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 December 2024
Reseach Article

Performance Evaluation of Gigabit Ethernet Passive Optical Network in the Presence of Forward Error Correction Techniques

Published on December 2011 by Naresh Kumar, Ajay Kumar Sharma, Vinod Kapoor
Communication and Networks
Foundation of Computer Science USA
COMNETCN - Number 1
December 2011
Authors: Naresh Kumar, Ajay Kumar Sharma, Vinod Kapoor
e09cd8d5-f6f7-4e44-bb9c-029deb7cb2f2

Naresh Kumar, Ajay Kumar Sharma, Vinod Kapoor . Performance Evaluation of Gigabit Ethernet Passive Optical Network in the Presence of Forward Error Correction Techniques. Communication and Networks. COMNETCN, 1 (December 2011), 28-30.

@article{
author = { Naresh Kumar, Ajay Kumar Sharma, Vinod Kapoor },
title = { Performance Evaluation of Gigabit Ethernet Passive Optical Network in the Presence of Forward Error Correction Techniques },
journal = { Communication and Networks },
issue_date = { December 2011 },
volume = { COMNETCN },
number = { 1 },
month = { December },
year = { 2011 },
issn = 0975-8887,
pages = { 28-30 },
numpages = 3,
url = { /specialissues/comnetcn/number1/5444-1007/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Special Issue Article
%1 Communication and Networks
%A Naresh Kumar
%A Ajay Kumar Sharma
%A Vinod Kapoor
%T Performance Evaluation of Gigabit Ethernet Passive Optical Network in the Presence of Forward Error Correction Techniques
%J Communication and Networks
%@ 0975-8887
%V COMNETCN
%N 1
%P 28-30
%D 2011
%I International Journal of Computer Applications
Abstract

In this paper, Performance evaluation of Gigabit Ethernet Passive Optical Network in the presence of Forward Error Correction techniques has been observed. It has been observed that Q2 value lies in the range of 13 to 7dB and 20 to 7dB at 2.50 Gbps in the absence and presence of FEC at transmission distance of 10 to 40 km in GEPON. Similarly the BER lies in the range of 10-5 to 10-2 and 10-23 to 10-2 without and with FEC at transmission distance of 10 to 40 km. Hence with FEC technique, we have achieved BER of 10-13 at 30 km with bit rate of 2.50 Gbps in GEPON.

References
  1. Lung, B. 1999 PON Architecture future proofs FTTH. J. Light wave Technology. vol. 16 , 10 (1999) 104-107
  2. Ransom, M.N. 1997 Fiber-to-the-home in a competitive era. Optical fiber communication OFC97, Conference on 16-21 feb.(1997) 26-27.
  3. Zheng, J., and Mouftan, H. T.2005 Media access control for Ethernet passive optical network. IEEE communication Mag, vol.43, 2 (2005)145-150.
  4. Kramer and Pesavento 2002 Ethernet passive optical network (EPON): building a next-generation optical access network. IEEE communication Mag., vol.40, 2(2002) 66-73.
  5. Kramer, G., Mukherjee, B. and Pesavento, G. 2001 Ethernet PON (ePON): Design and Analysis of an Optical Access Network. Photonic Network Communications vol. 3 (2001) 307-319.
  6. Mukherjee, B.1997 Optical Communication Networks. McGraw-Hill, New York.
  7. Ramaswami, R. and Sivarajan, K. N. 1998 Optical Networks, a Practical Perspective. Morgan Kaufmann, San Francisco.
  8. Holzlöhner, R., Mahadevan, A., Menyuk, C. R., Morris, J. M. and Zweck, J. 2004 Evaluation of the Very Low BER of FEC Codes Using Dual Adaptive Importance Sampling. IEEE Communication Letters.
  9. Mizuochi T. 2006 Recent Progress in Forward Error Correction and Its Interplay with Transmission Impairments”, IEEE J. of Sel. Topics in Quantum Electronics, vol. 12 (2006) 544-554.
Index Terms

Computer Science
Information Sciences

Keywords

Forward Error Correction Passive Optical Networks Optical Distribution Networks Optical Network Termination Optical Line Terminal