Broadband Air-to-Ground communications with adaptive MIMO datalinks

Chao Zhang, Yan Hui
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引用次数: 12

Abstract

In order to further increase the transmission rate of the broadband Air-to-Ground (A/G) aeronautical communications, the adaptive Multiple-Input and Multiple-Output (MIMO) system is proposed in this paper. Specifically, the MIMO system can increase the capacity of the data link just as it does in the terrestrial mobile communications system. Due to the Line-of-Sight (LOS) property of the Three Dimensional (3D) A/G channel, the adaptive smart antenna array is employed to emulate the uncorrelated MIMO channels. Then, the capacity upper bound can be achieved based on optimization of the inter-element distance between the antennas in the uniform virtual linear array. This structure can be combined with the Non-Continuous Interferometry OFDM (NCI-OFDM) system to form the MIMO-NCI-OFDM system, which is expected to be a promising solution to the broadband A/G communications system.
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宽带空对地通信与自适应MIMO数据链
为了进一步提高宽带空对地(A/G)航空通信的传输速率,本文提出了自适应多输入多输出(MIMO)系统。具体来说,MIMO系统可以像在地面移动通信系统中那样增加数据链路的容量。考虑到三维A/G信道的视距特性,采用自适应智能天线阵列对不相关MIMO信道进行仿真。然后,通过优化均匀虚拟线性阵列中天线间的元间距离,实现容量上限。该结构可以与非连续干涉OFDM (NCI-OFDM)系统相结合,形成MIMO-NCI-OFDM系统,有望成为宽带a /G通信系统的一种有前途的解决方案。
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