非均匀线性massive MIMO阵列结构在LOS条件下的平面波对球面波假设

M. Tamaddondar, N. Noori
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引用次数: 7

摘要

第五代(5G)无线通信系统的巨大容量和连接性要求,推动了数百个天线元件在基站(BS)上的应用。这种系统被称为大规模多输入多输出(MIMO),与传统的无线通信技术相比,它提供了巨大的频谱和能量效率。随着大规模MIMO系统中天线数量的显著增加,以前的MIMO信道模型将不再有效。其中一个主要的问题是,在大规模MIMO阵列中,平面波前假设不能被考虑,而球面波前存在。本文推导了多用户(MU)大规模MIMO系统在视距(LOS)条件下的平面波和球面波假设下的信道矩阵,其中基站(BS)配备了大型非均匀线性天线阵列。这种非均匀性增加了子信道之间的正交性和信道矩阵的秩。通过一些仿真结果对所得到的信道容量进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plane wave against spherical wave assumption for non-uniform linear massive MIMO array structures in LOS condition
The massive capacity and connectivity requirements of the fifth generation (5G) wireless communication systems, have motivated the application of hundreds of antenna elements at the base station (BS). This kind of system known as massive multiple-input multiple-output (MIMO), offers a huge spectral and energy efficiency against traditional wireless communication techniques. As the number of antennas increases significantly in massive MIMO systems, the previous MIMO channel models will not be valid longer. One of the main issues is that the planar wavefront assumption cannot be considered over the massive MIMO arrays while spherical wavefronts are experienced. In this paper, the channel matrix of a multi-user (MU) massive MIMO system is derived for both the plane wave and spherical wave assumptions in the line-of-sight (LOS) condition, where the base station (BS) is equipped with a large non-uniform linear array of antennas. This non-uniformity causes to increase the orthogonality between sub-channels and the rank of the channel matrix. The obtained channel capacities are investigated by some simulation results.
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