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Antenna Deployment of 5G Ultra High-Density Distributed Massive MIMO by Low-SHF-Band Indoor and Outdoor Experiments

机译:通过低SHF频段室内和室外实验实现5G超高密度分布式大规模MIMO的天线部署

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In order to tackle rapidly increasing traffic, distributed Massive MIMO (DM-MIMO) has been proposed for fifth-generation (5G) mobile communication systems. DM-MIMO coordinates lots of distributed transmission points (TPs) that are located in ultra-high density (UHD) and that use an appropriate number of antenna elements. Furthermore, DM-MIMO with UHD-TPs can create user-centric virtual cells corresponding to user mobility. To deploy TPs for DM-MIMO, some key parameters such as the number of the distributed TPs, the number of antenna elements for each TP, and proper distance between TPs should be determined. Conventional works have shown such key parameters for DM-MIMO with UHD-TPs by computer simulations. However, these parameters have not been evaluated in actual deployment environments. We measure low-SHF- band (4.5 GHz) radio propagation channel in indoor and outdoor experiments of DM-MIMO with UHD-TPs. Then, by exploiting the experimental results, the appropriate numbers of antenna elements based on maximum system throughput criterion are shown for 5G DM-MIMO by computer simulations.
机译:为了应对快速增长的业务量,已经提出了用于第五代(5G)移动通信系统的分布式大规模MIMO(DM-MIMO)。 DM-MIMO协调许多位于超高密度(UHD)中并使用适当数量天线元件的分布式传输点(TP)。此外,具有UHD-TP的DM-MIMO可以创建与用户移动性相对应的以用户为中心的虚拟小区。为了部署用于DM-MIMO的TP,应确定一些关键参数,例如分布式TP的数量,每个TP的天线元件的数量以及TP之间的适当距离。常规工作已经通过计算机仿真显示了用于具有UHD-TP的DM-MIMO的关键参数。但是,这些参数尚未在实际部署环境中进行评估。我们在具有UHD-TP的DM-MIMO的室内和室外实验中测量低SHF频带(4.5 GHz)的无线电传播信道。然后,通过利用实验结果,通过计算机仿真显示了基于最大系统吞吐量标准的适当数量的天线元件,用于5G DM-MIMO。

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