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Performance Comparison of Alternative Indoor 5G Micro-Operator Deployments in 3.6-GHz and 26-GHz Bands

机译:3.6-GHz和26 GHz带中替代室内5G微型操作员部署的性能比较

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摘要

The fifth generation (5G) networks will provide local high-quality wireless services, especially within indoor areas. New local 5G network operator models, such as the recently introduced micro-operators, are increasingly important for vertical specific service delivery. The emergence of 5G micro-operator networks in spatially confined areas depends on local spectrum availability. In this paper, we investigate the performance of local 5G indoor micro-operator networks in the 3.6-GHz and 26-GHz bands. We consider two uncoordinated time-division duplex networks in adjacent buildings sharing the same channel with different base station antenna configurations and deployment densities. We evaluate the resulting performance of the victim network via system simulations. We have observed that the center frequency does not significantly impact the downlink performance unless the network is noise-limited. However, the uplink performance in 26-GHz band is affected by higher coupling losses between the base stations and mobile terminals. Our results indicate that beamforming and wider bandwidths help to improve the performance in 26-GHz band. More importantly, two indoor micro-operators can successfully coexist with a very small separation distance in the 26-GHz band, while in the 3.6-GHz band, a considerably larger isolation between the networks is required, for example, in the form of a much larger separation distance.
机译:第五代(5G)网络将提供当地的高质量无线服务,特别是在室内区域内。新的本地5G网络操作员模型,如最近引入的微型操作员,对于垂直特定服务交付越来越重要。空间限制区域中5G微型操作系统网络的出现取决于本地频谱可用性。在本文中,我们调查了3.6GHz和26GHz频段中本地5G室内微操作员网络的性能。我们考虑两个在相邻建筑物中的两个不协调的时分双工网络,共享具有不同基站天线配置和部署密度的相同信道。我们通过系统仿真评估受害者网络的结果。除非网络是噪声限制,否则我们已经观察到中心频率不会显着影响下行链路性能。然而,26-GHz频带中的上行链路性能受到基站和移动终端之间的更高耦合损耗的影响。我们的结果表明,波束成形和更宽的带宽有助于提高26 GHz频段的性能。更重要的是,两个室内微算子可以成功共存在26-GHz频段中的一个非常小的分离距离,而在3.6GHz频带中,例如,需要相当大的网络之间的隔离,例如,以a的形式更大的分离距离。

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