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Asymmetric subarray structure design for mmWave LoS MIMO communication systems

机译:mmWave LoS MIMO通信系统的非对称子阵列结构设计

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In this paper, a millimeter wave (mmWave) multiple input multiple output (MIMO) channel with asymmetric subarray structures in the line of sight (LoS) scenario is considered. The concept of effective degrees of freedom (EDoF) is introduced to measure the maximum spatial multiplexing gain available for the MIMO system. A criterion based on the maximized EDoF is given out for the design of antenna deployments. A specific analytic relation between the parameters of antenna configuration and transmission distance is further obtained for codebook based phase shifters. Compared to previous structures, the asymmetric subarray structure can provide both array gains and spatial multiplexing gains and is beneficial for making a tradeoff between multiplexing gains and diversity gains. At the same time, the upper and lower bounds of the EDoF are also estimated under extreme cases. Based on the Ricean fading channel model, the sensitivity of our system is studied by taking more realistic deployments and propagation conditions into consideration. The simulation results indicate that the optimally designed structure is robust to the geometrical change and misplacement and thus it is a feasible solution for mmWave LoS MIMO applications.
机译:在本文中,考虑了一个毫米波(MMWAVE)多输入多输入多输出(MIMO)通道,其在视线(LOS)场景中具有不对称的子阵列结构。引入了有效自由度(EDOF)的概念来测量MIMO系统可用的最大空间复用增益。基于最大化的EDOF的标准用于天线部署的设计。基于码本的相移器进一步获得天线配置和传输距离之间的特定分析关系。与先前的结构相比,非对称单元结构可以提供阵列增益和空间复用增益,并且有利于在多路复用增益和多样性增益之间进行权衡。同时,EDOF的上限和下限也估计在极端情况下。基于Ricean衰落频道模型,通过考虑更现实的部署和传播条件,研究了我们系统的敏感性。仿真结果表明,最佳设计的结构对几何变化和错位具有鲁棒,因此它是MMWAVE LOS MIMO应用的可行解决方案。

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