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Indoor Experimental Trial on Hybrid 16-Beam Spatial-Multiplexing for High SHF Wide-Band Massive MIMO in 5G., , , , , , , , , и . VTC Fall, стр. 1-5. IEEE, (2018)User Selection and Rank Adaptation for Multi-User Massive MIMO with Hybrid Beamforming., , , , и . VTC Fall, стр. 1-5. IEEE, (2017)Digital beamforming algorithm for 5G low-SHF-band massive MIMO with intersite coordination., , , , и . WPMC, стр. 470-475. IEEE, (2017)Field experimental evaluation of higher rank MIMO in quad-directional UE antenna configuration for 5G radio access system., , , , , , , , , и 1 other автор(ы). WPMC, стр. 542-546. IEEE, (2017)Investigation on link performance modeling of advanced receiver employing interference rejection combining in system level evaluation for LTE-Advanced downlink., , , , и . ISWCS, стр. 919-923. IEEE, (2012)Experiment of 28 GHz Band 5G super wideband transmission using beamforming and beam tracking in high mobility environment., , , , , и . PIMRC, стр. 1-5. IEEE, (2016)Field Experiment of High-Capacity Technologies for 5G Ultra High-Density Distributed Antenna Systems., , , , , , , , и . VTC Spring, стр. 1-5. IEEE, (2017)Study on Characteristics of Human Body Shadowing in High Frequency Bands: Radio Wave Propagation Technology for Future Radio Access and Mobile Optical Networks., , и . VTC Fall, стр. 1-5. IEEE, (2014)5G R&D Achievements for High-Data-Rate and Low-Power-Consumption Radio Access Technologies with Higher-Frequency-Band and Wider-Bandwidth Massive MIMO., , , , , , , и . VTC Spring, стр. 1-5. IEEE, (2019)Performance evaluation for different types of small cells with optimized transmssion power., , , , , , и . ICCS, стр. 328-332. IEEE, (2014)