Djamal E. Berraki, S. Armour, A. Nix
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引用次数: 59

摘要

本文研究了利用压缩感知(CS)精确估计毫米波传播信道稀疏功率角分布(PAP)的方法。这种方案对室外毫米波应用特别有吸引力,在这种应用中,更有可能部署大型天线阵列来补偿高路径损耗。目前的模拟波束形成技术,如基于码本的802.11ad波束形成技术,对于典型的16×16元素的大型天线阵列显示出较大的波束形成开销。在消声室中进行了测量,以证明CS对毫米波PAP估计的适用性。分析了噪声对使用CS理论估计偏离方向(DoD)的影响,最后评估了利用重构PAP进行波束形成的效益,并与IEEE 802.11ad标准中采用的波束搜索算法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of compressive sensing in sparse spatial channel recovery for beamforming in mmWave outdoor systems
In this paper the use of compressive sensing (CS) to accurately estimate the sparse Power Angle Profile (PAP) of a mmWave propagation channel has been investigated. This scheme is especially attractive for outdoor mmWave applications where large antenna arrays are more likely to be deployed to compensate for high pathloss. Current analogue beamforming techniques such as the codebook based 802.11ad beamforming manifest large beamforming overhead for large antenna arrays of typically 16×16 elements. Measurements in an anechoic chamber were performed to demonstrate the applicability of CS to mmWave PAP estimation. The impact of noise on the estimation of Directions-of-Departure (DoD) using CS theory is analysed and finally the benefit of exploiting the reconstructed PAP in beamforming is assessed and compared to the beam searching algorithm adopted in the IEEE 802.11ad standard.
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