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Attractor selection and perturbation for robust networks in fluctuating environments

机译:波动环境中健壮网络的吸引子选择和扰动

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摘要

The heterogeneity of connected devices, technologies, and protocols anticipated in future-generation information and communication networks also requires the development of new approaches for robust and self-adaptive systems. Recently, methods observed from biological phenomena have gained much attention as viable alternatives or inspiration for the solution of networking problems. The main advantages of such dynamic mechanisms inspired by biology lies in their self-organizing properties, scalability to numbers of connected devices, simplicity in terms of control rules, as well as adaptability and robustness to changing and fluctuating environments. Dealing with fluctuations plays a key role in maintaining the stability of the system. In this article we propose a new framework for selecting among different networks and services based on the robustness of each network¿s performance metrics. The selection is only based on observations of the system¿s responsiveness to inherent fluctuations. This method is derived from biological experiments where the speed of fluorescence evolution of proteins in bacteria is observed to have a positive correlation with the phenotypic fluctuation of fluorescence over clone bacteria. Due to the explicit utilization of the inherent fluctuations in the system, the proposed selection scheme can operate smoothly to select the most suitable and robust network.
机译:下一代信息和通信网络中预期的连接设备,技术和协议的异构性也要求开发用于健壮和自适应系统的新方法。近来,从生物学现象观察到的方法作为解决网络问题的可行替代方案或灵感受到了广泛关注。这种受生物学启发的动态机制的主要优点在于它们的自组织特性,对连接设备数量的可伸缩性,控制规则方面的简单性以及对变化和波动的环境的适应性和鲁棒性。处理波动在维持系统稳定性方面起着关键作用。在本文中,我们提出了一个新的框架,用于基于每个网络的性能指标的健壮性在不同的网络和服务之间进行选择。该选择仅基于对系统的观察-对固有波动的响应能力。此方法源自生物学实验,在该实验中,观察到细菌中蛋白质的荧光演化速度与克隆细菌上的荧光表型波动呈正相关。由于明确利用了系统中的固有波动,因此所提出的选择方案可以平稳运行,以选择最合适,最可靠的网络。

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    《Network, IEEE》 |2010年第3期|p.14-18|共5页
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