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Modelling and observer design for a methane bioconversion process

机译:甲烷生物转化过程的建模与观测器设计

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Methane is currently an emerging alternative feedstock for biological processes. In this paper, we study a particular methane bioconversion process based on the bacterium Methylomicrobium buryatense 5GB1, with the aim of improving accessibility of the process to state estimation and control. First, a non-linear unsegregated, unstructured model, consisting of 8 dynamic mass flow balance equations and 8 state variables, is constructed and implemented as a dynamic simulator in MATLAB and Simulink. Second, an observability analysis is performed with the aim of finding suitable sensor configurations for state estimation, and the resulting observable configurations are further evaluated by checking the performance of linear Kalman filters for each configuration. This evalution shows that including a biomass sensor in the measurements for the Kalman filter may have conflicting effects on estimation accuracy.
机译:甲烷目前是生物过程的新出现的替代原料。 在本文中,我们研究了基于细菌甲基微生物硼脲5GB1的特定甲烷生物转化过程,目的是提高该过程的可达性,以估算和控制。 首先,由8个动态质量流量平衡方程和8个状态变量组成的非线性无线的非结构化模型,并在Matlab和Simulink中作为动态模拟器实现。 其次,通过寻找状态估计的合适传感器配置来执行可观察性分析,通过检查每个配置的线性卡尔曼滤波器的性能,进一步评估所得到的可观察配置。 该评估表明,在卡尔曼滤波器的测量中包括生物质传感器可能对估计精度具有冲突的影响。

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