Stabilization of the chemostat system with mutations and application to microbial production

T. Bayen, J. Coville, F. Mairet
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Abstract

In this paper, we consider the chemostat system with n ≥ 1 species, one limiting substrate, and mutations between species. Our objective is to globally stabilize the corresponding dynamical system around a desired equilibrium point. Doing so, we introduce auxostat feedback controls which are controllers allowing the regulation of the substrate concentration. We prove that such feedback controls globally stabilize the resulting closed-loop system near the desired equilibrium point. This result is obtained by combining the theory of asymptotically autonomous systems and an explicit computation of solutions to the limit system. The performance of such controllers is illustrated on an optimal control problem of Lagrange type which consists in maximizing the production of species over a given time period w.r.t. the dilution rate chosen as control variable.
突变恒化系统的稳定及其在微生物生产中的应用
本文考虑具有n≥1个物种、一个限制底物和物种间突变的恒化系统。我们的目标是使相应的动力系统在一个理想的平衡点周围全局稳定。这样做,我们引入了辅助调节反馈控制,这是允许调节底物浓度的控制器。我们证明了这种反馈控制使闭环系统全局稳定在期望平衡点附近。这一结果是将渐近自治系统理论与极限系统解的显式计算相结合得到的。这种控制器的性能用拉格朗日型最优控制问题来说明,该问题包括在给定的时间段内最大化物种的生产,而不是选择稀释率作为控制变量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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