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Absolutely robust controllers for chemical reaction networks

机译:用于化学反应网络的绝对强大的控制器

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摘要

In this work, we design a type of controller that consists of adding a specific set of reactions to an existing mass-action chemical reaction network in order to control a target species. This set of reactions is effective for both deterministic and stochastic networks, in the latter case controlling the mean as well as the variance of the target species. We employ a type of network property called absolute concentration robustness (ACR). We provide applications to the control of a multisite phosphorylation model as well as a receptor-ligand signalling system. For this framework, we use the so-called deficiency zero theorem from chemical reaction network theory as well as multiscaling model reduction methods. We show that the target species has approximately Poisson distribution with the desired mean. We further show that ACR controllers can bring robust perfect adaptation to a target species and are complementary to a recently introduced antithetic feedback controller used for stochastic chemical reactions.
机译:在这项工作中,我们设计了一种控制器,该控制器包括向现有的大规模作用化学反应网络添加特定反应,以便控制目标物种。这组反应对于确定性和随机网络的反应是有效的,在后一种情况下控制平均值以及目标物种的方差。我们采用了一种称为绝对浓度鲁棒性(ACR)的网络属性。我们提供应用于控制多磷酸化模型以及受体 - 配体信号系统的应用。对于此框架,我们使用化学反应网络理论的所谓的缺陷零定理以及多尺度模型减少方法。我们表明目标物种具有预期的平均值的泊松分布。我们进一步表明,ACR控制器可以为目标物种带来鲁棒的完美适应性,并且与用于随机化学反应的最近引入的抗静反馈控制器互补。

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