首页> 外文期刊>IFAC PapersOnLine >Feedback Control and Synthetic Biology: Constraints on Design 1 1 H.C.B. Steel would like to acknowledge the General Sir John Monash foundation for partial financial support of this work. A. Papachristodoulou was supported in part by EP/M002454/1.
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Feedback Control and Synthetic Biology: Constraints on Design 1 1 H.C.B. Steel would like to acknowledge the General Sir John Monash foundation for partial financial support of this work. A. Papachristodoulou was supported in part by EP/M002454/1.

机译:反馈控制和合成生物学:设计约束 1 1 HCB钢铁公司要感谢约翰·莫纳什爵士爵士基金会为这项工作提供的部分财政支持。 A. Papachristodoulou部分得到了EP / M002454 / 1的支持。

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Synthetic Biology is an emerging field at the interface of biology and engineering, concerned with the design and implementation of synthetic biological parts, devices and systems. With applications ranging from industrial biosynthesis of chemicals to treatment and prevention of disease, Synthetic Biology holds great promise, but faces several challenges due to the uncertainties and noise inherent in biological systems. In this paper we review recent progress in the design and testing of biological control systems that aim to overcome these limitations. We then use classical control theory to derive a number of design constraints for implementation of linear control systems that achieve adaptation and disturbance rejection. Finally, we design a linear system for rejection of ramp-type disturbances, and from this demonstrate how the derived linear system constraints can be embedded in a more realistic non-linear biological context.
机译:合成生物学是生物学和工程学领域的一个新兴领域,涉及合成生物学部件,设备和系统的设计和实现。合成生物学的应用范围很广,从化学工业生物合成到疾病的治疗和预防,都具有广阔的前景,但由于生物系统固有的不确定性和噪声,它面临着一些挑战。在本文中,我们回顾了旨在克服这些局限性的生物控制系统设计和测试方面的最新进展。然后,我们使用经典的控制理论来推导许多设计约束,以实现实现自适应和干扰抑制的线性控制系统。最后,我们设计了一种用于抑制斜坡型干扰的线性系统,并由此证明了如何将导出的线性系统约束嵌入到更现实的非线性生物学环境中。

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