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Reseach Article

The Performance of Fast Frequency Hopping System in Additive White Gaussian Noise (AWGN)

by Abbas Ahmed, Qasim Zeeshan Ahmed, Abdur Rehman, Sajjad Karim
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 46 - Number 20
Year of Publication: 2012
Authors: Abbas Ahmed, Qasim Zeeshan Ahmed, Abdur Rehman, Sajjad Karim
10.5120/7056-9487

Abbas Ahmed, Qasim Zeeshan Ahmed, Abdur Rehman, Sajjad Karim . The Performance of Fast Frequency Hopping System in Additive White Gaussian Noise (AWGN). International Journal of Computer Applications. 46, 20 ( May 2012), 14-22. DOI=10.5120/7056-9487

@article{ 10.5120/7056-9487,
author = { Abbas Ahmed, Qasim Zeeshan Ahmed, Abdur Rehman, Sajjad Karim },
title = { The Performance of Fast Frequency Hopping System in Additive White Gaussian Noise (AWGN) },
journal = { International Journal of Computer Applications },
issue_date = { May 2012 },
volume = { 46 },
number = { 20 },
month = { May },
year = { 2012 },
issn = { 0975-8887 },
pages = { 14-22 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume46/number20/7056-9487/ },
doi = { 10.5120/7056-9487 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T20:40:14.698349+05:30
%A Abbas Ahmed
%A Qasim Zeeshan Ahmed
%A Abdur Rehman
%A Sajjad Karim
%T The Performance of Fast Frequency Hopping System in Additive White Gaussian Noise (AWGN)
%J International Journal of Computer Applications
%@ 0975-8887
%V 46
%N 20
%P 14-22
%D 2012
%I Foundation of Computer Science (FCS), NY, USA
Abstract

As in the present scenario, the progression technology is looming towards the challenges of the present and revolutionary requirements; the interest in faster frequency hopping rates to scrutinize the performance of channel in the presence of AWGN has been heightened. The focus of formulation of this manuscript is the analytical behavior of fast frequency hopping style in the occurrence of AWGN using two linear combination schemes, currently in practice in communication world. The frequency hopping (FH) constitutes a powerful spread spectrum technique, historically used for combating intention of jamming or interference. These linear combination schemes are equal gain combiner (ECG) and selective gain combiner (SC). The performance regarding to Bit Error Rate (BER) will be investigated in order to choose the best possible scheme from available ones.

References
  1. John. G. Proakis and Salehi, "An Introduction to Digital Communication Systems", Prentice Hall, 2002.
  2. Lie Liang Yang, "Multicarrier Communication", John Wiley & sons, 2009.
  3. B. P. Lathi, "An Introduction to Digital Communication Systems", Oxford University Press, 1998.
  4. Andreas F. Molisch, "Wireless Communications", Wiley and Sons, 1 ed. , 2005.
  5. Andrea Goldsmith, "Wireless Communications", Cambridge University Press, 1 ed. , 2005.
  6. J. G. Proakis, "Digital Communications", Mcgraw Hill, 4 ed. , 2002.
  7. Raymond Steele, "Mobile Radio Communication", Pentech Press Ltd, 1 ed. , 1992.
  8. T. S. Rappaport, "Wireless Communications Principles and Practice", Prentice Hall, 1999.
  9. Bernard Sklar, "Digital Communiactions Fundamentals and Applications", Prentice Hall,2 ed. , 2001.
  10. David Tse and Pramod Viswanath, "Fundamentals of Wireless Communications", Cambridge University Press, 1 ed. , 2005.
  11. G. L. Turin, "Introduction to spread spectrum antimultipath techniques and their applications to urban digital radio", in Proc. IEEE, vol. 68, pp. 328–353, 1980.
  12. G. L. Stuber,"Principles of Mobile Communication", Kluwer, Boston,MA, 2 ed. , 2001.
  13. M. K. Simon, J. M. Omura, R. A. Scholtz and B. K. Levitt, "Spread spectrum Communications Handbook"Mcgraw-Hill, Ltd. Revised ed. , 1994
  14. A. B. Carlson, P. B. Crilly and J. C. Rutledge,"Communication systems An Introduction to signals and Noise in Electrical Communication", Mcgraw Hills, 4 ed. , 2002.
  15. J. S. Blogh, and L. Hanzo,"Third Generation Systems and Intelligent Wireless Networking", John Wiley & Sons,Ltd, 1 ed. , 2000.
  16. T. ChengWu,Chi-Chao Chao and Kwang Cheng Chen "Multiuser Detection for Frequency Hopped Spread Spectrum Systems with BFSKModulation part 1: Characterization", IEEE Communications Magazine, vol. 35, pp. 102–109, July 2001.
  17. U. C. G. Fiebig,"Iterative interference cancellation for FFH/MFSK MA systems", IEE Proc. Communication, vol. 143, pp. 380–388, December 1996.
  18. F. D. Garber and M. B. Pursley, "Performance of Binary Fsk Communication over Frequency selective Rayleigh Fading Channel", IEEE Conference on Communication, vol. 37, January 1989.
  19. A. Viterbi,"A processing satellite transponder for multiple access by low-rate mobile users", in Proc. of Digital Satellite CommunicationsMontreal, Canada, pp. 166–173, 1978.
  20. B. Sklar, "Rayleigh fading channels in mobile digital communications systems part1 Characterization", IEEE Communications Magazine, vol. 35, pp. 102–109, July 1994.
  21. Tetsuo mabuchi,Ryuji Kohno, and hideki Imai, "Multiuser detection Scheme based on canceling Cochannel Interference for MFSK/FH-SSMA System", IEEE Journal on selected areas in communication, vol. 12, May 1994.
  22. Ching Yue, "Maximum Liklihood Combining for Noncoherent and Differentially Coherent Frequency HoppingMultiple Access Systems", IEEE Global Telecommunications Conference, vol. 28, pp. 14–21, July 1982.
  23. Kah C. Teh, Alex C. Kot and Kwok H. Li, "Performance study of Maximum LikeLihood Receiver for FFH/BFSK systems with multitone Jamming", IEEE transaction conference, vol. 47, May 1999.
  24. C. J. Hegarty and B. R. Vojcic, "Noncoherent Multiuser Detection of M-ary Orthogonal signals",Wireless Networks, pp. 319–324, April 1998.
  25. K. W. Halford and M. Brandt-Pearce, "Multistage Multiuser Detection for FHMA", IEEE Transactions on communication, vol. 48, pp. 1550–1562, 9, September 2000.
  26. D. J. Goodman, P. S. Henry and V. K. Prabhu,"Frequency Hopped multilevel FSK for mobile radio", Bell System Technology, vol. 59, pp. 1257–1275, September 1980.
  27. T. Mabuchi, R. Kohno, and H. Imai,"Multihopping and decoding of error correcting code for MFSK/FH-SSMA systems", in Proc. IEEE International Symp. Spread Spectrum Technology and Application, Yokohama, Japan, November 1992.
  28. C. P. Hung, and Yu T. Su, " Diversity Combining Considerations for Incoherent Frequency Hopping Multiple Access Systems", IEEE Journal on selected areas in Communications,vol. 13, pp. 333–344, February 1995.
  29. R. J. Kozick and B. M. Sadler, "Maximum Likelihood Multiuser Detection for Fast Frequency Hopping/Multiple Frequency Shift Keying Systems",IEEE international conference on Wireless Communication and Networking Conference, vol. 1 pp. 67–72,23–28, September 2000.
  30. Xia Wang, Shihua Zhu and Penghui Zhang, "Performance of fast frequency hopped multiple access system with M-FSK modulation",IEEE Proceeding conference on Telecommunication, vol. 2 pp. 657–660,11–13, June 2003.
  31. H. Tayong, A. Cole-Rhodes, A. B. Cooper, A. Flaig, G. Arce,"A reduced complexity detector for fast frequency hopping," Proc. 2000 ARL Telecomm. Fed. Lab. Symp. College Park, March 2000.
  32. Yu. T. Su, Ye-Shun Shen, and Chu-Ya Hsiao,"On the Detection of a Class of Fast Frequency Hopped Multiple Access Signals", IEEE Journal on selected Areas in Communications, vol. 19, pp. 2151–2164, 11 November 2001.
  33. Ronald A. Iltis,James A. Ritcey, and Laurence B. Milstein,"Interference Rejection in FFH Systems Using Least Squares Estimation Techinques", IEEE Transactions Communications, vol. 38, pp. 2174–2183, 12 December 1990.
Index Terms

Computer Science
Information Sciences

Keywords

Performance Fast