TY - GEN
T1 - On the growth of Internet application flows
T2 - IEEE INFOCOM 2011
AU - Wu, Xiaofei
AU - Yu, Ke
AU - Wang, Xin
PY - 2011
Y1 - 2011
N2 - Internet structure possesses many properties of complex networks. However, existing studies are often constrained to deriving web connections based on partial data collected, and the actual Internet traffic and user behaviors are far from being understood. With detailed traffic flow records collected through powerful hardware-based monitors, we study from the perspective of complex network the characteristics of four types of traffic: P2Pdownload, HTTP, Instant Messaging and overall traffic. Based on the data analysis and comparison of different applications, we confirm that both the distributions of node degree and strength of nodes/edges follow power law but they have significant different exponents. Specifically, taking advantage of the strict timing of the records, we study the dynamics of flow graphs. The growth of edges upon nodes is nonlinear. Edges formed between existing nodes, instead of the ones arriving with new nodes dominate the growth. We also observe linear preferential attachment behaviors in the flow graphs.
AB - Internet structure possesses many properties of complex networks. However, existing studies are often constrained to deriving web connections based on partial data collected, and the actual Internet traffic and user behaviors are far from being understood. With detailed traffic flow records collected through powerful hardware-based monitors, we study from the perspective of complex network the characteristics of four types of traffic: P2Pdownload, HTTP, Instant Messaging and overall traffic. Based on the data analysis and comparison of different applications, we confirm that both the distributions of node degree and strength of nodes/edges follow power law but they have significant different exponents. Specifically, taking advantage of the strict timing of the records, we study the dynamics of flow graphs. The growth of edges upon nodes is nonlinear. Edges formed between existing nodes, instead of the ones arriving with new nodes dominate the growth. We also observe linear preferential attachment behaviors in the flow graphs.
KW - Internet flow
KW - complex network
KW - degree distribution
KW - growth process
KW - power law
KW - preferential attachment
UR - https://www.scopus.com/pages/publications/79960857241
U2 - 10.1109/INFCOM.2011.5935019
DO - 10.1109/INFCOM.2011.5935019
M3 - Conference contribution
AN - SCOPUS:79960857241
SN - 9781424499212
T3 - Proceedings - IEEE INFOCOM
SP - 2096
EP - 2104
BT - 2011 Proceedings IEEE INFOCOM
Y2 - 10 April 2011 through 15 April 2011
ER -