• DocumentCode
    7143
  • Title

    Delay-Aware Energy-Efficient Communications Over Nakagami- m Fading Channel With MMPP Traffic

  • Author

    Kunlun Wang ; Meixia Tao ; Wen Chen ; Quansheng Guan

  • Author_Institution
    Dept. of Electron. Eng., Shanghai Jiao Tong Univ., Shanghai, China
  • Volume
    63
  • Issue
    8
  • fYear
    2015
  • fDate
    Aug. 2015
  • Firstpage
    3008
  • Lastpage
    3020
  • Abstract
    In this paper, we propose a cross-layer design framework for transmitting Markov modulated Poisson process (MMPP) traffic over Nakagami-m fading channel with delay demands. The adaptive modulation and coding (AMC) technique is used at the physical layer. The energy efficiency is described as the average throughput over the average transmission power, where both of throughput and transmit power have full consideration of the queuing system. We first derive the closed-form expressions of the delay and the energy efficiency with the stationary distribution of the system. We then derive the energy efficient thresholds to choose the AMC transmission modes. At last, we derive the transmission policy to maximize the energy efficiency with delay constraints. Numerical results are provided to support the theoretical development.
  • Keywords
    Markov processes; Nakagami channels; adaptive modulation; encoding; energy conservation; telecommunication power management; telecommunication traffic; AMC; MMPP traffic; Markov modulated Poisson process traffic; Nakagami-m fading channel; adaptive modulation and coding; cross-layer design framework; delay-aware energy-efficient communications; energy efficiency; physical layer; queuing system; stationary distribution; transmission policy; Closed-form solutions; Delays; Fading; Markov processes; Modulation; Physical layer; Throughput; Adaptive Modulation and Coding; Cross-layer Design; Cross-layer design; Delay; Energy efficiency; Finite State Markov Channel; Markov modulated Poisson process; Queuing Theory; adaptive modulation and coding; delay; energy efficiency; finite state Markov channel; queuing theory;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2015.2453268
  • Filename
    7152863