On Improvement of Channel Estimation for the Uplink of Large Scale MU-MIMO using DMRS

Hai Tran, Tuan-Anh Mai, D. Vuong, N. Nguyen
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引用次数: 2

Abstract

TDD large scale MIMO recently has emerged as a groundbreaking technology which enables many antennas can be equipped at a Base Station without overhead for downlink pilot. In such systems, the uplink channel estimation plays a critical role since it is needed for both MU-MIMO detection and precoding weight calculation. To facilitate the implementation, the channel estimation should be as low complex as possible. In addition, to support multiusers, the channel estimation should be robust to long delay spread. Previous methods usually consists of FFT/IFFT transformation and windows for separating channel impulse response of multiusers. Another method estimates channel transfer function of each user directly in frequency domain by using a simple sliding window, however, this method is susceptible to long delay spread. To remove FFT/IFFT transformation, and mitigate long delay spread, we propose a method for channel estimation in frequency domain using raised-cosine based filter. Simulation results shown that the proposal outperforms previous methods. Under 3.7 μs delay spread of ITU-B channel, the proposal achieves bit error ratio of 10−3 with 2dB additional carrier to noise ratio compared to perfect channel estimation. To further validate the proposal, experiments are conducted with 16 antennas at base station and 4 single antenna users using 16, 64, and 256 QAM.
基于DMRS的大规模MU-MIMO上行信道估计改进研究
TDD大规模MIMO技术是一项突破性的技术,它可以在一个基站中安装多个天线,而无需开销用于下行导频。在这种系统中,上行信道估计起着至关重要的作用,因为它既需要MU-MIMO检测,也需要预编码权重计算。为了便于实现,信道估计应尽可能降低复杂度。此外,为了支持多用户,信道估计应该对长延迟扩展具有鲁棒性。以前的方法通常由FFT/IFFT变换和用于分离多用户信道脉冲响应的窗口组成。另一种方法是使用简单的滑动窗口直接在频域估计每个用户的信道传递函数,但这种方法容易受到长时延扩展的影响。为了消除FFT/IFFT变换,减少长时延扩展,我们提出了一种基于提升余弦滤波器的频域信道估计方法。仿真结果表明,该方法优于以往的方法。在ITU-B信道延迟扩展3.7 μs的情况下,与完美信道估计相比,该方案实现了10−3的误码率,并增加了2dB的载波噪声比。为了进一步验证该方案,分别在16个基站天线和4个单天线用户中使用16、64和256 QAM进行了实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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