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Biomolecular implementation of a quasi sliding mode feedback controller based on DNA strand displacement reactions

机译:基于DNA链置换反应的准滑模反馈控制器的生物分子实现

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A fundamental aim of synthetic biology is to achieve the capability to design and implement robust embedded biomolecular feedback control circuits. An approach to realize this objective is to use abstract chemical reaction networks (CRNs) as a programming language for the design of complex circuits and networks. Here, we employ this approach to facilitate the implementation of a class of nonlinear feedback controllers based on sliding mode control theory. We show how a set of two-step irreversible reactions with ultrasensitive response dynamics can provide a biomolecular implementation of a nonlinear quasi sliding mode (QSM) controller. We implement our controller in closed-loop with a prototype of a biological pathway and demonstrate that the nonlinear QSM controller outperforms a traditional linear controller by facilitating faster tracking response dynamics without introducing overshoots in the transient response.
机译:合成生物学的基本目标是实现设计和实现强大的嵌入式生物分子反馈控制电路的能力。实现此目标的一种方法是使用抽象化学反应网络(CRN)作为用于设计复杂电路和网络的编程语言。在这里,我们采用这种方法来促进基于滑模控制理论的一类非线性反馈控制器的实现。我们展示了一组具有超灵敏响应动力学的两步不可逆反应如何可以提供非线性准滑模(QSM)控制器的生物分子实现。我们使用生物途径的原型在闭环中实现了控制器,并证明了非线性QSM控制器通过促进更快的跟踪响应动力学而不会在瞬态响应中引入过冲,从而优于传统的线性控制器。

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