实现城域光网络向多频段的无缝迁移:推出面向 6G 时代的尖端 6D 规划工具

IF 4 2区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Farhad Arpanaei;Jose Manuel Rivas-Moscoso;Ivan De Francesca;Jose Alberto Hernandez;Alfonso Sanchez-Macian;Mahdi Ranjbar Zefreh;David Larrabeiti;Juan Pedro Fernandez-Palacios
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引用次数: 0

摘要

在超越 5G/6G 的时代,对高带宽服务和应用的持续需求要求光网络提供充足的频谱资源,以适应不断增长的流量负荷。这一要求在城域网和区域网段尤为突出,因为在这些网段中,预计流量复合年增长率(CAGR)将超过 40%,而这主要是由集中在终端用户附近的内容交付网络(CDN)流量所驱动的,因此在中短期内,一些使用率较高的链路有可能将光纤容量推向极限。尽管采用了专为短距离传输设计的高频谱效率调制格式,但仍无法规避这一限制。因此,当务之急是探索解决方案的迁移策略,以便将频谱资源扩展到目前使用的扩展 C 波段(4.8 太赫兹)之外。在本文中,我们利用一种名为 6D-MAN 的新型网络规划器,对参考城域网(MAN)上的多家庭边缘到核心路由、调制级选择和频谱分配模拟进行了全面评估。我们的模拟考虑了在 50 GHz 网格上以 100 到 400 Gbps 的容量运行的具有灵活调制格式转发器的相干传输,并探索了限于 C+L{\rm C} + {\rm L} 波段的逐链路迁移策略。+ {\rm L}波段,确保广义信噪比(GSNR)方面的最佳性能。研究结果表明,在选定数量的链路上部署 L 波段设备可有效延长现有网络的使用寿命,从而在最少干预的情况下实现无拥塞运行。总之,我们的研究结果强调了考虑传统 C 波段以外的其他频谱资源的重要性。这些研究结果明确强调了 L 波段设备战略部署在解决城域网容量限制方面的潜力,从而使光纤长度减少 60%,新光纤对链路部署需求显著减少 45%。高效利用光纤容量的深远影响体现在大量节省运营支出和光总拥有成本上,10 年内分别节省约 71% 和 17%-27%。这项研究为城域网运营商寻求可持续战略以支持未来 5G/6G 以外服务不断增长的需求提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enabling seamless migration of optical metro-urban networks to the multi-band: unveiling a cutting-edge 6D planning tool for the 6G era
The relentless demand for high-bandwidth services and applications in the beyond-5G/6G era necessitates optical networks to provide ample spectral resources to accommodate the increasing traffic loads. This requirement is especially pronounced in metro and regional segments, where a projected traffic compound annual growth rate (CAGR) of over 40%, driven by content delivery network (CDN) traffic concentrated near the end users, threatens to push the fiber capacity to its limits on a number of heavily utilized links in the short to medium term. This limitation cannot be circumvented despite the utilization of spectrally efficient modulation formats designed for short-distance transmission. Thus, it is imperative to explore migration strategies to solutions that allow the expansion of spectral resources beyond the current usage of the extended C-band (4.8 THz). In this article, we present a comprehensive evaluation of multi-homed edge-to-core routing, modulation-level selection, and spectrum assignment simulations conducted over reference metropolitan area networks (MANs) by leveraging on a novel network planner called 6D-MAN, which we have developed to adapt to heterogeneous multi-layer networks based on multi-band and multi-fiber transmission. Our simulations consider coherent transmission with flexible modulation format transponders operating at capacities ranging from 100 to 400 Gbps on the 50 GHz grid and explore link-by-link migration strategies restricted to the C + L-band, ensuring optimal performance in terms of the generalized signal-to-noise ratio (GSNR). The obtained results demonstrate that deploying L-band equipment on a selected number of links effectively extends the lifespan of existing networks, enabling congestion-free operation with minimal intervention. In their entirety, our findings underscore the importance of contemplating alternative spectral resources beyond the conventional C-band. They unequivocally accentuate the potential of L-band equipment strategic deployment to tackle capacity constraints in MANs, resulting in a 60% reduction in fiber length and a remarkable 45% decrease in new fiber-pair link deployment needs. The profound implications of efficient fiber capacity utilization manifest themselves in substantial OPEX and optical total cost of ownership savings, amounting to approximately 71% and 17%–27%, respectively, over a 10-year period. This research provides valuable insights for MAN operators seeking sustainable strategies to support the growing demands of future beyond-5G/6G services.
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来源期刊
CiteScore
9.40
自引率
16.00%
发文量
104
审稿时长
4 months
期刊介绍: The scope of the Journal includes advances in the state-of-the-art of optical networking science, technology, and engineering. Both theoretical contributions (including new techniques, concepts, analyses, and economic studies) and practical contributions (including optical networking experiments, prototypes, and new applications) are encouraged. Subareas of interest include the architecture and design of optical networks, optical network survivability and security, software-defined optical networking, elastic optical networks, data and control plane advances, network management related innovation, and optical access networks. Enabling technologies and their applications are suitable topics only if the results are shown to directly impact optical networking beyond simple point-to-point networks.
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