功能可编程光节点的合成、弹性和功率效率

M. Dzanko, M. Furdek, B. Mikac, G. Zervas, E. Hugues-Salas, D. Simeonidou
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引用次数: 3

摘要

由于传输速度快,传输数据量大,网络可用性性能是由光交叉连接(oxc)实现的节点组成的光长途网络的关键问题之一。在这种情况下,oxc的设计变得非常具有挑战性,因为它们必须通过灵活分配频谱资源来支持传统的低比特率和未来的高速超级信道,同时提供已建立连接的高可用性。本文研究了不同节点架构的可用性和功耗。我们专注于基于按需架构(Architecture on Demand)概念的新一代合成可编程oxc的设计,该概念可以在光纤级别切换特定部分信号时减少所使用的节点组件数量,从而与传统节点架构相比具有更低的平均停机时间和功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, resiliency and power efficiency of function programmable optical nodes
Due to the large transmission speeds and enormous volumes of transferred data, network availability performance is one of the key issues in optical long-haul networks, comprising nodes implemented by optical cross-connects (OXCs). In this context, the design of OXCs is becoming very challenging since they have to support both legacy lower bit-rates and future highspeed super-channels by means of flexible allocation of spectral resources, and at the same time provide high availability of established connections. In this paper we study the availability and power consumption of different node architectures. We focus on the design of the new generation of synthetic programmable OXCs based on the Architecture on Demand concept which can reduce the number of utilized node components when a certain part of signals is switched at the fibre level, resulting in lower mean down time and power consumption compared to traditional node architectures.
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