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

机译:使用2.5GBPS WDM到10GBPS OTDM XGM的所有光分组路由TWDM PON系统架构,以支持共存GPON和XG-PON网络

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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.
机译:提出了一种在OLT设计中采用全光分组路由(AOPR)的TWDM PON系统的新架构。此体系结构是通过使用半导体光放大器(SOA)组件的交叉增益调制(XGM)非归零(NRZ)2.5Gbps WDM到归零(RZ)10Gbps OTDM多路复用技术而设计的。这项研究表明,无需在系统中实现10Gbps OLT卡,就可以利用现有的E / GPON网络基础结构将四个2.5Gbps WDM下行信号复用为10Gbps OTDM信号。本文最后通过分析和讨论SOA组件中的增益饱和效应来影响所提出系统中的BER和信号质量。结果表明,2.5Gbsps和10Gbps可以共存,最大支持30dB的损耗裕度,而最小的分流比为1×64。此外,该架构还表明,它可以被部署为TWDM PON混合解决方案的开放平台,适用于10Gbps,并且将来可用于40Gbps或100Gbps平台。

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