New Analysis on Reception of M-ary FSK Signals over Rician Fading Channels

  • 발행 : 2000.10.01

초록

In this paper, we analyze the distribution of the envelope of the received signal over frequency-nonselective slow Rician fading channels with aadditive white Gaussian noise(AWGN). Especially, we can obtain the error rate performance of noncoherent M-ary FSK(MFSK) over slow and flat Rician fading channels and AWGN from the new probability density function(PDF) of the envelope, not PDF of the instantaneous signal-to-noise ratio(SNR) published before, of the received signal. When coherent MFSK signals experience the Rician fading channel, the performances are derived, using the union bound.

키워드

참고문헌

  1. IEEE Trans. Veh. Technol. v.48 no.1 Outage and Coverage Considerations for Microcellular Mobile Radio Systems in a Shadowed-Rician/Shadowed-Nakagami Environments J.-C. Lin;W.-C. Kao;Y. T. Su;T. H. Lee
  2. IEEE Trans. Inform. Theory v.43 no.1 Bit-Error-Probability for Noncoherent Orthogonal Signals in Fading with Optimum Combining for Correlated Branch Diversity C. S. Chang;P. J. McLane
  3. Proc. ICC '98 Performance of Adaptive Reception of MPSK on the Nonselective Rayleigh Fading Channel L. M. Song;P. Y. Kam
  4. Digital Communications J. G. Proakis
  5. Proc. ICICS '97 Performance Analysis of Wide-Band DS-CDMA with DPSK in Nakagami Fading Channels H. Fu;S. Zhu;G. Bi
  6. Statistical methods in radio wave propagation The m-distribution-A general formula of intensity distribution of rapid fading M. Nakagami;W. G. Hoffman(ed.)
  7. Principles of Communications, Systems, Modulations, and Noise R. E. Ziemer;W. H. Tranter
  8. Communications Systems and Techniques M. Schwartz;W. R. Bennett;S. Stein
  9. IEEE Trans. Commun. v.42 no.Feb./Mar./Apr. DPSK Performance for Indoor Wireless Rician Fading Channels J. A. Roberts;J. M. Bargallo
  10. IEEE Trans. Commun. v.COM-40 no.3 Uncoded and Coded Performance of MFSK and DPSK in Nakagami Fading Channels P. J. Crepeau
  11. IEEE Trans. Commun. v.47 no.6 Performance of MDPSK, MPSK, and Noncoherent MFSK in Wireless Rician Fading Channels J. Sun;I. S. Reed
  12. Probability, Random Variables, and Stochastic Processes A. Papoulis
  13. Introduction to the Theory of Statistics A. M. Mood;F. A. Graybill;D. C. Boes
  14. Probability and Random Process W. B. Davenport, Jr.
  15. Analysis of System Using Distribution of the Envelope of the Received Signal over Rician Fading Channel D. G. Seo
  16. Table of Integral, Series and Products I. S. Gradshteyn;I. M. Ryzhik
  17. KEES v.10 no.7 Performance Analysis of Mary FSK System in Nakagami Fading Channel C. H. Kim;Y. Y. Han
  18. Modern Communication Principles S. Stein;J. J. Jones
  19. Electron Lett. v.32 no.17 Average Error Rate for Coherent MPSK Signals in Nakagami Fading Channels V. Aalo;S. Pattaramalai
  20. IEEE Trans... v.44 no.7 Multiple Tone Interference of Frequency-Hopped Noncoherent MFSK Signals Transmitted over Rician fading channels R. C. Robertson;J. F. Sheltry