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Fountain code-inspired channel estimation for multi-user millimeter wave MIMO systems

机译:用于多用户毫米波MIMO系统的喷泉码启发频道估计

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This paper develops a novel channel estimation approach for multi-user millimeter wave (mmWave) wireless systems with large antenna arrays. By exploiting the inherent mmWave channel sparsity, we propose a novel simultaneous-estimation with iterative fountain training (SWIFT) framework, in which the average number of channel measurements is adapted to various channel conditions. To this end, the base station (BS) and each user continue to measure the channel with a random subset of transmit/receive beamforming directions until the channel estimate converges. We formulate the channel estimation process as a compressed sensing problem and apply a sparse estimation approach to recover the virtual channel information. As SWIFT does not adapt the BS's transmitting beams to any single user, we are able to estimate all user channels simultaneously. Simulation results show that SWIFT can significantly outperform existing random-beamforming based approaches that use a fixed number of measurements, over a range of signal-to-noise ratios.
机译:本文开发了具有大天线阵列的多用户毫米波(MMWAVE)无线系统的新型信道估计方法。通过利用固有的MMWAVE信道稀疏性,我们提出了一种与迭代喷泉训练(SWIFT)框架的新颖同时估计,其中通道测量的平均数量适用于各种信道条件。为此,基站(BS)和每个用户继续测量具有传输/接收波束成形方向的随机子集的信道,直到信道估计收敛。我们将信道估计过程作为压缩感的感测问题,并应用稀疏估计方法来恢复虚拟信道信息。由于SWIFT不适应BS的发送光束到任何单个用户,我们能够同时估计所有用户频道。仿真结果表明,SWIFT可以显着优于现有的基于随机波束成形的方法,这些方法在一系列信噪比范围内使用固定数量的测量。

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