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Control System for pH in Raceway Photobioreactors Based on Wiener Models

机译:基于维纳模型的滚道光生物反应器pH控制系统

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This paper describes a model-based control approach for the pH regulation in raceway photobioreactors. The pH variable is the most important one in the photosynthesis rate and it must be controlled within an specific range. The microalgae system is a very complex process that makes difficult to obtain simple models for control purposes. Usually, first-order models are used to describe the pH dynamics in the system and to design control algorithms. However, sometimes more complex models are required to capture the dynamics of the system and to cope with a wider operating range. For that reason, in this work, a Wiener model is presented for the pH variable looking for a trade-off between model accuracy and complexity, and where linear and nonlinear dynamics are combined. Afterwards, this model is used in a model-based control approach that allows to decouple the linear and nonlinear terms. The control scheme is based on a PID controller and a robust filter. Simulation results will show the promising behaviour of the proposed control solution.
机译:本文介绍了一种基于模型的控制方法,用于控制跑道光生物反应器的pH值。 pH变量是光合作用速率中最重要的变量,必须将其控制在特定范围内。微藻系统是一个非常复杂的过程,很难获得用于控制目的的简单模型。通常,一阶模型用于描述系统中的pH动力学并设计控制算法。但是,有时需要更复杂的模型来捕获系统动态并应对更大的工作范围。因此,在这项工作中,提出了一种针对pH变量的Wiener模型,以在模型精度与复杂性之间进行权衡,并结合线性和非线性动力学。然后,该模型用于基于模型的控制方法中,该方法允许解耦线性和非线性项。该控制方案基于PID控制器和鲁棒滤波器。仿真结果将显示所提出的控制解决方案的有希望的行为。

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