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Persistent homology of fractional Gaussian noise
Physical Review E ( IF 2.2 ) Pub Date : 2021-09-13 , DOI: 10.1103/physreve.104.034116
H Masoomy 1 , B Askari 1 , M N Najafi 2 , S M S Movahed 1
Affiliation  

In this paper, we employ the persistent homology (PH) technique to examine the topological properties of fractional Gaussian noise (fGn). We develop the weighted natural visibility graph algorithm, and the associated simplicial complexes through the filtration process are quantified by PH. The evolution of the homology group dimension represented by Betti numbers demonstrates a strong dependency on the Hurst exponent (H). The coefficients of the birth and death curves of the k-dimensional topological holes (k-holes) at a given threshold depend on H which is almost not affected by finite sample size. We show that the distribution function of a lifetime for k-holes decays exponentially and the corresponding slope is an increasing function versus H and, more interestingly, the sample size effect completely disappears in this quantity. The persistence entropy logarithmically grows with the size of the visibility graph of a system with almost H-dependent prefactors. On the contrary, the local statistical features are not able to determine the corresponding Hurst exponent of fGn data, while the moments of eigenvalue distribution (Mn) for n1 reveal a dependency on H, containing the sample size effect. Finally, the PH shows the correlated behavior of electroencephalography for both healthy and schizophrenic samples.

中文翻译:

分数高斯噪声的持久同源性

在本文中,我们采用持久同源 (PH) 技术来检查分数高斯噪声 (fGn) 的拓扑特性。我们开发了加权自然可见性图算法,通过过滤过程关联的单纯复形由 PH 量化。由 Betti 数表示的同调群维数的演化表明对 Hurst 指数的强烈依赖性(H)。出生和死亡曲线的系数-维拓扑孔(-holes) 在给定的阈值取决于 H这几乎不受有限样本量的影响。我们证明了生命周期的分布函数-holes 呈指数衰减,相应的斜率是相对于 H而且,更有趣的是,样本量效应在这个数量上完全消失了。持久性熵随着系统可见性图的大小呈对数增长H-依赖的前置因素。相反,局部统计特征无法确定 fGn 数据对应的 Hurst 指数,而特征值分布的矩为 (n) 为了 n1 揭示依赖 H,包含样本量效应。最后,PH 显示了健康和精神分裂症样本的脑电图的相关行为。
更新日期:2021-09-13
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