下一代弹性光接口的组网问题

B. Clouet, J. Pedro, N. Costa, M. Kuschnerov, A. Schex, J. Slovak, D. Rafique, A. Napoli
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引用次数: 23

摘要

下一代弹性光接口将支持广泛的线速率和调制格式。这样的传输方案以牺牲较低的传输距离为代价使信道容量翻倍,而灵活的DWDM网格通过将多个光信号紧密地打包在一个频率槽内支持多个光信号的传输,从而节省了频谱资源。由此产生的线路侧的众多选项为网络规划者提供了为网络内的每条路径派生出最合适的选项的能力。然而,规划和操作的复杂性不应被忽视,因为增加的频谱碎片等方面可能会阻碍预期的网络改进。本文研究了如何在利用下一代光接口的主要优势,同时保持底层系统的复杂性在一个合理的水平之间获得最佳折衷。特别是,我们定义了一种新的网络频谱效率(SE)指标,它一方面突出了支持灵活网格以提高SE的相关性,另一方面证明了网格粒度可以基于更粗的50 GHz增量而不会造成重大损失。通过考虑两种参考网络拓扑,验证了该参数的有效性。最后,本文还讨论了未来光接口技术的发展将如何影响网络设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Networking aspects for next-generation elastic optical interfaces
Next-generation elastic optical interfaces will support a wide range of line rates and modulation formats. Such transmission schemes enable doubling of the channel capacity at the expense of a lower reach, whereas a flexible DWDM grid supports the transport of multiple optical signals within a single frequency slot by packing them closely, thus saving spectral resources. The resulting multitude of options on the line side provides network planners the capability to derive the most suitable one for each individual path inside the network. However, planning and operational complexity should not be overlooked, since aspects such as added spectrum fragmentation can hamper the expected network improvements. This paper investigates how to obtain the best compromise between harnessing the main benefits of next-generation optical interfaces, while keeping the complexity of the underlying system at a reasonable level. In particular, we define a novel network spectral efficiency (SE) metric that enables, on one hand, to highlight the relevance of supporting a flexible grid to improve SE and, on the other hand, to demonstrate that the grid granularity can be based on coarser 50 GHz increments without major penalties. The effectiveness of this parameter has been verified by considering two reference network topologies. Finally, the paper also discusses how future optical interface technology developments will shape network design.
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