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R-FFT: Function Split at IFFT/FFT in Unified LTE CRAN and Cable Access Network

机译:R-FFT:Unified LTE CRAN和电缆接入网络中IFFT / FFT的功能拆分

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The remote-PHY (R-PHY) modular cable network for data over cable service interface specification (DOCSIS) service conducts the physical layer processing for the transmissions over the broadcast cable in a remote node. In contrast, the cloud radio access network (CRAN) for long-term evolution (LTE) cellular wireless services conducts all baseband physical layer processing in a central baseband unit and the remaining physical layer processing steps toward radio frequency (RF) transmission in remote nodes. Both DOCSIS and LTE are based on orthogonal frequency division multiplexing physical layer processing. We propose to unify cable and wireless cellular access networks by utilizing the hybrid fiber-coax (HFC) cable network infrastructure as fiber fronthaul network for cellular wireless services. For efficient operation of such a unified access network, we propose a novel remote-fast-Fourier transform (R-FFT) node that conducts the physical layer processing from the FFT module toward the RF transmission, whereby DOCSIS and LTE share a common FFT module. The frequency domain in-phase and quadrature (I/Q) symbols for both DOCSIS and LTE are transmitted over the fiber between remote node and cable headend, where the remaining physical layer processing is conducted. We further propose to cache repetitive quadrature amplitude modulation (QAM) symbols in the R-FFT node to reduce the fronthaul bitrate requirements and enable statistical multiplexing. We evaluate the fronthaul bitrate reductions achieved by R-FFT node caching, the fronthaul transmission bitrates arising from the unified DOCSIS and LTE service, and illustrate the delay implications of moving part of the cable R-PHY remote node physical layer processing to the headend. Overall, our evaluations indicate that the proposed R-FFT node can effectively support unified DOCSIS and LTE services over the HFC cable plant while substantially reducing the fronthaul bitrate requirements of the existing CRAN structures.
机译:用于电缆数据服务接口规范(DOCSIS)服务的远程PHY(R-PHY)模块化电缆网络为远程节点中的广播电缆上的传输执行物理层处理。相比之下,用于长期演进(LTE)蜂窝无线服务的云无线电接入网(CRAN)在中央基带单元中进行所有基带物理层处理,而其余物理层处理步骤则向远程节点中的射频(RF)传输。 DOCSIS和LTE均基于正交频分复用物理层处理。我们建议通过利用混合光纤同轴电缆(HFC)电缆网络基础设施作为蜂窝无线服务的光纤前传网络来统一电缆和无线蜂窝接入网络。为了使这样的统一接入网络高效运行,我们提出了一种新颖的远程快速傅立叶变换(R-FFT)节点,该节点执行从FFT模块到RF传输的物理层处理,从而DOCSIS和LTE共享一个通用的FFT模块。 DOCSIS和LTE的频域同相和正交(I / Q)符号在远程节点和电缆头端之间的光纤上传输,在此进行其余的物理层处理。我们进一步建议在R-FFT节点中缓存重复正交幅度调制(QAM)符号,以减少前传比特率要求并启用统计复用。我们评估了通过R-FFT节点缓存实现的前传比特率降低,由统一的DOCSIS和LTE服务产生的前传传输比特率,并说明了将电缆R-PHY远程节点物理层处理的一部分移至前端所带来的延迟影响。总体而言,我们的评估表明,建议的R-FFT节点可以有效地支持HFC电缆工厂上的统一DOCSIS和LTE服务,同时大大降低了现有CRAN结构的前传比特率要求。

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