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Energy efficiency analysis of next-generation passive optical network (NG-PON) technologies in a major city network

机译:主要城市网络中的下一代无源光网络(NG-PON)技术的能效分析

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Ever-increasing bandwidth demands associated with mobile backhaul, content-rich services and the convergence of residential and business access will drive the need for next-generation passive optical networks (NG-PONs) in the long term. At the same time, there is a growing interest in reducing the energy consumption and the associated cost of the access network. In this paper, we consider a deployment scenario in a major city to assess the energy efficiency of various PON solutions from a telecom operator's perspective. We compare five next-generation technologies to a baseline GPON deployment offering similar bandwidths and Quality of Service (QoS) for best-effort high speed connectivity services. We follow two approaches: first, we consider a fixed split ratio (1∶64) in an existing Optical Distribution Network (ODN); next, we consider an upgraded ODN with an optimized split ratio for the specific bandwidth and QoS values. For medium bandwidth demands, our results show that legacy PONs can be upgraded to 10G PON without any ODN modification. For future applications that may require access rates up to 1 Gb/s, NG-PON2 technologies with higher split ratios and increased reach become more interesting systems, offering the potential for both increased energy efficiency and node consolidation.
机译:从长远来看,与移动回程,内容丰富的服务以及住宅和企业接入的融合相关的带宽需求不断增长,将推动对下一代无源光网络(NG-PON)的需求。同时,人们越来越关注降低接入网络的能耗和相关成本。在本文中,我们考虑了在主要城市中的部署方案,以从电信运营商的角度评估各种PON解决方案的能效。我们将五种下一代技术与基线GPON部署进行了比较,该基线GPON部署为尽力而为的高速连接服务提供了相似的带宽和服务质量(QoS)。我们采用两种方法:首先,在现有的光分配网络(ODN)中考虑固定的分光比(1∶64)。接下来,我们考虑针对特定带宽和QoS值采用优化分流比的升级版ODN。对于中等带宽需求,我们的结果表明,无需进行任何ODN修改即可将传统PON升级到10G PON。对于未来可能需要高达1 Gb / s的访问速率的应用,具有更高分配比和更大覆盖范围的NG-PON2技术将成为更有趣的系统,为提高能源效率和节点整合提供潜力。

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