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首页> 外文期刊>Journal of Lightwave Technology >Experimental Assessment of 10 Gbps 5G Multicarrier Waveforms for High-Layer Split U-DWDM-PON-Based Fronthaul
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Experimental Assessment of 10 Gbps 5G Multicarrier Waveforms for High-Layer Split U-DWDM-PON-Based Fronthaul

机译:高层拆分U-DWDM-PON型Fronthaul的10 Gbps 5g多载波波形的实验评估

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The current constant growth in mobile networks' traffic demands caused by the popularization of cloud and streaming services on personal devices, requires architectural changes so as to fulfill all new 5G mobile network requirements. Cloud access radio network (C-RAN) architecture in combination with the massive deployment of small cell antenna sites have recently been proposed as a promising solution but will be demanding for high-capacity mobile fronthaul links. An efficient way for performing that connectivity is to make use of the dense wavelength multiplexing passive optical network (DWDM-PON) infrastructure. In this context, orthogonal frequency division multiplexing (OFDM) has been extensively explored as a potential candidate. Nevertheless, the main drawback of OFDM is its high out-of-band radiation. In order to overcome that drawback, new 5G multicarrier waveforms (FBMC, UFMC, and GFDM) have recently been proposed. In this paper, we experimentally assess and compare 10 Gbps 32-QAM-OFDM/FBMC/UFMC/GFDM system performance for high-layer split ultra-DWDM-PON-based fronthaul using a radio-over-fiber technique. The performance has been done in terms of spectral efficiency, peak-to-average power ratio, spectral density, and receiver sensitivity. In particular, intensity-modulation with direct-detection and quasi-coherent-detection have been considered. In order to improve the multicarrier system energy efficiency, the effect of using a hard clipping technique over transmitted signals is also studied. Finally, we evaluated the crosstalk interference between two adjacent channels of the same modulation scheme, as a function of their electrical frequency span for downlink application.
机译:移动网络的流量需求的当前恒定增长由个人设备普遍推广云和流式服务,需要架构变革,以满足所有新的5G移动网络要求。云接入无线电网络(C-RAN)架构与大规模部署的小型电池天线网站的组合已被提出作为有希望的解决方案,但对高容量的移动Fronthaul Links要求苛刻。用于执行连接的有效方法是利用密集波长复用无源光网络(DWDM-PON)基础设施。在这种情况下,正交频分复用(OFDM)已被广泛探索为潜在的候选者。然而,OFDM的主要缺点是其高带外辐射。为了克服缺点,最近提出了新的5G多载波波形(FBMC,UFMC和GFDM)。在本文中,我们使用无线电磁技术进行了通过电子纤维技术进行了评估和比较了10 Gbps 32-QAM-OFDM / FBMC / UFMC / GFDM系统性能,用于高层拆分超级DWDM-PON的FRONTHAUL。在光谱效率,峰值平均功率比,光谱密度和接收器灵敏度方面已经完成了性能。特别地,已经考虑了具有直接检测和准相干检测的强度调制。为了提高多载波系统能效,还研究了使用硬剪辑技术对传输信号的影响。最后,我们评估了相同调制方案的两个相邻信道之间的串扰干扰,作为其电频率跨度用于下行链路应用的函数。

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