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Reconfigurable DP-16QAM/QPSK transponders for the transmission of coherent 200 Gb/s carriers in a flexgrid super-channel arrangement

机译:可重配置的DP-16QAM / QPSK发送应答器,用于在Flexgrid超通道配置中传输相干的200 Gb / s载波

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The next generation of Dense Wavelength Division Multiplexing (DWDM) networks are likely to use Flexgrid arrangement, providing operators with additional flexibility when assigning spectrum compared to traditional DWDM networks using the 50 GHz ITU grid. Flexgrid breaks the spectrum up into small (typically 12.5 GHz) slots, but its key feature is that contiguous slots can be joined together to form arbitrary sized blocks of spectrum. This additional flexibility will allow faster transponders that utilize high spectral efficiency modulation techniques, like multi-level m-QAM schemes. From the use of these new spectrum efficient modulation formats and finer control over spectrum allocations, a key benefit that Flexgrid offers to the network operators is that their DWDM networks can carry more traffic with optimized spectral efficiency. High speed technology became essential for realizing greater network capacity and enabling network operators to meet the increasing bandwidth challenges from new generation superfast devices, services and applications. Coherent technologies beyond 100G are now focusing on higher level modulation formats and multiple sub-carriers/channels, using super-channels to achieve Terabit transmission. (C) 2015 Elsevier Ltd All rights reserved.
机译:与使用50 GHz ITU网格的传统DWDM网络相比,下一代密集波分复用(DWDM)网络可能会使用Flexgrid布置,从而为运营商在分配频谱时提供了更大的灵活性。 Flexgrid将频谱分解为较小的时隙(通常为12.5 GHz),但是其关键特征是可以将连续的时隙连接在一起以形成任意大小的频谱块。这种额外的灵活性将允许使用高频谱效率调制技术(如多级m-QAM方案)的更快的转发器。通过使用这些新的频谱高效调制格式以及对频谱分配的更好控制,Flexgrid为网络运营商提供的主要优势在于,他们的DWDM网络可以以优化的频谱效率承载更多流量。高速技术对于实现更大的网络容量以及使网络运营商能够应对新一代超高速设备,服务和应用日益增长的带宽挑战变得至关重要。超过100G的相干技术现在专注于更高级别的调制格式和多个子载波/信道,它们使用超级信道来实现兆比特传输。 (C)2015 Elsevier Ltd保留所有权利。

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