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Sensitivity analysis and parameter identification of nonlinear hybrid systems for glycerol transport mechanisms in continuous culture

机译:连续培养中甘油转运机制的非线性混合系统的敏感性分析和参数辨识

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摘要

In this paper, we establish a modified fourteen-dimensional nonlinear hybrid dynamic system with genetic regulation to describe the microbial continuous culture, in which we consider that there are three possible ways for glycerol to pass the cell's membrane and one way for 1,3-PD (passive diffusion and active transport). Then we discuss the existence, uniqueness, continuous dependence of solutions and the compactness of the solution set. We construct a global sensitivity analysis approach to reduce the number of kinetic parameters. In order to infer the most reasonable transport mechanism of glycerol, we propose a parameter identification model aiming at identifying the parameter with higher sensitivity and transport of glycerol, which takes the robustness index of the intracellular substance together with the relative error between the experimental data and the computational values of the extracellular substance as a performance index. Finally, a parallel algorithm is applied to find the optimal transport of glycerol and parameters. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,我们建立了具有遗传调节力的改进的十四维非线性混合动力系统,用于描述微生物的连续培养,其中我们认为甘油有三种可能的方式通过细胞膜,一种为1,3-的方式。 PD(被动扩散和主动传输)。然后,我们讨论了解的存在性,唯一性,连续依赖性以及解集的紧致性。我们构建了一种全局灵敏度分析方法,以减少动力学参数的数量。为了推断最合理的甘油运输机理,我们提出了一个参数识别模型,旨在识别具有较高灵敏度和甘油运输能力的参数,该模型将细胞内物质的稳健性指标与实验数据和实验数据之间的相对误差相结合。细胞外物质的计算值作为性能指标。最后,应用并行算法来找到甘油和参数的最佳传输方式。 (C)2014 Elsevier Ltd.保留所有权利。

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