We apologize for a recent technical issue with our email system, which temporarily affected account activations. Accounts have now been activated. Authors may proceed with paper submissions. PhDFocusTM
CFP last date
20 November 2024
Call for Paper
December Edition
IJCA solicits high quality original research papers for the upcoming December edition of the journal. The last date of research paper submission is 20 November 2024

Submit your paper
Know more
Reseach Article

Analytical Error Rate Performance Evaluation of OFDM-QPSK System over Nakagami Distribution

by Mukesh Kumar Mishra
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 35 - Number 5
Year of Publication: 2011
Authors: Mukesh Kumar Mishra
10.5120/4396-6104

Mukesh Kumar Mishra . Analytical Error Rate Performance Evaluation of OFDM-QPSK System over Nakagami Distribution. International Journal of Computer Applications. 35, 5 ( December 2011), 14-19. DOI=10.5120/4396-6104

@article{ 10.5120/4396-6104,
author = { Mukesh Kumar Mishra },
title = { Analytical Error Rate Performance Evaluation of OFDM-QPSK System over Nakagami Distribution },
journal = { International Journal of Computer Applications },
issue_date = { December 2011 },
volume = { 35 },
number = { 5 },
month = { December },
year = { 2011 },
issn = { 0975-8887 },
pages = { 14-19 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume35/number5/4396-6104/ },
doi = { 10.5120/4396-6104 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T20:21:12.001855+05:30
%A Mukesh Kumar Mishra
%T Analytical Error Rate Performance Evaluation of OFDM-QPSK System over Nakagami Distribution
%J International Journal of Computer Applications
%@ 0975-8887
%V 35
%N 5
%P 14-19
%D 2011
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Modern wireless communication system demands high data rate with acceptable error rate transmission and reception. OFDM a multi-carrier modulation technique will provide the solution for next generation wireless communication, so that it has been employed in numerous wireless standards. This paper presents new technique for the error rate of OFDM-QPSK system over Nakagami-m and Nakagami-n (Rice) fading channels, using characteristics function (CHF) based approach. To derive the SER expression for OFDM-QPSK system, exact PDF in integral form is utilized. Further the average SER have expressed in terms of the exponential and confluent hyper geometric functions.

References
  1. Neetu Sood, Ajay K Sharma, Moin Uddin, “BER Performance of OFDM-BPSK and -QPSK over Generalized Gamma Fading Channel”, International Journal of Computer Applications (IJCA), vol. 3, no.6, pp.13-16, June 2010.
  2. Ramjee Prasad, “OFDM for Wireless Communications Systems”, Artech House, 2004.
  3. Zhengjiu Kang, Kung Yao, and Flavio Lorenzelli, “Nakagami-m fading modeling in the frequency domain for OFDM system analysis”, IEEE Commun. Lett. vol. 7, no. 10, pp. 484–486, Oct. 2003.
  4. A. Annamalai, C. Tellambura, And Vijay K. Bhargava, “A General Method For Calculating Error Probabilities Over Fading Channels”, IEEE Trans. on Commun., vol. 53, no. 5, pp.841-852 ,May 2005.
  5. J. G. Proakis, “Digital Communications”, McGraw-Hill, l995.
  6. Marvin K. Simon, and Mohamed-Slim Alouini, “Digital Communication over Fading Channels: A Unified Approach to Performance Analysis”, John Willy & Sons, 2000.
  7. M. Nakagami, “The m-distribution, a general formula of intensity distribution of rapid fading in Statistical Methods in Radio Wave Propagation”, W. G. Hoffman, Oxford, England , Pergamum, 1960.
  8. Dimitris A. Zogas, George K. Karagiannidis, and Stavros A. Kotsopoulos, “Equal Gain Combining over Nakagami-n (Rice) and Nakagami-q (Hoyt) Generalized Fading Channels”, IEEE Trans. on Wireless Comm., vol. 4, no. 2,pp.374-379 Mar. 2005.
  9. A. A. Abu-Dayya, N. C. Beaulieu, “Micro diversity on Rician Fading Channels”, IEEE Trans. Commun, vol. 42, no. 6, June 1994.
  10. Richard V. Nee, Ramjee Prasad, “OFDM for Wireless Multimedia. Communications”, Artech House, 2000.
  11. Z. Du, J. Cheng, N. C. Beaulieu, “Accurate error rate performance analysis of OFDM in frequency-selective Nakagami-m fading channels”, IEEE Trans. Commun. vol. 54, no. 2, pp. 319-328 Feb 2006.
  12. Marvin K. Simon, and Mohamed-Slim Alouini “A Unified Approach to the Performance Analysis of Digital Communication over Generalized Fading Channels”, Proceedings of IEEE ,vol.86, no.9, pp. 1860-1877, Sep. 1998.
  13. Zheng du, Julian Cheng and Norman C. Beaulieu, “Error Rate of OFDM Signals on Frequency Selective Nakagami-m Fading Channels”, Globecom, vol.06, pp. 3994-3998, Dec. 2004.
  14. A. Papoulis, Probability, “Random Variables, and Stochastic Processes”, 3rd Ed. New York: McGraw-Hill, 1991.
  15. Norman C. Beaulieu and Julian Cheng, “Precise error rate analysis of bandwidth efficient BPSK in Nakagami fading and co channel interference”, IEEE Trans. Commun. vol.52, pp. 149-158, Jan. 2004.
  16. M. Abramowitz and I. A. Stegun, “Handbook of Mathematical Functions with Formulas, Graphs, and Mathematical Tables”, New York: Dover, 1972.
  17. I. S. Gradshteyn and I. M. Ryzhik, “Table of Integrals, Series, and Products”, 6th ed. San Diego, CA: Academic, 2000.
  18. Mukesh Kumar Mishra, Neetu Sood, Ajay K Sharma, “New BER Analysis of OFDM System over Nakagami-n (Rice) Fading Channel”, International Journal of Computer Science, Engineering and Information Technology (IJCSEIT),vol.1, no.3,pp.12-20, Aug 2011.
  19. Theodore S. Rappaport, “Wireless Communications: Principles and Practice”, Prentice-Hall, 2008.
  20. Neetu Sood, Ajay K Sharma, Moin Uddin, “BER Performance of OFDM-BPSK and QPSK over Nakagami-m Fading Channels”, Proc. of 2nd IEEE International Advance computing Conference, pp. 88-90, Feb. 2010.
Index Terms

Computer Science
Information Sciences

Keywords

OFDM Nakagami-m Distribution Nakagami-n (Rice) Distribution SER Multipath Channel