All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network

A new architecture of TWDM PON system using all optical packet routing (AOPR) in OLT design is proposed in this paper. This architecture is designed using cross gain modulation (XGM) none-return-to-zero (NRZ) 2.5Gbps WDM to return-to-zero (RZ) 10Gbps OTDM multiplexing technique using Semiconductor O...

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Main Authors: Salleh, M. S., Supa'At, A. S. M., Idrus, S. M., Yusof, Z. M., Zamzuri, A. K.
Format: Conference or Workshop Item
Language:English
Published: 2015
Subjects:
Online Access:http://eprints.utm.my/id/eprint/59131/1/SMIdrus2021_AllOpticalPacketRouting.pdf
http://eprints.utm.my/id/eprint/59131/
http://dx.doi.org/10.1109/APCC.2014.7092837
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spelling my.utm.591312022-04-07T03:23:56Z http://eprints.utm.my/id/eprint/59131/ All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network Salleh, M. S. Supa'At, A. S. M. Idrus, S. M. Yusof, Z. M. Zamzuri, A. K. TK Electrical engineering. Electronics Nuclear engineering A new architecture of TWDM PON system using all optical packet routing (AOPR) in OLT design is proposed in this paper. This architecture is designed using cross gain modulation (XGM) none-return-to-zero (NRZ) 2.5Gbps WDM to return-to-zero (RZ) 10Gbps OTDM multiplexing technique using Semiconductor Optical Amplifier (SOA) component. This study shown that without implementing 10Gbps OLT card in the system, four 2.5Gbps WDM downstream signals could be multiplexed to carry 10Gbps OTDM signal by utilizing the existing E/GPON network infrastructure. This paper is concluded with an analysis and discussion on the gain saturation effect in SOA components affecting the BER and quality of the signal in the proposed system. The result shown that both 2.5Gbsps and 10Gbps can coexist to support maximum up to 30dB loss margin with minimum 1×64 splitting ratio. In addition, this architecture also shows that it could be deployed as an open platform of hybrid solution of TWDM PON for 10Gbps and ready for 40Gbps or 100Gbps platform in the future. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/59131/1/SMIdrus2021_AllOpticalPacketRouting.pdf Salleh, M. S. and Supa'At, A. S. M. and Idrus, S. M. and Yusof, Z. M. and Zamzuri, A. K. (2015) All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network. In: 20th Asia-Pacific Conference on Communication, APCC 2014Pattaya City, 1-3 Oct 2014, Pattaya, Thailand. http://dx.doi.org/10.1109/APCC.2014.7092837
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Salleh, M. S.
Supa'At, A. S. M.
Idrus, S. M.
Yusof, Z. M.
Zamzuri, A. K.
All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
description A new architecture of TWDM PON system using all optical packet routing (AOPR) in OLT design is proposed in this paper. This architecture is designed using cross gain modulation (XGM) none-return-to-zero (NRZ) 2.5Gbps WDM to return-to-zero (RZ) 10Gbps OTDM multiplexing technique using Semiconductor Optical Amplifier (SOA) component. This study shown that without implementing 10Gbps OLT card in the system, four 2.5Gbps WDM downstream signals could be multiplexed to carry 10Gbps OTDM signal by utilizing the existing E/GPON network infrastructure. This paper is concluded with an analysis and discussion on the gain saturation effect in SOA components affecting the BER and quality of the signal in the proposed system. The result shown that both 2.5Gbsps and 10Gbps can coexist to support maximum up to 30dB loss margin with minimum 1×64 splitting ratio. In addition, this architecture also shows that it could be deployed as an open platform of hybrid solution of TWDM PON for 10Gbps and ready for 40Gbps or 100Gbps platform in the future.
format Conference or Workshop Item
author Salleh, M. S.
Supa'At, A. S. M.
Idrus, S. M.
Yusof, Z. M.
Zamzuri, A. K.
author_facet Salleh, M. S.
Supa'At, A. S. M.
Idrus, S. M.
Yusof, Z. M.
Zamzuri, A. K.
author_sort Salleh, M. S.
title All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
title_short All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
title_full All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
title_fullStr All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
title_full_unstemmed All optical packet routing TWDM PON system architecture using 2.5GBPS WDM to 10GBPS OTDM XGM to support coexistence GPON and XG-PON network
title_sort all optical packet routing twdm pon system architecture using 2.5gbps wdm to 10gbps otdm xgm to support coexistence gpon and xg-pon network
publishDate 2015
url http://eprints.utm.my/id/eprint/59131/1/SMIdrus2021_AllOpticalPacketRouting.pdf
http://eprints.utm.my/id/eprint/59131/
http://dx.doi.org/10.1109/APCC.2014.7092837
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score 13.2442