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Channel estimation for 3D MIMO system based on LOS/NLOS identification

机译:基于LOS / NLOS识别的3D MIMO系统信道估计

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摘要

Channel estimation is one of the most important parts in three-dimensional multiple-input multiple-output (3D MIMO) systems. The characteristics of non-line-of-sight (NLOS) channel and line-of-sight (LOS) channel are different in 3D MIMO systems. If the same channel estimation scheme is used in LOS case as NLOS, the performance of estimation will be bad. In outdoor propagation environment, 3D MIMO channels between closely located antennas share the same delay support in temporal domain. With those prior knowledge, in this study, a new channel estimation scheme is proposed. The proposed scheme can be divided into two processes. First, it is needed to identify the received sounding reference signal whether is LOS or NLOS propagation. Then, different enhanced DFT-based channel estimation schemes are proposed separately according to the identification results. Simulation results verify the proposed algorithm outperforms traditional discrete Fourier transform (DFT)-based channel estimation. At signal-to-noise ratio of 20 dB, the proposed algorithm has 17.7 and 35.7% improvement in NLOS case and LOS case separately in terms of normalised mean squared error compared with traditional DFT-based channel estimation scheme, and is achieved with additional liner complexity.
机译:信道估计是三维多输入多输出(3D MIMO)系统中最重要的部分之一。在3D MIMO系统中,非视距离(NLOS)通道和视线线(LOS)通道的特性不同。如果在LOS案例中使用相同的信道估计方案作为NLO,则估计的性能将是坏的。在户外传播环境中,密集的天线之间的3D MIMO通道在时间域中共享相同的延迟支持。通过这些先验知识,在本研究中,提出了一种新的信道估计方案。所提出的方案可分为两个过程。首先,需要识别接收的探测参考信号是否是LOS或NLOS传播。然后,根据识别结果分别提出不同的基于增强的基于DFT的信道估计方案。仿真结果验证所提出的算法优于传统的离散傅立叶变换(DFT)的信道估计。以20dB的信噪比为20 dB,所提出的算法在与传统的基于DFT的信道估计方案相比的归一化平均平方误差方面的NLOS案例和LOS案例分别有17.7和35.7%,并且通过额外的衬里实现复杂。

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  • 来源
    《Communications, IET 》 |2019年第7期| 898-904| 共7页
  • 作者单位

    Beijing Univ Posts & Telecommun Sch Informat & Commun Engn Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Wireless Theories & Technol Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Sch Informat & Commun Engn Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Wireless Theories & Technol Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Sch Informat & Commun Engn Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Wireless Theories & Technol Lab Beijing 100876 Peoples R China;

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