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Self-Organized Criticality in Asynchronously Tuned Elementary Cellular Automata

机译:异步调谐基本元胞自动机的自组织临界性

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摘要

Self-organized criticality (SOC) reveals a mechanism by which a system is autonomously evolved to be in a critical state without needing parameter tuning. Whereas various biological systems are found to be in critical states and the significance of SOC is being re-estimated, a simple model in a general platform has not been established. Here, we present SOC in asynchronously tuned elementary cellular automata (AT_ECA), based on asynchronously updating and tuning the consistency between local dual modes of transitions. This duality was defined by adjunction, which can be ignored during synchronous updates. Duality coupled with asynchronous updating can demonstrate that SOC coincides with the criticality in a phase transition of AT_ECA with respect to density decay.
机译:自组织关键性(SOC)揭示了一种机制,系统无需参数调整即可自动将其演化为关键状态。尽管发现各种生物系统处于临界状态,并且正在重新评估SOC的重要性,但尚未建立通用平台中的简单模型。在这里,我们基于异步更新和调整局部对偶转换模式之间的一致性,在异步调整的基本细胞自动机(AT_ECA)中提出SOC。此双重性由附加定义,在同步更新期间可以忽略。对偶性与异步更新相结合可以证明,SOC与AT_ECA相对于密度衰减的相变中的临界值一致。

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  • 来源
    《Complex Systems》 |2014年第1期|55-69|共15页
  • 作者

    Yukio-Pegio Gunji;

  • 作者单位

    Department of Earth and Planetary Science Faculty of Science, Kobe University Nada Kobe 657-8501, Japan International Center of Unconventional Computing University of the West of England Bristol, BS16 1QY, UK;

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