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A Wireless Backhaul using a Massive MIMO - 5G NR HetNet design; at Sub-6GHz and MillimetreWave Frequencies

机译:使用大规模MIMO-5G NR HetNet设计的无线回程;低于6GHz和MillimetreWave频率

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The three core means to increasing system capacity, considering the heterogeneity of the Next Generation Mobile Network (NGMN) are: - bandwidth, spectrum efficiency, and cell densification. For the latter one, small cells are envisioned to provide higher throughput by distributing vast numbers of them under macro cell coverage, creating a way to offload traffic and reduce transmitter-receiver distance. However, it immediately poses a problem of routing traffic from small cells to backbone network (backhauling). Here, advances in Massive Multiple Input Multiple Output (MIMO) antenna systems could bridge the gap in wireless backhaul, which is considered the most viable option for dense-urban small cell deployments. In this paper, we propose a 5GNR-compatible Heterogeneous Network (HetNet) architecture, where backhaul for millimeter wave small cells is provided by Massive MIMO enabled macro cell using FDD duplex in sub-6GHz band. Such an uncommon design would have the following advantages: (1) Non-mmWave backhaul links need not to be Line-Of-Sight, (2) Inter-cell interference between mmWave small cells is negligible, (3) The required Channel State Information(CSI) feedback rate for backhaul links is much smaller, if compared to the prospected 5G NR Base Station (gNB) to User Equipment (UE) fast fading links due to high level mobility; making MMIMO FDD deployment feasible in overcoming the issue of CSI feedback overhead, which is the major contribution of the proposed architecture.
机译:考虑到下一代移动网络(NGMN)的异构性,增加系统容量的三个核心手段是:-带宽,频谱效率和小区致密化。对于后一种情况,可以设想通过在宏小区覆盖范围内分配大量小小区来提供更高的吞吐量,从而创建一种减轻流量负担并减少收发机距离的方法。但是,这立即带来了将流量从小型小区路由到骨干网(回程)的问题。在这里,大规模多输入多输出(MIMO)天线系统的进步可以弥补无线回程方面的空白,这被认为是密集城市小小区部署的最可行选择。在本文中,我们提出了一种5GNR兼容的异构网络(HetNet)架构,其中毫米波小蜂窝小区的回传是通过在6GHz以下频段使用FDD双工的Massive MIMO使能宏蜂窝小区提供的。这种不常见的设计具有以下优点:(1)非mmWave回程链路不必是视线;(2)mmWave小小区之间的小区间干扰可以忽略不计;(3)所需的信道状态信息如果与预期的5G NR基站(gNB)到用户设备(UE)的快速衰落链路相比,回程链路的(CSI)反馈速率要小得多,这是由于其高度的移动性;使MMIMO FDD部署在克服CSI反馈开销的问题上可行,这是所提出架构的主要贡献。

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