Asymptotical stability of a nonlinear non-differentiable dynamic system in microbial continuous cultures
From MaRDI portal
Publication:1629925
DOI10.1186/s13662-017-1288-xzbMath1422.37070OpenAlexW2745954589WikidataQ59524445 ScholiaQ59524445MaRDI QIDQ1629925
Jiajia Lv, Li-Ping Pang, En-Min Feng
Publication date: 7 December 2018
Published in: Advances in Difference Equations (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1186/s13662-017-1288-x
Dynamical systems in biology (37N25) Kinetics in biochemical problems (pharmacokinetics, enzyme kinetics, etc.) (92C45) Biochemistry, molecular biology (92C40)
Related Items (2)
A linear optimal feedback control for producing 1,3-propanediol via microbial fermentation ⋮ A multistage feedback control strategy for producing 1,3-propanediol in microbial continuous fermentation
Cites Work
- \(h\)-stability for differential systems relative to initial time difference
- Pathway identification using parallel optimization for a complex metabolic system in microbial continuous culture
- Stability of nonlinear microbial bioconversion system concerning glycerol's active transport and 1,3-PD's passive transport
- A multistage system of microbial fed-batch fermentation and its parameter identification
- Existence of equilibrium points and stability of the nonlinear dynamical system in microbial continuous cultures
- On common linear copositive Lyapunov functions for pairs of stable positive linear systems
- Modelling and parameter identification of a nonlinear enzyme-catalytic time-delayed switched system and its parallel optimization
- Robust multi-objective optimal switching control arising in 1,3-propanediol microbial fed-batch process
- Variationally asymptotically stable difference systems
- Stability analysis of equilibrium for microorganisms in continuous culture
- Parameters identification problem of the nonlinear dynamical system in microbial continuous cultures
- Variationally stable difference systems
This page was built for publication: Asymptotical stability of a nonlinear non-differentiable dynamic system in microbial continuous cultures