The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation

For the bio-dissimilation of glycerol to 1,3-propanediol by Klebsiella pneumoniae, the nonlinear dynamical system of the complex metabolism in microbial batch fermentation is studied in this study. Since the analytical solution and equilibrium point cannot be found for the nonlinear dynamical system...

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Main Authors: Hongli Wang, Bing Tan, Xiaohua Gao, Enmin Feng
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Mathematics
Online Access:http://dx.doi.org/10.1155/2022/2206419
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author Hongli Wang
Bing Tan
Xiaohua Gao
Enmin Feng
author_facet Hongli Wang
Bing Tan
Xiaohua Gao
Enmin Feng
author_sort Hongli Wang
collection DOAJ
description For the bio-dissimilation of glycerol to 1,3-propanediol by Klebsiella pneumoniae, the nonlinear dynamical system of the complex metabolism in microbial batch fermentation is studied in this study. Since the analytical solution and equilibrium point cannot be found for the nonlinear dynamical system of batch fermentation, the system stability cannot be analyzed using general methods. Therefore, in this study, the stability of the system is analyzed from another angle. We present the corresponding linear variational system for the solution to the nonlinear dynamical system of complex metabolism. In addition, the boundedness of fundamental matrix solutions for the linear variational system is obtained. With this in mind, strong stability with respect to the perturbation of the initial state vector is proved for the nonlinear dynamical system of the complex metabolism.
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series Journal of Mathematics
spelling doaj-art-193d3d8f34694d94b009edd358e4c0b32025-08-20T02:02:06ZengWileyJournal of Mathematics2314-47852022-01-01202210.1155/2022/2206419The Strong Stability of Optimal Nonlinear Dynamical System in Batch FermentationHongli Wang0Bing Tan1Xiaohua Gao2Enmin Feng3School of Information EngineeringSchool of Mathematics and StatisticsSchool of Mathematical ScienceSchool of Mathematical ScienceFor the bio-dissimilation of glycerol to 1,3-propanediol by Klebsiella pneumoniae, the nonlinear dynamical system of the complex metabolism in microbial batch fermentation is studied in this study. Since the analytical solution and equilibrium point cannot be found for the nonlinear dynamical system of batch fermentation, the system stability cannot be analyzed using general methods. Therefore, in this study, the stability of the system is analyzed from another angle. We present the corresponding linear variational system for the solution to the nonlinear dynamical system of complex metabolism. In addition, the boundedness of fundamental matrix solutions for the linear variational system is obtained. With this in mind, strong stability with respect to the perturbation of the initial state vector is proved for the nonlinear dynamical system of the complex metabolism.http://dx.doi.org/10.1155/2022/2206419
spellingShingle Hongli Wang
Bing Tan
Xiaohua Gao
Enmin Feng
The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
Journal of Mathematics
title The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
title_full The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
title_fullStr The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
title_full_unstemmed The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
title_short The Strong Stability of Optimal Nonlinear Dynamical System in Batch Fermentation
title_sort strong stability of optimal nonlinear dynamical system in batch fermentation
url http://dx.doi.org/10.1155/2022/2206419
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