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An Optimal Control Strategy Separating Two Species of Microalgae in Photobioreactors ?

机译:在光生物反应器中分离两种藻类的最优控制策略

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We investigate a minimal-time control problem in a chemostat continuous photo-bioreactor model that describes the dynamics of two distinct microalgae populations. More precisely, our objective is to optimize the time of selection - or separation - between two species of microalgae. We focus in this work on Droop’s model which takes into account an internal quota storage for each microalgae species. Using Pontryagin’s principle, we develop a dilution-based control strategy that steers the model trajectories to a suitable target in minimal time. Our study reveals that singular arcs play a key role in the optimization problem. A numerical optimal-synthesis, based on direct optimal control tools, is performed throughout the paper, thereby confirming the optimality of the provided feedback-control law, which is of typebang-singular.
机译:我们研究了在恒化器连续光生物反应器模型中描述两个不同微藻种群动态的最小时间控制问题。更准确地说,我们的目标是优化两种微藻之间的选择或分离时间。我们将重点放在Droop模型上,该模型考虑了每种微藻物种的内部配额存储。根据庞特里亚金(Pontryagin)的原理,我们开发了一种基于稀释的控制策略,该控制策略可在最短的时间内将模型轨迹引导至合适的目标。我们的研究表明,奇异弧在优化问题中起着关键作用。在整篇论文中都基于直接最优控制工具进行了数值最优综合,从而确定了所提供的反馈控制律的最优性,该反馈控制律为bang-奇异型。

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