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基于SIR模型的时间侵占行为传播动力学建模与仿真
引用本文:何建佳,刘举胜,徐福缘,张亚楠.基于SIR模型的时间侵占行为传播动力学建模与仿真[J].计算机应用研究,2018,35(5).
作者姓名:何建佳  刘举胜  徐福缘  张亚楠
作者单位:上海理工大学 管理学院,上海理工大学 管理学院,上海理工大学 管理学院,上海理工大学 管理学院
基金项目:国家自然科学基金 (No.71171135);上海市高原学科(管理科学与工程)建设项目;上海高校青年教师培养资助计划项目(No.slg14020 );上海市哲学社会科学规划课题(No.2016EGL007)。
摘    要:针对时间侵占行为在复杂网络上的传播问题,基于基本SIR传染病模型,提出了一种考虑了自发感染率和外部组织环境因素的时间侵占行为传播模型,探讨了时间侵占行为在ER随机网络,NW小世界网络,WS小世界网络以及BA无标度网络上的传播,在此基础上,集中分析了无标度网络上时间侵占行为传播的影响因素。研究发现:1. 时间侵占行为的传播受压力和公平系数的影响,一定范围内,压力越小,员工发生时间侵占行为的概率越大,传播过程也越快;反之压力越大,发生时间侵占行为的概率越小,传播过程也相对较为缓慢。2.时间侵占行为的传播与传播概率和自发感染概率密切相关,初始节点的度越大,传播越快,反之传播越慢。

关 键 词:SIR模型  时间侵占行为传播  复杂网络  自发感染率  外部环境因素
收稿时间:2016/12/30 0:00:00
修稿时间:2018/3/15 0:00:00

Modeling and simulating of propagation dynamics of time banditry behaviour based on SIR model
HE Jianji,LIU Jusheng,XU Fuyuan and ZHANG Yanan.Modeling and simulating of propagation dynamics of time banditry behaviour based on SIR model[J].Application Research of Computers,2018,35(5).
Authors:HE Jianji  LIU Jusheng  XU Fuyuan and ZHANG Yanan
Affiliation:Shanghai University of Science and Technology,School of Management,,,
Abstract:To explore the propagation of time banditry behaviour on complex networks , this paper supposed a spontaneous infection model of time banditry behaviour on ER random network, NW small-world network, WS small-world networks and BA scale-free networks firstly. Secondly, it discussed the factors of affecting the spreading of time banditry behaviour on the scale-free network. Thirdly, this paper finds that the pressure and fair coefficient can influence the spreading of time banditry behaviour, in a certain range, the smaller pressure coefficient, the probability of occurrence of time banditry behaviour is bigger, the bigger pressure coefficient, the probability of time banditry behaviour is smaller, and spreading is slow relatively; the spreading of time banditry behaviour has closer connection with the probability of infection and spontaneous infection; different sizes of initial node degree of complex networks have different influence on the spreading of time banditry behaviour , the greater degree of the initial nodes, the spread is faster, whereas the more slowly.
Keywords:SIR model  propagation of time banditry behaviour  complex networks  spontaneous infection  external environmental factors
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