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Universal Emergence of 1/f Noise in Asynchronously Tuned Elementary Cellular Automata

机译:异步调谐基本元胞自动机中1 / f噪声的普遍出现

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In this paper, we propose asynchronously tuned elementary cellular automata (AT_ECA) as models that implement a new type of self-organized criticality (SOC). SOC in AT_ECA is based on asynchronously updating and locally tuning the consistency between dual modes of transition. A previous work showed that AT_ECA generate class 4-like spacetime patterns over a wide area of the rule space, and the density decay follows a power law for some of the rules. In this study, we performed a spectral analysis of AT_ECA, of which a great number of rules were found to exhibit 1/f noise, suggesting that AT_ECA realize critical states without selecting specific rules or fine-tuning parameters.
机译:在本文中,我们提出了异步调谐的基本元胞自动机(AT_ECA)作为实现新型自组织临界(SOC)类型的模型。 AT_ECA中的SOC基于异步更新和本地调整双重转换模式之间的一致性。先前的工作表明,AT_ECA在规则空间的较大区域上生成类4的时空模式,并且密度衰减遵循某些规则的幂定律。在这项研究中,我们对AT_ECA进行了频谱分析,发现其中很多规则都表现出1 / f噪声,这表明AT_ECA无需选择特定规则或微调参数即可实现临界状态。

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