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Hierarchical control for microalgae biomass production in photobiorreactors

机译:光生物反应器中微藻生物量生产的分级控制

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This paper addresses the development of a hierarchical control strategy for microalgal production in a tubular photobioreactor. The proposed control scheme is composed of two layers. On one hand, a lower layer is in charge of tracking a pH set-point by a PI controller plus feedforward compensator, which was used due to its recognized efficiency in industrial control processes. On the other hand, the upper layer calculates optimal pH set-points based on an economic model predictive control approach. The main aim of this control scheme is to maximize profits, computed as the difference between the incomes obtained from the final production sale and the associated production costs (including the environmental impart of the exhausted CO_2 losses). For this purpose, two types of models have been used depending on the requirements of each layer. Simulated and experimental results of the proposed hierarchical control architecture are presented, as well as a comparison with a single-layer architecture with constant reference implemented by the controller used in the lower layer of the hierarchical structure.
机译:本文介绍了管状光生物反应器中微藻生产的分级控制策略的发展。所提出的控制方案由两层组成。一方面,下层负责通过PI控制器和前馈补偿器跟踪pH设定点,这是由于其在工业控制过程中公认的效率而使用的。另一方面,上层基于经济模型预测控制方法来计算最佳pH设定点。该控制方案的主要目的是使利润最大化,该利润的计算方法是从最终产品销售中获得的收入与相关的生产成本(包括已用尽的CO_2损失的环境影响)之差。为此,根据每一层的要求使用了两种类型的模型。给出了所提出的分层控制体系结构的仿真和实验结果,并与由分层结构的较低层中使用的控制器实现的具有恒定参考的单层体系结构进行了比较。

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