一种基于两步预编码的低复杂度3D MU-MIMO下行方案

Jie Li, Guomei Zhang, Gangming Lv, Fei Xiang
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引用次数: 0

摘要

物联网(Internet of Things, IoT)的出现,将数十亿智能设备无线连接在一起,给现有无线网络的容量带来了巨大的压力。幸运的是,一种新技术,三维多输入多输出(3D-MIMO),在二维平面阵列中配备大量有源天线,已经显示出提高系统容量的巨大潜力。一个问题是,随着天线数量的增加,传统的多用户预编码算法的复杂性迅速增加。为了解决这一问题,本文提出了一种两步三维MU-MIMO预编码方案,既能抑制水平域的干扰,又能抑制垂直域的干扰。同时,考虑到不同用户的信道矩阵在垂直维度上的强相关性,我们采用基于弦距的用户选择算法,在第一步预编码中尽可能地寻找垂直天线信道相关性较低的用户。仿真结果表明,将两步预编码与用户选择相结合的传输方案可以获得较好的小区平均频谱效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A low-complexity 3D MU-MIMO downlink scheme based on two-step precoding
The emergence of Internet of Things (IoT), which connects billions of smart devices together wirelessly, has brought great pressure on capacity of current wireless networks. Fortunately, a new technology, three-dimension multiple-input multiple-output (3D-MIMO), with a large number of active antennas equipped in a 2D planar array, has been shown significant potential in improving system capacity. A problem is that with the number of antennas increasing, the complexity of the conventional multi-user (MU) precoding algorithms increase rapidly. To cope with this problem, a two-step 3D MU-MIMO precoding scheme is proposed to suppress the interference not only in horizontal but also in vertical domain in this paper. Meanwhile, considering the strong correlations of channel matrices in vertical dimension for different users, we adopt chordal distance-based user selection algorithm to find the users with correlations of the vertical antennas' channels as low as possible for the first step precoding. Simulation results show that the proposed transmission scheme combining two-step precoding with user selection in vertical dimension can achieve better cell average spectrum efficiency.
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