• DocumentCode
    52694
  • Title

    Performance Evaluation of PLC Under the Combined Effect of Background and Impulsive Noises

  • Author

    Mathur, Aashish ; Bhatnagar, Manav R. ; Panigrahi, Bijaya K.

  • Author_Institution
    Dept. of Electr. Eng., Indian Inst. of Technol.-Delhi, New Delhi, India
  • Volume
    19
  • Issue
    7
  • fYear
    2015
  • fDate
    Jul-15
  • Firstpage
    1117
  • Lastpage
    1120
  • Abstract
    Power line communication (PLC) is the use of power lines for the purpose of electronic data transmission. The presence of additive noise, namely, background noise and impulsive noise, significantly affects the performance of a PLC system. While the background noise is modeled by Nakagami-m distribution, the impulsive noise is modeled using Middleton class A distribution. In this letter, we study the performance of a PLC system under the combined effect of Nakagami-m background noise and Middleton class A impulsive noise assuming binary phase shift keying signaling. The probability density function of decision variable under the influence of additive noise (sum of background noise and impulsive noise) is derived. We also derive an analytical expression for the average bit error rate of the considered PLC system. The analytical expressions are validated by close matching to the simulation results. The analysis presented in this letter closely predicts the behavior of the PLC system under the combined effect of background and impulsive noises.
  • Keywords
    Nakagami channels; carrier transmission on power lines; error statistics; impulse noise; phase shift keying; probability; Middleton class A distribution; Middleton class A impulsive noise; Nakagami-m background noise; PLC system; additive noise; background noise; binary phase shift keying signaling; bit error rate; electronic data transmission; power line communication; probability density function; Additive noise; Binary phase shift keying; Bit error rate; Noise measurement; Power line communications; Signal to noise ratio; Background noise; Middleton class A distribution; Nakagami- $m$ distribution; Nakagami-m distribution; binary phase shift keying; bit error rate; impulsive noise; power line communications; power line communications (PLC);
  • fLanguage
    English
  • Journal_Title
    Communications Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1089-7798
  • Type

    jour

  • DOI
    10.1109/LCOMM.2015.2429129
  • Filename
    7101244