• DocumentCode
    1760362
  • Title

    Quality of Real-Time Streaming in Wireless Cellular Networks — Stochastic Modeling and Analysis

  • Author

    Blaszczyszyn, Bartlomiej ; Jovanovic, Milos ; Karray, Mohamed Kadhem

  • Author_Institution
    Inria-ENS, Paris, France
  • Volume
    13
  • Issue
    6
  • fYear
    2014
  • fDate
    41791
  • Firstpage
    3124
  • Lastpage
    3136
  • Abstract
    We present a new stochastic service model with capacity sharing and interruptions, appropriate for the evaluation of the quality of real-time streaming (e.g. mobile TV) in wireless cellular networks. It takes into account multi-class Markovian process of call arrivals (to capture different radio channel conditions, requested streaming bit-rates and call-durations) and allows for a general resource allocation policy saying which users are temporarily denied the requested fixed streaming bit-rates (put in outage) due to resource constraints. We develop general expressions for the performance characteristics of this model, including the mean outage duration and the mean number of outage incidents for a typical user of a given class, involving only the steady-state of the traffic demand. We propose also a natural class of least-effort-served-first resource allocation policies, which cope with optimality and fairness issues known in wireless networks, and whose performance metrics can be easily calculated using Fourier analysis of Poisson variables. We specify and use our model to analyze the quality of real time streaming in 3GPP Long Term Evolution (LTE) cellular networks. Our results can be used for the dimensioning of these networks.
  • Keywords
    3G mobile communication; Fourier analysis; Long Term Evolution; Markov processes; Poisson distribution; cellular radio; real-time systems; wireless channels; 3GPP Long Term Evolution; Fourier analysis; LTE; Poisson variables; call arrivals; call durations; capacity interruptions; capacity sharing; fairness issue; mean outage duration; mobile TV; multiclass Markovian process; optimality issue; radio channel conditions; real-time streaming; resource allocation policy; resource constraints; stochastic analysis; stochastic service model; streaming bit rates; traffic demand; wireless cellular networks; wireless networks; Analytical models; Base stations; Interference; Real-time systems; Stochastic processes; Throughput; Wireless communication; LTE; Poisson process; Real-time streaming; capacity-sharing; deep outage; interruptions; mobile TV; outage; quality of service; stochastic model;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2014.042414.131371
  • Filename
    6807570