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Flow interaction based propagation model and bursty influence behavior analysis of Internet flows

机译:基于流交互的Internet流传播模型和突发影响行为分析

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QoS (quality of service) fluctuations caused by Internet bursty flows influence the user experience in the Internet, such as the increment of packet loss and transmission time. In this paper, we establish a mathematical model to study the influence propagation behavior of the bursty flow, which is helpful for developing a deep understanding of the network dynamics in the Internet complex system. To intuitively reflect the propagation process, a data flow interaction network with a hierarchical structure is constructed, where the neighbor order is proposed to indicate the neighborhood relationship between the bursty flow and other flows. The influence spreads from the bursty flow to each order of neighbors through flow interactions. As the influence spreads, the bursty flow has negative effects on the odd order neighbors and positive effects on the even order neighbors. The influence intensity of bursty flow decreases sharply between two adjacent orders and the decreasing degree can reach up to dozens of times in the experimental simulation. Moreover, the influence intensity increases significantly when network congestion situation becomes serious, especially for the 1st order neighbors. Network structural factors are considered to make a further study. Simulation results show that the physical network scale expansion can reduce the influence intensity of bursty flow by decreasing the flow distribution density. Furthermore, with the same network scale, the influence intensity in WS small-world networks is 38.18% and 18.40% lower than that in ER random networks and BA scale free networks, respectively, due to a lower interaction probability between flows. These results indicate that the macro-structural changes such as network scales and styles will affect the inner propagation behaviors of the bursty flow. (C) 2016 Elsevier B.V. All rights reserved.
机译:Internet突发流量引起的QoS(服务质量)波动会影响Internet用户体验,例如丢包率和传输时间的增加。在本文中,我们建立了一个数学模型来研究突发流的影响传播行为,这有助于加深对Internet复杂系统中网络动力学的了解。为了直观地反映传播过程,构建了具有层次结构的数据流交互网络,提出了邻居顺序来指示突发流与其他流之间的邻居关系。影响通过流量交互作用从突发流量扩展到邻居的每个顺序。随着影响的扩展,突发流对奇数阶邻居产生负面影响,对偶数阶邻居产生积极影响。在实验模拟中,爆裂流的影响强度在两个相邻阶之间急剧下降,下降程度可以达到数十倍。此外,当网络拥塞情况变得严重时,尤其是对于一阶邻居,影响强度会显着增加。考虑网络结构因素以进行进一步研究。仿真结果表明,物理网络规模扩展可以通过减小流量分布密度来降低突发流量的影响强度。此外,在相同的网络规模下,由于流之间的交互概率较低,WS小世界网络中的影响强度分别比ER随机网络和BA无规模网络中的影响强度低38.18%和18.40%。这些结果表明,宏观结构的变化(例如网络规模和样式)将影响突发流的内部传播行为。 (C)2016 Elsevier B.V.保留所有权利。

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