• DocumentCode
    70969
  • Title

    Energy Efficiency of Power-Adaptive Spatial Diversity Methods

  • Author

    Apilo, Olli ; Lasanen, Mika ; Boumard, Sandrine ; Mammela, Aarne

  • Author_Institution
    VTT Tech. Res. Centre of Finland, Oulu, Finland
  • Volume
    12
  • Issue
    9
  • fYear
    2013
  • fDate
    Sep-13
  • Firstpage
    4246
  • Lastpage
    4257
  • Abstract
    The energy efficiency of power-adaptive multipleinput multiple-output (MIMO) diversity methods is studied in this paper. The considered diversity methods are antenna selection (AS), maximum ratio transmission (MRT), and equal gain transmission (EGT) at the transmitter and maximum ratio combining (MRC) at the receiver. The transmitter energy efficiency is evaluated using the average power amplifier (PA) efficiency and the transceiver energy efficiency is evaluated using the bit error rate (BER) as a function of average PA input signal-to-noise ratio (SNR), which is a new metric. With the new metric, the effect of the PA efficiency is taken into account in the performance evaluation. The analytical results are verified by Monte Carlo simulations. It is shown that larger diversity in the spatial or frequency domain improves the average PA efficiency in a system with channel inversion. The BER results show that the performance improvement from channel inversion diminishes due to the nonideal PA efficiency. Even though MRT is the received SNR maximizing transmitter diversity method, EGT requires less PA input energy per bit when a PA with nonideal efficiency is used. These conclusions could not have been reached using the traditional SNR metrics that do not measure the PA input energy.
  • Keywords
    MIMO communication; Monte Carlo methods; diversity reception; energy conservation; error statistics; power amplifiers; radio transceivers; AS; BER; EGT; MIMO diversity methods; MRC; MRT; Monte Carlo simulations; SNR; antenna selection; average PA input signal-to-noise ratio; bit error rate; channel inversion; equal gain transmission; frequency domain analysis; maximum ratio combining; maximum ratio transmission; power amplifier; power-adaptive multiple input multiple-output diversity methods; spatial domain analysis; transceiver energy efficiency; transmitter diversity method; transmitter energy efficiency; Bit error rate; Diversity methods; OFDM; Power control; Power generation; Signal to noise ratio; Energy efficiency; MIMO diversity; power amplifier; power control;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2013.072313.120263
  • Filename
    6574873