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首页> 外文期刊>IEEE systems journal >Location-Aided mMIMO Channel Tracking and Hybrid Beamforming for High-Speed Railway Communications: An Angle-Domain Approach
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Location-Aided mMIMO Channel Tracking and Hybrid Beamforming for High-Speed Railway Communications: An Angle-Domain Approach

机译:用于高速铁路通信的位置辅助MMIMO通道跟踪和混合波束形成:角度域方法

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摘要

Wireless communication for high-speed railways (HSRs) has received considerable attention in recent years. The fast time-varying and doubly selective fading properties of channels pose a substantial threat to the link performance. Meanwhile, the nonnegligible Doppler frequency offset (DFO) resulting from the high-speed motion induces intercarrier interference. In this paper, we propose an angle-domain channel tracking and hybrid beamforming scheme for HSR by investigating the time and spatial properties of channels. Alarge-scale uniform linear antenna array is applied at the base station to provide high spatial resolution. The DFO is compensated through beam alignment and capturing the precise angular information from signals. Then, the spatial beam gain is tracked during the angle-of-arrival time, which can be used to reconstruct the full-dimensional channel state information. Finally, the hybrid beamforming is used to realize data transmission. The key idea of tracking is, applying a linear Kalman filter to modify the time-varying beam gain, while the main idea of hybrid beamforming is utilizing non orthogonal beams to compress the channel dimension and decrease the computational complexity. The superiority of the proposed scheme is evaluated through simulations.
机译:近年来,高速铁路(HSRS)的无线通信已得到相当大的关注。通道的快速时变和双重选择性衰落属性对链路性能构成了大量威胁。同时,由高速运动产生的非阻符多普勒频率偏移(DFO)引起互置干扰。在本文中,我们通过研究通道的时间和空间特性提出了HSR的角度域信道跟踪和混合波束形成方案。 Alarge-Scale均匀的线性天线阵列应用在基站,以提供高空间分辨率。 DFO通过光束对齐补偿并从信号中捕获精确的角度信息。然后,在到达角度的时间内跟踪空间光束增益,其可用于重建全维信道状态信息。最后,使用混合波束形成来实现数据传输。跟踪的关键概念是应用线性卡尔曼滤波器来修改时变波波增率,而混合波束成形的主要思想利用非正交波束压缩信道维度并降低计算复杂度。通过模拟评估所提出的方案的优越性。

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