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On Robustness Computation and Optimization in BIOCHAM-4

机译:BIOCHAM-4中的鲁棒性计算和优化

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BIOCHAM-4 is a tool for modeling, analyzing and synthesizing biochemical reaction networks with respect to some formal, yet possibly imprecise, specification of their behavior. We focus here on one new capability of this tool to optimize the robustness of a parametric model with respect to a specification of its dynamics in quantitative temporal logic. More precisely, we present two complementary notions of robustness: the statistical notion of model robustness to parameter perturbations, defined as its mean functionality, and a metric notion of formula satisfaction robustness, defined as the penetration depth in the validity domain of the temporal logic constraints. We show how the formula robustness can be used in BIOCHAM-4 with no extra cost as an objective function in the parameter optimization procedure, to actually improve the model robustness. We illustrate these unique features with a classical example of the hybrid systems community and provide some performance figures on a model of MAPK signalling with 37 parameters.
机译:BIOCHAM-4是用于针对某些行为的形式化但可能不精确的规范来建模,分析和合成生化反应网络的工具。我们将重点放在此工具的一项新功能上,该功能相对于定量时间逻辑中其动力学的规范来优化参数模型的鲁棒性。更准确地说,我们提出了两个健壮性的补充概念:模型健壮性对参数摄动的统计概念,定义为它的平均功能;度量公式健壮性的度量概念,定义为时间逻辑约束的有效性域中的渗透深度。我们展示了如何在BIOCHAM-4中将公式鲁棒性用于参数优化过程中的目标函数而无额外成本,从而实际提高模型的鲁棒性。我们用混合系统社区的经典示例说明了这些独特的功能,并在具有37个参数的MAPK信号传导模型上提供了一些性能数据。

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