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Computational models of signalling networks for non-linear control

机译:非线性控制信令网络的计算模型

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摘要

Artificial signalling networks (ASNs) are a computational approach inspired by the signalling processes inside cells that decode outside environmental information. Using evolutionary algorithms to induce complex behaviours, we show how chaotic dynamics in a conservative dynamical system can be controlled. Such dynamics are of particular interest as they mimic the inherent complexity of non-linear physical systems in the real world. Considering the main biological interpretations of cellular signalling, in which complex behaviours and robust cellular responses emerge from the interaction of multiple pathways, we introduce two ASN representations: a stand-alone ASN and a coupled ASN. In particular we note how sophisticated cellular communication mechanisms can lead to effective controllers, where complicated problems can be divided into smaller and independent tasks.
机译:人工信号网络(ASN)是一种计算方法,其灵感来自对外部环境信息进行解码的单元内部的信号处理过程。使用进化算法来诱导复杂的行为,我们展示了如何控制保守动力学系统中的混沌动力学。这种动力学特别有趣,因为它们模仿了现实世界中非线性物理系统的固有复杂性。考虑到细胞信号转导的主要生物学解释,其中复杂的行为和强大的细胞反应从多种途径的相互作用中出现,我们介绍了两种ASN表示:独立的ASN和耦合的ASN。特别是,我们注意到复杂的蜂窝通信机制如何导致有效的控制器,其中复杂的问题可以分为较小的任务和独立的任务。

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