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A new filtered high gain observer design for the estimation of the components concentrations in a photobioreactor in microalgae culture

机译:一种新的过滤的高增益观测器设计,用于估计微藻培养中的光生物反应器中的组分浓度

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This paper deals with the estimation of the concentrations of the biomass microalgae and the dissolved carbon dioxide from the measurements of the average intensity irradiated over the reactor in a photobioreactor. To achieve the estimation objective, a Filtered High Gain Observer (FHGO) is designed for a class of non uniformly observable systems which includes the photobioreactor model. The main feature of the proposed FHGO lies in its filtering capabilities which allow to obtain relatively smooth estimates in the presence of noisy output measurements. Of fundamental interest, the FHGO design is first carried out by assuming that the output measurements are available in a continuous manner before being extended to the case of sampled outputs leading thereby to a continuous-discrete time FHGO which inherits the main properties of the original FHGO. For comparison purposes, a Standard High Gain Observer (SHGO) designed for non uniformly observable systems has also been used to estimate the components concentrations. Both estimates, issued from the FHGO and SHGO are compared and the obtained results clearly highlight the FHGO capabilities.
机译:本文探讨了生物质微藻和溶解二氧化碳的浓度从光生物反应器中反应器中照射的平均强度的测量估计。为了实现估计目的,滤波的高增益观测器(FHGO)设计用于一类非均匀可观察系统,包括光生物反应器模型。所提出的FHGO的主要特征在于其滤波功能,允许在存在嘈杂的输出测量时获得相对平滑的估计。基本兴趣,首先通过假设输出测量以连续方式提供的输出测量来进行FHGO设计,然后在采样输出的情况下实现,从而连续离散时间FHGO继承原始FHGO的主要属性。为了比较目的,用于非均匀可观察系统的标准高增益观测器(Shgo)也已用于估计组分浓度。比较了从FHGO和Shgo发出的估计,并获得了所获得的结果明显突出了FHGO能力。

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