Objective Performance Optimization of an Algal-Bacterial Synthetic Process
Asswad, Rand
Gouzé, Jean-Luc
Cinquemani, Eugenio
Optimization and Control
Microalgae are an important source of precursors (e.g. lipids) for a variety of biosynthetic processes (e.g. biofuel production). Their co-culturing with other organisms providing essential substrates for growth may reduce cost and provide new handles to control and robustify the production process. In previous work, we have introduced a nonlinear ordinary differential equation model for an optogenetically controllable algal-bacterial consortium, and studied maximization of algal biomass productivity in a continuous-flow bioreactor relative to optogenetic action and dilution rate. In this work, we expand the investigation of steady-state production performance for different objective criteria and control knobs. We additionally consider a yield criterion and a cost criterion, as well as a multiobjective optimization problem whose solution is shown to directly relate with a notion of net process profit. We investigate dependence of the optimal solutions on all the available bioprocess control knobs (optogenetics, dilution rate, richness of input medium), providing analytical results to characterize the solutions from different criteria and the relations among them, as well as simulations illustrating our results for a realistic set of biological system parameters.
title Single and Multi-Objective Performance Optimization of an Algal-Bacterial Synthetic Process
topic Optimization and Control
url https://arxiv.org/abs/2509.03096