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首页> 外文期刊>IEEE Photonics Technology Letters >A 32$,times,$10 Gb/s DWDM Metropolitan Network Demonstration Using Wavelength-Selective Photonic Cross-Connects and Narrow-Band EDFAs
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A 32$,times,$10 Gb/s DWDM Metropolitan Network Demonstration Using Wavelength-Selective Photonic Cross-Connects and Narrow-Band EDFAs

机译:使用波长选择光子交叉连接和窄带EDFA进行32倍$ 10 Gb / s DWDM城域网演示

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摘要

The feasibility of a 32$,times,$10 Gb/s dense wavelength-division-multiplexed (DWDM) all-optical short-reach metropolitan network using dynamically reconfigurable three-dimensional microelectromechanical-system-based wavelength-selective photonic cross-connects (WSPXC) is experimentally investigated. Full DWDM amplification at the high-capacity node is performed with low-cost narrow-band erbium-doped fiber amplifiers whose channel gain variation is compensated per span using the inherent channel equalization capability of the WSPXC. With Reed–Solomon forward error correction, bit-error rates better than$10^-15$are possible for all 32 channels over 400 km of single-mode fiber and ten transitions through the WSPXC nodes.
机译:使用基于动态可重构三维微机电系统的波长选择光子交叉连接(WSPXC)的32倍,时速,10 Gb / s的密集波分多路复用(DWDM)全光短距离城域网的可行性)进行了实验研究。大容量节点上的完整DWDM放大是通过使用WSPXC固有的信道均衡功能,按每跨度补偿信道增益变化的低成本窄带掺b光纤放大器进行的。借助Reed–Solomon前向纠错功能,对于超过400 km的单模光纤和通过WSPXC节点的十个过渡,所有32个通道的误码率均可能高于$ 10 ^ -15 $。

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