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Survivable Traffic Grooming in Elastic Optical Networks—Shared Protection

机译:弹性光网络中可幸存的流量整理—共享保护

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This study investigates the survivable traffic grooming problem for elastic optical networks with flexible spectrum grid employing new transmission technologies. In such networks, instead of following the traditional fixed ITU-T wavelength grid, optical transponders are capable of properly tuning their rates, and consequently their spectrum occupation, by introducing the fine-granular spectrum unit, called a frequency slot. The number of contiguous frequency slots allocated to an optical path (i.e., lightpath) is adjusted to the current network flow. In this study, we propose a novel shared protection specific to elastic networks, namely, elastic separate-protection-at-connection (ESPAC). It not only provides traditional backup sharing, but also offers a new opportunity of spectrum sharing enabled by the elasticity of the transponders: 1) if the working paths of two connections are link disjoint physically, and 2) if their backup paths traverse two lightpaths which are adjacent on a fiber link, then the two backup lightpaths can share spectrum. The new opportunity of spectrum sharing is realized by using First-Fit to assign working traffic and Last-Fit to assign backup traffic, and allowing spectrum overlap between adjacent backup wavelengths. The elasticity of the transponder enables the expansion and contraction of the lightpaths, thus when a single failure occurs in the network, lightpaths carrying backup flows can be tuned to appropriate rates in such a way that the overlap spectrum is used by only one of the adjacent lightpaths. The results show ESPAC is very spectrum efficient in elastic network setting.
机译:这项研究调查了采用新传输技术的具有灵活频谱网格的弹性光网络的可幸存业务疏导问题。在这样的网络中,光转发器可以通过引入称为频率槽的细粒度频谱单元来正确调整其速率,从而调整其频谱占用,而不是遵循传统的固定ITU-T波长网格。分配给光路(即,光路)的连续时隙的数量被调整为当前网络流。在这项研究中,我们提出了一种专门针对弹性网络的新型共享保护,即弹性隔离连接保护(ESPAC)。它不仅提供了传统的备份共享,而且还提供了通过转发器的弹性实现频谱共享的新机会:1)如果两个连接的工作路径在物理上是不相交的,以及2)如果它们的备份路径经过了两个光路,则如果在光纤链路上相邻,则两个备用光路可以共享光谱。通过使用First-Fit分配工作流量和Last-Fit分配备用流量,并允许相邻备用波长之间的频谱重叠,可以实现频谱共享的新机会。应答器的弹性使光路能够扩展和收缩,因此,当网络中发生单个故障时,可以将承载备用流的光路调整为适当的速率,以使重叠光谱仅由相邻的一个使用光路。结果表明,ESPAC在弹性网络设置中具有很高的频谱效率。

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