Browse > Article
http://dx.doi.org/10.5515/JKIEES.2007.7.4.183

New Evaluation on the Selective Diversity Systems for the Detection of M-ary PSK & DPSK Signals over Rayleigh Fading Channels  

Kim, Chang-Hwan (Design & Supervision for Communication, Suyang Engineering Co. Ltd.)
Kim, Hyeong-Kyo (Dept. of Information and Telecommunications Engineering, Hanshin University)
Publication Information
Abstract
When the M-ary signal experiences the Rayleigh fading, the diversity schemes can reduce the effect of fading since the probability that all the signals components will fade simultaneously is reduced considerably. The symbol error probabilities for various M-ary signals, such as MDPSK(M-ary DPSK) and MPSK(M-ary PSK), are mathematically derived for the Selection Combining 2(SC-2) and Selection Combining 3(SC-3) demodulation system which requires a less complex receiver than maximum ratio combining(MRC). The propagation model used in this paper is the frequency-nonselective slow Rayleigh fading channel corrupted by the additive white gaussian noise(AWGN). The numerical results presented in this paper are expected to provide information for the design of radio system using M-ary modulation method for above mentioned channel environment.
Keywords
SC-2; SC-3; Rayleigh Fading; MDPSK; MPSK;
Citations & Related Records
연도 인용수 순위
  • Reference
1 J.-C. Lin, W.-C. Kao, Y. T. Su, and T. H. Lee, 'Outage and coverage considerations for microcelluar mobile radio systemsin a shadowed-rician/shadowed-nakagami environments', IEEE Trans. Veh. Technol., vol. 48, no. 1, pp. 66-75, Jan. 1999   DOI   ScienceOn
2 C. S. Chang, P. J. McLane, 'Bit-error-probability for noncoherent orthogonal signals in fading with optimum combining for correlated branch diversity', IEEE Trans. Inform. Theory, vol. 43, no. 1, pp. 263- 274, Jan. 1997   DOI   ScienceOn
3 T. Eng, N. Kong, and L. B. Milstein, 'Comparison of diversity combining techniques for rayleigh-fading channels', IEEE Trans. Commun., vol. 44, no. 9, pp. 1117-1129, Sep. 1996   DOI   ScienceOn
4 A. M. Mood, F. A. Graybill, and D. C. Boes, Introduction to the Theory of Statistics, McGraw- Hill, 1982
5 Chang Hwan Kim, 'New evaluation on maximum ratio diversity for the reception of M-ary PSK and DPSK signals on rician fading channels, Telecommunications Review, vol. 12, no. 2, pp. 261-268, Mar.-Apr. 2002
6 I. S. Gradshteyn, I. M. Ryzhik, Table of Integral, Series and Products, New York: Academic Press, Inc., 1980
7 K. K. Cho, 'Analysis of MRC diversity for M-ary QAM signals in nakagami fading channels', M. Sc. thesis, Dep. Elec. Com. Eng., Hanyang Univ., Dec. 1996
8 Chang Hwan Kim, 'New evaluation on maximum ratio diversity for the reception of M-ary PSK and DPSK signals on rician fading channels', Telecommunications Review, vol. 12, no. 2, pp. 261- 268, Mar.-Apr. 2002
9 S. Y. Choi, Comparison of diversity combining techniques for MPSK signals in Nakagami fading channels, M. Sc. thesis, Dep. Elec. Com. Eng., Hanyang Univ., Korea, Dec. 1998
10 A. Papoulis, Probability, Random Variables, and Stochastic Processes, New York: Graw-Hill Inc., 1981
11 C. H. Kim, 'Performance analysis on reception of M-ary FSK and diversity M-ary DPSK signals in wireless fading channels', Doc. Sc. thesis, Dep. Elec. Com. Eng., Hanyang Univ., Jun. 2001
12 L. M. Song, P. Y. Kam, 'Performance of adaptive reception of MPSK on the nonselective rayleigh fading channel', in Proc. ICC 98, pp. 176-180, Nov. 1998
13 J. G. Proakis, Digital Communications, New York: McGraw-Hill Inc., 1995
14 S. Stein, J. J. Jones, Modern Communication Principles, New York: McGraw-Hill Inc., 1995
15 J. Sun, I. S. Reed, 'Performance of MDPSK, MPSK, and noncoherent MFSK in wireless Rician fading channels', IEEE Trans. Commun., vol. 47, no. 6, pp. 813-816, Jun. 1999   DOI   ScienceOn