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4096-OFDM Implementation on the HFC Plant with Fiber Deep and Distributed Access Architecture

机译:具有纤维深层和分布式访问架构的HFC工厂的4096-OFDM

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The paper will introduce what are the limitations existed in the current HFC architecture, why it is wise to continue the investment on the HFC infrastructure evolution instead of reconstructing to an all - fiber infrast-ructure, and why the new HFC architecture with the Distributed Access Architecture (DAA) in conjunction with the Fiber Deep (FD) can resolve the limitations and helps make the 4096-OFDM application on HFC plant a reality. The paper will also introduce the parameters that impact the MER and BER performance such that A WGN, IQ Gain, IQ Phase, Phase noise, CW interfere-nce, Group delay, Micro-reflection, distortion and PAPR; and addresses why the PAPR becomes a major concern in the DAA + FD architecture where the 4096-OFDM application and the higher output RF power of node are both being expected. In the fiber deep deployment a much higher output RF power is expected for the node that, together with the R-PHY module installed in the node, could cause a significant power increase therefore leading to serious concern at the thermal dissipation. The paper will finally introduce some possible solutions to reduce the PAPR and the power. This is to accomplish the goal to make the HFC a 10Gbps access network while maintaining the good and stable BER performance on top of the 4096-OFDM application.
机译:本文将介绍什么是在目前的HFC架构,为什么它是明智的继续对HFC基础架构的发展,而不是重建一个所有投资中存在的局限性 - 光纤基础设施,以及为什么新的HFC架构的分布式访问架构(DAA)与光纤深度(FD)结合可以解决的局限性,并有助于使一个现实的HFC厂4096-OFDM的应用程序。该文件还将介绍参数影响MER和BER性能使得A WGN,IQ增益,IQ相位,相位噪声,干扰CW-NCE,群延迟,微反射,失真和PAPR;以及为什么PAPR成为在DAA + FD体系结构,其中所述的4096-OFDM应用和节点的较高输出的RF功率都被预期的主要关注地址。在纤维深部署高得多的输出RF功率预期的是,与安装在的节点处的R-PHY模块一起,可能导致显著功率增加,因此导致严重关切在热耗散的节点。本文将最后介绍了一些可能的解决方案,以降低PAPR和动力。这是为了实现目标,使HFC 10Gbps的接入网络,同时维持对4096-OFDM应用之上的良好,稳定的BER性能。

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