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A fragmentation model of earthquake-like behavior in internet access activity

Author

Listed:
  • Antonino A. Paguirigan

    (National Institute of Physics, University of the Philippines, Diliman, 1101 Quezon City, Philippines)

  • Marc Jordan G. Angco

    (#x2020;University Computer Center, University of the Philippines, Diliman, 1101 Quezon City, Philippines)

  • Johnrob Y. Bantang

    (National Institute of Physics, University of the Philippines, Diliman, 1101 Quezon City, Philippines)

Abstract

We present a fragmentation model that generates almost any inverse power-law size distribution, including dual-scaled versions, consistent with the underlying dynamics of systems with earthquake-like behavior. We apply the model to explain the dual-scaled power-law statistics observed in an Internet access dataset that covers more than 32 million requests. The non-Poissonian statistics of the requested data sizes m and the amount of time τ needed for complete processing are consistent with the Gutenberg–Richter–law. Inter-event times δt between subsequent requests are also shown to exhibit power-law distributions consistent with the generalized Omori law. Thus, the dataset is similar to the earthquake data except that two power-law regimes are observed. Using the proposed model, we are able to identify underlying dynamics responsible in generating the observed dual power-law distributions. The model is universal enough for its applicability to any physical and human dynamics that is limited by finite resources such as space, energy, time or opportunity.

Suggested Citation

  • Antonino A. Paguirigan & Marc Jordan G. Angco & Johnrob Y. Bantang, 2017. "A fragmentation model of earthquake-like behavior in internet access activity," International Journal of Modern Physics C (IJMPC), World Scientific Publishing Co. Pte. Ltd., vol. 28(07), pages 1-14, July.
  • Handle: RePEc:wsi:ijmpcx:v:28:y:2017:i:07:n:s0129183117500929
    DOI: 10.1142/S0129183117500929
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