自我保护意识行为对复杂网络中疫情传播的影响

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Ying Ding, Guanghui Yan, Huayan Pei, Wenwen Chang
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引用次数: 0

摘要

本研究引入了经典的易感-感染-恢复(SIR)模型的扩展,通过纳入个体自我保护意识来更准确地反映其对流行病传播的影响。我们推导了同质和异质网络的爆发阈值,并通过理论分析验证了模型。在Erdős-Rényi (ER)和Barabási-Albert (BA)网络上的数值模拟结果表明,自我保护行为显著减少了疫情的传播。值得注意的是,尽管异质网络显示出受感染个体峰值的更明显减少,但它们仍然表现出更大的最终感染规模和更低的爆发阈值。这些结果突出了网络结构和自我保护意识对流行病动态的双重影响,为传染病控制策略提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of self-protection awareness behavior on epidemic spreading in complex networks

This study introduces an extension of the classical Susceptible-Infectious-Recovered (SIR) model by incorporating individual self-protection awareness to more accurately reflect its impact on epidemic spread. We derive outbreak thresholds for both homogeneous and heterogeneous networks and validate the model through theoretical analysis. Key findings from numerical simulations on Erdős-Rényi (ER) and Barabási-Albert (BA) networks show that self-protective behaviors significantly reduce the epidemic spread. Notably, while heterogeneous networks demonstrate a more pronounced reduction in the peak of infected individuals, they still exhibit a larger final infection scale and a lower outbreak threshold. These results highlight the dual impact of network structure and self-protection awareness on epidemic dynamics, offering new insights for infectious disease control strategies.

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来源期刊
The European Physical Journal B
The European Physical Journal B 物理-物理:凝聚态物理
CiteScore
2.80
自引率
6.20%
发文量
184
审稿时长
5.1 months
期刊介绍: Solid State and Materials; Mesoscopic and Nanoscale Systems; Computational Methods; Statistical and Nonlinear Physics
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