The rapid evolution of communication technologies such as 5G and beyond, rely on optical networks to support the challenging and ambitious requirements that include both capacity and reliability. This chapter begins by giving an overview of the evolution of optical access networks, focusing on Passive Optical Networks (PONs). The development of the different PON standards and requirements aiming at longer reach, higher client count and delivered bandwidth are presented. PON virtualization is also introduced as the flexibility enabler. Triggered by the increase of bandwidth supported by access and aggregation network segments, core networks have also evolved, as presented in the second part of the chapter. Scaling the physical infrastructure requires high investment and hence, operators are considering alternatives to optimize the use of the existing capacity. This chapter introduces different planning problems such as Routing and Spectrum Assignment problems, placement problems for regenerators and wavelength converters, and how to offer resilience to different failures. An overview of control and management is also provided. Moreover, motivated by the increasing importance of data storage and data processing, this chapter also addresses different aspects of optical data center interconnects. Data centers have become critical infrastructure to operate any service. They are also forced to take advantage of optical technology in order to keep up with the growing capacity demand and power consumption. This chapter gives an overview of different optical data center network architectures as well as some expected directions to improve the resource utilization and increase the network capacity.
翻译:5G及5G及以后等通信技术的迅速发展依靠光学网络来支持具有挑战性和雄心勃勃的要求,包括能力和可靠性。本章首先概述了光学接入网络的演变,重点是被动光学网络(PONs)。介绍了不同的PON标准和要求的制定,目的是更长远的覆盖范围、更高的客户计数和提供带宽。PON虚拟化也作为灵活性促进因素被引入。由于通过接入和聚合网络部分支持的带宽增加,核心网络也发生了变化,正如本章第二部分所述。扩大有形基础设施需要高投资,因此,运营商正在考虑优化现有能力的利用的替代办法。本章提出了不同的规划问题,如Rout and Spectrum任务问题、再生器和波长转换器的安置问题,以及如何对不同的失败提供复原力。还概述了控制和管理。此外,由于数据储存和汇总网络部分越来越重要,因此核心网络也涉及光学数据中心相互联系的不同方面。数据中心已成为运行任何现有能力的关键性基础设施,因此,正在考虑优化现有能力的使用。本章提出了不同的规划问题,例如Rout and splain lapplement dreal lax acal acal lishal acal be hakeding tokeding the as as as as as accre as as accre to as accre to accre to asting accre as accre as to as to as to as accusalticusalticildalticildalticildaltaldaldal as as as as as as as as as as as as as accildalticilddd as as as as as as as as accal as as accal as accild as accilddddddddddddalddddddaldaldaldaldaldal 一种要求,从而在要求,从而在利用了光学到光基的网络的网络的动力的动力的动力的动力的利用率,从而在使用。和光学结构,从而使光光学结构的利用率也使得。和光学结构的利用率得到。和光学结构的