• DocumentCode
    1105993
  • Title

    Error rate analysis of MDPSK/CPSK with diversity reception under very slow Rayleigh fading and cochannel interference

  • Author

    Adachi, Fumiyuki ; Sawahashi, Mamoru

  • Author_Institution
    R&D Dept., NTT Mobile Commun. Div., Kanagawa, Japan
  • Volume
    43
  • Issue
    2
  • fYear
    1994
  • fDate
    5/1/1994 12:00:00 AM
  • Firstpage
    252
  • Lastpage
    263
  • Abstract
    The distribution of the phase noise due to additive white Gaussian noise (AWGN) and cochannel interference (CCI) is analyzed for differential phase detection (DPD) and coherent phase detection (CPD) in a very slow nonfrequency selective Rayleigh fading environment. The effects of modulation timing offset between the desired signal and the CCI and of the overall channel filter response are considered. Simple closed-form expressions are derived for ideal selection diversity reception. The derived phase noise distributions are used for evaluating the bit error rate (BER) performance of 2-16DPSK/CPSK assuming square-root raised cosine Nyquist transmit/receive filters. It is found that the BER performance of CPSK is less sensitive to CCI modulation timing offset than DPSK, and that increasing the filter rolloff factor can improve the BER performance due to CCI. Finally, the accuracy of the BER approximation that uses the symbol error rate is discussed
  • Keywords
    coding errors; demodulation; diversity reception; error analysis; fading; mobile radio systems; phase shift keying; radiofrequency interference; random noise; white noise; AWGN; BER performance; CPSK; DPSK; MDPSK/CPSK; additive white Gaussian noise; bit error rate; channel filter response; closed-form expressions; cochannel interference; coherent phase detection; differential phase detection; diversity reception; error rate analysis; mobile radio; modulation timing offset; nonfrequency selective fading; phase noise distribution; selection diversity reception; slow Rayleigh fading; square-root raised cosine Nyquist filters; transmit/receive filters; AWGN; Additive white noise; Bit error rate; Diversity reception; Error analysis; Filters; Phase detection; Phase noise; Radiofrequency interference; Timing;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/25.293643
  • Filename
    293643