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Global stability of a continuous bioreactor model under persistent variation of the dilution rate

稀释 单调函数 收敛速度 基质(水族馆) 趋同(经济学) 数学 李雅普诺夫函数 生物反应器 生物量(生态学) 增长率 理论(学习稳定性) 应用数学 热力学 化学 非线性系统 数学分析 物理 计算机科学 几何学 生态学 生物 量子力学 机器学习 经济 经济增长 有机化学 钥匙(锁)
作者
Alejandro Rincón,Fredy E. Hoyos,Gloria María Restrepo Franco
出处
期刊:Mathematical Biosciences and Engineering [Arizona State University]
卷期号:20 (2): 3396-3424 被引量:1
标识
DOI:10.3934/mbe.2023160
摘要

<abstract><p>In this work, the global stability of a continuous bioreactor model is studied, with the concentrations of biomass and substrate as state variables, a general non-monotonic function of substrate concentration for the specific growth rate, and constant inlet substrate concentration. Also, the dilution rate is time varying but bounded, thus leading to state convergence to a compact set instead of an equilibrium point. Based on the Lyapunov function theory with dead-zone modification, the convergence of the substrate and biomass concentrations is studied. The main contributions with respect to closely related studies are: i) The convergence regions of the substrate and biomass concentrations are determined as function of the variation region of the dilution rate (<italic>D</italic>) and the global convergence to these compact sets is proved, considering monotonic and non-monotonic growth functions separately; ii) several improvements are proposed in the stability analysis, including the definition of a new dead zone Lyapunov function and the properties of its gradient. These improvements allow proving convergence of substrate and biomass concentrations to their compact sets, while tackling the interwoven and nonlinear nature of the dynamics of biomass and substrate concentrations, the non-monotonic nature of the specific growth rate, and the time-varying nature of the dilution rate. The proposed modifications are a basis for further global stability analysis of bioreactor models exhibiting convergence to a compact set instead of an equilibrium point. Finally, the theoretical results are illustrated through numerical simulation, showing the convergence of the states under varying dilution rate.</p></abstract>

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