• DocumentCode
    3703530
  • Title

    A unifying model for representing time-varying graphs

  • Author

    Klaus Wehmuth;Artur Ziviani;Eric Fleury

  • Author_Institution
    Computer Science Department, National Laboratory for Scientific Computing (LNCC), Av. Get?lio Vargas, 333 - 25651-075 - Petr?polis, RJ, Brazil
  • fYear
    2015
  • Firstpage
    1
  • Lastpage
    10
  • Abstract
    Graph-based models form a fundamental aspect of data representation in Data Sciences and play a key role in modeling complex networked systems. In particular, recently there is an ever-increasing interest in modeling dynamic complex networks, i.e. networks in which the topological structure (nodes and edges) may vary over time. In this context, we propose a novel model for representing finite discrete Time-Varying Graphs (TVGs), which are typically used to model dynamic complex networked systems. We analyze the data structures built from our proposed model and demonstrate that, for most practical cases, the asymptotic memory complexity of our model is in the order of the cardinality of the set of edges. Further, we show that our proposal is an unifying model that can represent several previous (classes of) models for dynamic networks found in the recent literature, which in general are unable to represent each other. In contrast to previous models, our proposal is also able to intrinsically model cyclic (i.e. periodic) behavior in dynamic networks. These representation capabilities attest the expressive power of our proposed unifying model for TVGs. We thus believe our unifying model for TVGs is a step forward in the theoretical foundations for data analysis of complex networked systems.
  • Keywords
    "Tensile stress","Analytical models","Data models","Computational modeling","Proposals","Context","Context modeling"
  • Publisher
    ieee
  • Conference_Titel
    Data Science and Advanced Analytics (DSAA), 2015. 36678 2015. IEEE International Conference on
  • Print_ISBN
    978-1-4673-8272-4
  • Type

    conf

  • DOI
    10.1109/DSAA.2015.7344810
  • Filename
    7344810