Open Access Open Access  Restricted Access Subscription or Fee Access

Design and Performance Analysis of 32x60Gbps Capacity WDM PON Architectures using Different Receiver Filters

Khushboo Arora

Abstract


Day by day telecommunication technology is increasing with a need for high speed as well as reliable data transmission .Wavelength Division Multiplexing Passive Optical Network plays a vital role in meeting these demands. By using optical networks, network needs to be improved for high data rates. This paper analysis and estimates the performance of 32 X 60Gbps WDM PON. A 101Km distance reach at the both directions i.e upstream and downstream directions in receiver side. This project is based on various parameters that are minimum BER and Quality factor. The Performance is evaluated by using different filters .Bessel filter shows best performance .The entire performance   are widely investigated in this project.

Keywords


Passive Optical Networks (PON), Wavelength Division Multiplexing (WDM), Bessel Filter, NRZ Format, Optical Network Unit (ONU)

Full Text:

PDF

References


S. Rajalakshmi, A. Srivastava, A. Pandey, “Performance Analysis of Receivers in WDM for Extended Reach Passive Optical Networks,” IJCSI Issues, Vol. 9, Issue 2, No 3, March 2012.

N. Shahidah Afifi bt. Md. Taujuddin, M. Othman and Z. Tukiran, “Optimization for the Best Performance for Wavelength Division Multiplexed Passive Optical Network,” SEIDM December 18 -19, 2008.

Y. Zhang, N. Deng, C. Chan, “A Multicast WDM-PON Architecture Using DPSK/NRZ Orthogonal Modulation, ”IEEE Photonics Technology Letters, Vol.20 No.17, September 1, 2008.

S. Rajalakshmi#1, A. Srivastava*2, A. Pandey*3, “Analysis of TDM and WDM PON using Different Coding Schemes for Extended Reach,” IJCSNS, VOL.11 No.7, July 2011.

A. Hussain*, Y. Chong-xiu, X. Xiang-jun, Y. in, L. Bo , “ A novel duplex WDM-PON with DPSK modulated downstream and re-modulation of the downlink signal for OOK upstream,” OECC, 24August 2011.

Y. Khan1, M. Idress1, N. Ahmad Khan2, J. Khan2, S. Latif2, “ Cost Effective Architecture for Symmetric Full-duplex Colorless WDM-PONs Using DPSK Downstream and OOK Re-modulated Upstream Data Signals,” IJES March 2013.

Ll. Gutierrez1, P. Garfias1, M. De Andrade1, C. Cervelló-Pastor and S. Sallent, “Next Generation Optical Access Networks: from TDM to WDM,” Trends in Telecommunications Technologies, March, 2010.

N. Ansari and J. Zhang, “PON Architectures,” springer 2013.

Y. Tian, Q. Chang, and Y. Su*, “A WDM passive optical network enabling multicasting with color-free ONUs,” 1©2008 Optical Society of America.

H.Lee, H. Cho, J.Kim, and C. Lee, “A WDM-PON with an 80 Gb/s capacity based on wavelength-locked Fabry-Perot laser diode,” 16 August 2010 Vol. 18, No. 17, Optics Express 18077.

H. Kim, “Pulsed-incoherent-light-injected Fabry-Perotlaser diode for WDM passive optical networks,”18 January 2010, Vol. 18, No. 2 OPTICS EXPRESS.

B.Chandru, J.Helina Rajini, S.TamilSelvi, “Performance Analysis of Downstream Transmission of lOGbps WDM PON Using Single and Hybrid Optical Amplifiers,” 2014 IEEE

M.Syuhaimi Ab-Rahman, 1, N. Fadzlina Naim, M.Tanra and H.Ramza1Spectrum Technology Research Group (SPECTECH), “Optical System Monitoring Based on Reflection Spectrum of Fiber Bragg Grating,” JCS September 2010.

E. S. Son, K. H. Han, J. H. Lee, and Y. C. Chung, “Survivable Network Architectures for WDM PON,” 2005 Optical Society of America.

A. Sawasakade, M. Tiwari, J. Karan Singh, S. Rathor, “ Design and Analysis of FWM and XPM Effects in 2 × 10 GB/S Bidirectional WDM-PON,” IJATER. September 2011.


Refbacks

  • There are currently no refbacks.


Creative Commons License
This work is licensed under a Creative Commons Attribution 3.0 License.