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Measurement-based Double-Directional Polarimetric Characterization of Outdoor Massive MIMO Propagation Channels at 3.5GHz

机译:3.5 GHz室外大规模MIMO传播信道的基于测量的双向极化特性

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Massive multiple-input multiple-output (MIMO) is a key technology for 5G wireless communications since it can improve network throughput, capacity, spatial efficiency, etc. utilizing large-scale antenna arrays. In this paper, we study the direction of departure (DOD) and direction of arrival (DOA) power spectra and the angular spreads for suburban line-of-sight (LoS) environment. Our study is based on a measurement campaign conducted at a carrier frequency of 3.5GHz, with a bandwidth of 160MHz and ±45° dual-polarized 4×8 planar and cylindrical antenna arrays at the transmitter and the receiver, respectively. The space-alternating generalized expectation-maximization (SAGE) algorithm is applied to jointly estimate the DOA, DOD, delay and complex amplitude of the propagation channel measured by the massive MIMO system. Results show that the double-directional channel characteristics exhibit dependence with the employed polarization combination. The obtained characterization results are of great value for the analysis of polarization-dependent design and antenna selection strategies for MIMO systems.
机译:大规模多输入多输出(MIMO)是5G无线通信的一项关键技术,因为它可以利用大规模天线阵列提高网络吞吐量,容量,空间效率等。在本文中,我们研究了郊区视线(LoS)环境的出发方向(DOD)和到达方向(DOA)功率谱以及角展度。我们的研究基于在3.5GHz载波频率下进行的测量活动,该频率分别在发射器和接收器处分别具有160MHz的带宽和±45°双极化4×8平面和圆柱天线阵列。应用空间交替广义期望最大化(SAGE)算法来联合估计大规模MIMO系统测得的传播信道的DOA,DOD,延迟和复振幅。结果表明,双向信道特性表现出与所采用的偏振组合的相关性。获得的表征结果对于分析MIMO系统的极化相关设计和天线选择策略具有重要价值。

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