Effectiveness of Coherent Pluggable Interfaces in Brownfield Optical Network Deployments

João Pedro, H. Bock
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Abstract

The emergence of coherent pluggable interfaces is enabling to streamline the network architecture and is raising the prospect of extra reductions in both capital and operational expenditures. Nevertheless, the relatively long lifecycle of line systems (e.g., 10 years), when compared to the shorter lifecycle of line interfaces (e.g., 3 years), means a large fraction of network operators will be looking to leverage these pluggable devices in brownfield deployment scenarios. In this case, the legacy line system can hamper the effectiveness of exploiting the pluggable interfaces. This paper describes a comprehensive framework to estimate the impact of the line system on key network capacity and cost-related metrics when pluggable line interfaces are deployed. The framework is used on a reference optical transport network with growing demand for capacity and assuming a set of possible line systems, including legacy and modern ones. The simulation results highlight that although there are clear benefits in terms of usable capacity when these interfaces are deployed over modern line systems (greenfield scenario), it is still possible to reach competitive capacity figures with legacy line systems (brownfield scenario), particularly via exploiting a trade-off between capacity and the number of line interfaces used as regenerators.
相干可插拔接口在棕场光网络部署中的有效性
连贯的可插拔接口的出现有助于简化网络架构,并提高了额外减少资本和业务支出的前景。然而,与线路接口的较短生命周期(例如3年)相比,线路系统的生命周期相对较长(例如10年),这意味着很大一部分网络运营商将寻求在棕色地带部署场景中利用这些可插拔设备。在这种情况下,遗留线路系统可能会妨碍利用可插拔接口的有效性。本文描述了一个全面的框架来评估线路系统对关键网络容量和成本相关指标的影响,当部署可插拔线路接口时。该框架用于对容量需求不断增长的参考光传输网络,并假设一组可能的线路系统,包括传统的和现代的。模拟结果强调,尽管在现代线路系统(绿地方案)上部署这些接口在可用容量方面有明显的好处,但与传统线路系统(棕地方案)相比,仍然有可能达到具有竞争力的容量数字,特别是通过利用容量和用作再生器的线路接口数量之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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