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NG-PONs 1&2 and beyond: the dawn of the uber-FiWi network

机译:NG-PON 1&2及以后:uber-FiWi网络的曙光

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摘要

This article reviews the main thrusts in next-generation passive optical network 1 and 2 technologies that enable short-term evolutionary and long-term revolutionary upgrades of coexistent gigabit-class PONs, respectively. It provides insight into the key requirements and challenges of the major candidate NG-PON 1&2 architectures such as long-reach XG-PON, wavelength-routing WDM PON, OCDMA and OFDMA PON, and reports on recent progress toward enhanced data and control plane functionalities, including real-time dynamic bandwidth allocation, improved privacy and guaranteed QoS, bandwidth flexibility, as well as cost-effective in-service monitoring techniques for NG-PONs. We then elaborate on converged optical fiber-wireless access networks, which may be viewed as the endgame of broadband access, and explain the inherent coverage and QoS issues of conventional radio-over-fiber networks for distributed wireless MAC protocols and how their limitations can be avoided in so-called radio-and-fiber networks. We explore powerful layer-2 optical-wireless, hierarchical frame aggregation, and network coding techniques that significantly improve the throughput-delay performance, resource utilization efficiency, and survivability of NG-PON and FiWi networks. Finally, we inquire into the opportunities of sensor-enhanced FiWi networks and propose our novel ??ber-FiWi network, whose potential is demonstrated by studying the beneficial impact of inter-home scheduling of emerging plug-in electric vehicles on the resource management of a more sustainable future smart grid.
机译:本文回顾了下一代无源光网络1和2技术的主要发展方向,它们分别实现了共存的千兆级PON的短期演进和长期革命性升级。它提供了对主要候选NG-PON 1&2架构(如长距离XG-PON,波长路由WDM PON,OCDMA和OFDMA PON)的关键要求和挑战的见解,并报告了增强数据和控制平面功能方面的最新进展包括实时动态带宽分配,改进的隐私性和有保证的QoS,带宽灵活性以及用于NG-PON的经济有效的服务中监视技术。然后,我们将详细介绍融合光纤无线接入网络,该网络可能被视为宽带接入的末日,并解释了分布式无线MAC协议的传统光纤网络的固有覆盖范围和QoS问题,以及它们的局限性如何得以解决。避免在所谓的无线电和光纤网络中使用。我们探索功能强大的第2层光无线,分层帧聚合和网络编码技术,这些技术可显着提高NG-PON和FiWi网络的吞吐量延迟性能,资源利用效率以及可生存性。最后,我们探讨了传感器增强型FiWi网络的机会,并提出了我们新颖的ber-FiWi网络,该网络的潜力通过研究新兴插电式电动汽车的家庭间调度对资源管理的有利影响而得到证明。更具可持续性的未来智能电网。

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