用于均匀圆形阵列的低复杂度毫米波LOS-MIMO预编码系统

Liang Zhou, Y. Ohashi
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引用次数: 21

摘要

本文研究了视距(LOS)多输入多输出(MIMO)信道中均匀圆阵列(UCAs)的低复杂度毫米波通信系统。我们首先证明了LOS-MIMO信道中uca的MIMO信道矩阵是循环矩阵。然后,我们证明了通过选择合适的阵列直径作为3×3和4×4 uca的范围和波长的函数,可以使通道矩阵正交。我们还推导出作为阵列设计函数的特征值的简单解析表达式。最后,我们提出了一种将前向纠错(FEC)编码与固定预编码矩阵的空间交织器相结合的高性能LOS-MIMO预编码系统。与基于SVD的特征模系统不同,由于循环矩阵的特性,该预编码系统不需要预编码矩阵的CSI估计、SVD计算和反馈。仿真结果表明,所提出的低复杂度系统在各种链路范围内都能获得优异的性能。
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Low complexity millimeter-wave LOS-MIMO precoding systems for uniform circular arrays
In this paper we investigate low complexity millimeter-wave communication systems for uniform circular arrays (UCAs) in line-of-sight (LOS) multiple-input multiple-output (MIMO) channels. We first demonstrate that the MIMO channel matrices for UCAs in LOS-MIMO channels are circulant matrices. Then, we show that the channel matrices can be made orthogonal by choosing the array diameters appropriately as a function of range and wavelength for the 3×3 and 4×4 UCAs. We also derive simple analytical expressions of eigenvalues as a function of array design. Finally, we propose a high performance LOS-MIMO precoding system which combines forward error correction (FEC) codes and spatial interleaver with fixed precoding matrix. Unlike the SVD based eigenmode system, the proposed precoding system does not require CSI estimation, SVD calculation and feedback of precoding matrix owing to the properties of circulant matrices. Simulation results show that the proposed low complexity system can obtain excellent performance in various link ranges.
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