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首页> 外文期刊>Journal of Lightwave Technology >Transparent ultra-long-haul DWDM networks with 'broadcast-and-select' OADM/OXC architecture
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Transparent ultra-long-haul DWDM networks with 'broadcast-and-select' OADM/OXC architecture

机译:具有“广播和选择” OADM / OXC架构的透明超长距离DWDM网络

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We describe an experimental realization of ultra-long-haul (ULH) networks with dynamically reconfigurable transparent optical add-drop multiplexers (OADMs) and optical cross-connects (OXCs). A simple new approach to dispersion management in ULH dense-wavelength-division-multiplexing (DWDM) transparent optical networks is proposed and implemented, which enables excellent transmission performance while avoiding dispersion compensation on a connection-by-connection basis. We demonstrate "broadcast-and-select" node architectures that take full advantage of this method. Our implementation of signal leveling ensures minimum variations of path-averaged power among the wavelength-division-multiplexing (WDM) channels between the dynamic gain-equalizing nodes and results in uniform nonlinear and spontaneous-emission penalties across the WDM spectrum. We achieve 80/spl times/10.7-Gb/s DWDM networking over 4160 km (52 spans/spl times/80 km each) of all-Raman-amplified symmetric dispersion-managed fiber and 13 concatenated OADMs or 320/spl times/320 wavelength-port OXCs with 320-km node spacing. The WDM channels use 50-GHz grid in C band and the simple nonreturn-to-zero (NRZ) modulation format. The measured Q values exhibit more than a 1.8-dB margin over the forward-error correction threshold for 10/sup -15/ bit-error-rate operation. We compare these results with point-to-point transmission of 80/spl times/10-Gb/s NRZ WDM signals over 4160 km without OADM/OXC and provide detailed characterization of penalties due to optical signal-to-noise-ratio degradation, filter concatenation, and crosstalk.
机译:我们描述了具有动态可重新配置的透明光分插复用器(OADM)和光交叉连接(OXC)的超长距离(ULH)网络的实验实现。提出并实现了一种在ULH密集波分复用(DWDM)透明光网络中进行色散管理的简单新方法,该方法不仅具有出色的传输性能,而且还避免了逐个连接的色散补偿,因此具有出色的传输性能。我们演示了充分利用此方法的“广播和选择”节点体系结构。我们实施的信号均衡技术可确保动态增益均衡节点之间的波分复用(WDM)通道之间的路径平均功率变化最小,并在WDM频谱上产生均匀的非线性和自发发射损失。我们在全拉曼放大的对称色散管理光纤和13个级联OADM的4160公里(每个52跨度/ spl次/每个80公里)上实现了80 / spl次/10.7 Gb / s DWDM组网,并实现了320 / spl次/ 320节点间距为320公里的波长端口OXC。 WDM信道在C频段中使用50 GHz网格,并使用简单的不归零(NRZ)调制格式。对于10 / sup -15 /误码率操作,测得的Q值在前向纠错阈值上显示出超过1.8 dB的余量。我们将这些结果与在没有OADM / OXC的情况下在4160 km上点对点传输80 / spl次/ 10 Gb / s NRZ WDM信号的结果进行了比较,并提供了由于光信噪比下降而造成的罚款的详细表征,过滤串联和串扰。

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