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Enabling Technologies for Millimeter-wave radio-over-fiber Systems in Next Generation Heterogeneous Mobile Access Networks

机译:在下一代异构移动接入网络中实现毫米波无线电流系统的技术

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Fifth-generation (5G) wireless access network promises to support higher access data rate with more than 1,000 times capacity with respect to current long-term evolution (LTE) systems. New radio-access-technologies (RATs) based on higher carrier frequencies to millimeter-wave (MMW) radio-over-fiber, and carrier-aggregation (CA) using multi-band resources are intensively studied to support the high data rate access and effectively use of frequency resources in heterogeneous mobile network (Het-Net). In this paper, we investigate several enabling technologies for MMW RoF systems in 5G Het-Net. Efficient mobile fronthaul (MFH) solutions for 5G centralized radio access network (C-RAN) and beyond are proposed, analyzed and experimentally demonstrated based on the analog scheme. Digital predistortion based on memory polynomial for analog MFH linearization are presented with improved EVM performances and receiver sensitivity. We also propose and experimentally demonstrate a novel inter-/intra- RAT CA scheme for 5G Het-Net. The real-time standard 4G-LTE signal is carrier-aggregated with three broadband 60GHz MMW signals based on proposed optical-domain band-mapping method. RATs based on new waveforms have also been studied here to achieve higher spectral-efficiency (SE) in asynchronous environments. Full-duplex asynchronous quasi-gapless carrier-aggregation scheme for MMW ROF inter-/intra-RAT based on the FBMC is also presented with 4G-LTE signals. Compared with OFDM-based signals with large guard-bands, FBMC achieves higher spectral-efficiency with better EVM performance at less received power and smaller guard-bands.
机译:第五代(5G)无线接入网络有望支持高于1000多倍的容量,相对于当前的长期演进(LTE)系统。基于更高载波频率到毫米波(MMW)无线电过光的新的无线电访问技术(RAT),使用多频带资源的射频过光纤和载波聚合(CA),以支持高数据速率访问和有效地利用异构移动网络(HET-Net)中的频率资源。在本文中,我们在5G Het-Net中调查了MMW ROF系统的若干启用技术。提出了高效的移动Fronthaul(MFH)解决方案,用于5G集中式无线电接入网络(C-RAN)及更大的解决方案,基于模拟方案进行分析和实验证明。基于模拟MFH线性化的存储器多项式的数字预感随着改进的EVM性能和接收器灵敏度而提供了模拟MFH线性化。我们还提出并通过实验证明了5G HET-NET的新型/大鼠内部CA方案。基于所提出的光学域带映射方法,实时标准4G-LTE信号与三个宽带60GHzMMW信号进行载波聚合。此处还研究了基于新波形的大鼠,以在异步环境中实现更高的光谱效率(SE)。基于FBMC的MMW ROF / rAT中/内部大型rat的全双工异步准无形载波聚合方案也具有4G-LTE信号。与大型防护带的基于DM的信号相比,FBMC在更少接收的电源和较小护罩带上具有更高的EVM性能的频谱效率更高。

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