Block Error Performance improvement of the DS/CDMA BPSK system with MRC Diversity and Channel coding Techniques in Nakagami Fading Channel.

Nakagami 페이딩 채널에서 MRC 다이버시티와 채널 부호화 기법을 사용한 DS/CDMA BPSK 시스템의 블록 오율 성능 개선

  • 강희조 (동신대학교 전기전자공학부) ;
  • 노재성 (강원도립대학 정보통신과) ;
  • 조성준 (한국항공대학교 전자 ·정보통 신·컴퓨터공학과)
  • Published : 2000.03.01

Abstract

In this paper, MRC(Maximum Ratio Combine) diversity, (23, 12) Golay code, (7, 5) Reed-Solomon code, and (3, 1) majority selection code are employed to improve the performance of DS/CDMA BRSK in Nakagami fading channel. and MRC diversity combined with other coding techniques is suggested, with which, the performance of DS/CDMA BRSK is compared and analyzed. Also, system required Eb/N0 to meet BER=10-5 for multi user data communication is obtained according to each techniques. From the results, when each techniques is employed to DS/CDMA BRSK system. coding employed system shows better performance than diversity employed system. Especially, Golay code shows better performance than oter codes. also MRC diversity is employed, the number of multiple access user to meet data communication requirement of BER=10-5 can accomodate up to 8 users. and when each code is employed, Golay code, majority selection code, and Reed-Solomon code shows the capacity of 14, 12, and 10 user respectively. But MRC diversity combined with coding techniques can reduce restriction of multiple access user. However, it is desirable these combined technique are employed according to service types and requirements provided.

Keywords

References

  1. IEEE ISSSTA '96 DS/SS/GMSK with differential detection over multipath Rayleigh fading channels A. Ogawa(et al.)
  2. IEEE Trans. on Commun. v.COM-25 Probability of block error for very slow Rayleigh fading in Gaussian noise R. E. Eaves;A. H. Levesque
  3. IEEE Trans. on Commun. v.COM-29 Block error probability for noncoherent FSK with diversity for very slow Rayleigh fading in Gaussian noise C. E. Sundberg
  4. IEEE Trans. on Commun. v.COM-32 Block error performance of noncoherent FSK modulation Rayleigh fading channels B. Maranda;C. Leung
  5. Electron. Letter. v.24 Block error probability for noncoherent FSK with diversity reception in mobile radio F. Adachi;K. Ohno
  6. IEEE Trans. on Commun. v.COM-29 Block error probabilities in a Nakagami fading channel Y. D. Yao;T. Le-Ngoc;U. H. Sheik
  7. IEEE Trans Commun. v.COM-25 A statistical model for urban radio propagation H. Suzuki
  8. IEEE Trans. Commun. v.COM-27 Reception through Nakagami fading multipath channel with random delays U. Charash
  9. IEEE GLOBECOM '95 Efficient simulation of CDMA systems in wireless mobile communications K. B. Letaief;M. Hamdi
  10. Digital Communications J. G. Proakis