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Novel non-linear dynamics P2P network worm propagation and immune model

机译:新型非线性动力学P2P网络蠕虫传播与免疫模型

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摘要

This study proposes a novel non-linear dynamic worm propagation model in order to describe the dynamics model of conditional triggered worm's propagation in the network, then proposes an immune dynamics model. First, the authors build impact factor according to actual condition; second, the conditions trigger type worm propagation model is established and the corresponding immune model is constructed; third, the epidemic is deduced non-toxic balance and do not sufficient conditions for the flood of worm is proved based on the theory of worm propagation model, and then the conditions of the worm will not overflow sufficient is proved through simulation experiments; finally, according to the simulation analysis and the characteristics of worm propagation, a series of control strategies are proposed, as well as the changing trend of worms in the network with immune ability. A series of simulation results show that the proposed models are reasonable and effective, it can more accurately reflect the worm propagation process in the real peer-to-peer (P2P) network, which can also accurately predict the worm propagation trend in P2P network.
机译:为了描述条件触发蠕虫在网络中传播的动力学模型,本研究提出了一种新颖的非线性动态蠕虫传播模型,然后提出了一种免疫动力学模型。首先,作者根据实际情况建立影响因子。其次,建立条件触发型蠕虫传播模型,并建立相应的免疫模型。第三,根据蠕虫传播模型理论证明了该流行病的无毒平衡,蠕虫泛滥的条件不充分,然后通过仿真实验证明了蠕虫的条件不会充分溢出。最后,根据仿真分析和蠕虫传播的特点,提出了一系列控制策略,以及具有免疫能力的蠕虫在网络中的变化趋势。一系列仿真结果表明,所提出的模型是合理有效的,它可以更准确地反映实际对等网络中蠕虫的传播过程,也可以准确地预测P2P网络中蠕虫的传播趋势。

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