Interval observer for Chlorella vulgaris culture in a photobioreactor

R. Filali, C. A. Badea, S. Tebbani, D. Dumur, D. Pareau, F. Lopes
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引用次数: 3

Abstract

Microalgae present a very promising alternative for carbon dioxide mitigation strategies. These unicellular photosynthetic microorganisms fix carbon dioxide efficiently, converting it into biomass and high-value compounds. One of the control system challenges is to maximize carbon dioxide consumption by maintaining the cellular concentration to an optimal value in the exponential phase. In this paper, we propose a software sensor for the biomass concentration of Chlorella vulgaris culture in a continuous photobioreactor with uncertain model parameters. From Total Inorganic Carbon measurements, the interval observer can provide a guaranteed upper and lower bound for the cellular concentration using the available interval of the uncertain initial condition, model parameters and measurements. Numerical simulations and experimental validation are included to illustrate the performance of the proposed estimation strategy.
普通小球藻在光生物反应器中培养的间歇观察
微藻是二氧化碳缓解战略的一个非常有希望的替代方案。这些单细胞光合微生物有效地固定二氧化碳,将其转化为生物质和高价值化合物。控制系统的挑战之一是通过保持细胞浓度在指数阶段的最优值来最大化二氧化碳消耗。本文提出了一种模型参数不确定的连续光生物反应器中普通小球藻(Chlorella vulgaris)培养物生物量传感器。从总无机碳的测量中,区间观测器可以利用不确定初始条件、模型参数和测量值的可用区间,提供细胞浓度的有保证的上下界。通过数值仿真和实验验证,说明了所提估计策略的性能。
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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