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Occupation measure methods for modelling and analysis of biological hybrid systems

机译:用于生物混合系统建模和分析的职业测量方法

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Mechanistic models in biology often involve numerous parameters about which we do not have direct experimental information. The traditional approach is to fit these parameters using extensive numerical simulations (e.g. by the Monte-Carlo method), and eventually revising the model if the predictions do not correspond to the actual measurements. In this work we propose a methodology for hybrid system model revision, when new types of functions are needed to capture time varying parameters. To this end, we formulate a hybrid optimal control problem with intermediate points as successive infinite-dimensional linear programs (LP) on occupation measures. Then, these infinite-dimensional LPs are solved using a hierarchy of semidefinite relaxations. The whole procedure is applied on a recent model for haemoglobin production in erythrocytes.
机译:生物学中的力学模型通常涉及许多参数,而我们没有直接的实验信息。传统方法是使用广泛的数值模拟(例如,通过蒙特卡洛方法)拟合这些参数,如果预测与实际测量结果不符,则最终修改模型。在这项工作中,当需要新型功能来捕获时变参数时,我们提出了一种用于混合系统模型修订的方法。为此,我们将中间点的混合最优控制问题公式化为关于占用度量的连续无限维线性程序(LP)。然后,使用半定松弛的层次结构来求解这些无限维LP。整个过程应用于红细胞中血红蛋白产生的最新模型。

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