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Multi-User Wideband Sparse Channel Estimation for Aerial BS with Hybrid Full-Dimensional MIMO

机译:具有混合全维MIMO的空中BS的多用户宽带稀疏信道估计

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Due to the air-ground millimeter-wave channels exhibit inherent sparsity in both angle and delay domains, we propose a multi-user wideband sparse channel estimation scheme for aerial base station (BS) with hybrid full-dimensional (FD)-MIMO systems, where the aerial BS employs FD-MIMO array to serve multiple user equipments with a single antenna through line-of-sight (LoS) paths. Specifically, we first formulate multi-user uplink channel estimation as a parameter estimation problem. Then, by designing the hybrid combiners at the BS to visualize hybrid analog/digital array as a digital array, we estimate the horizontal/vertical AoAs and delays using the 3-dimensional (3-D) unitary ESPRIT algorithm. Moreover, the associated path gains are obtained using the least squares (LS) estimator. Finally, we reconstruct the MIMO channel based on the dominant channel parameters estimated above. According to spectrum estimation theory, the proposed scheme obtains the super-resolution estimations of the horizontal/vertical angle-of-arrivals (AoAs) and delays of sparse LoS paths with low overhead. Simulation results show that the proposed scheme can obtain a good channel estimation performance for multi-user wideband sparse scenario.
机译:由于空地毫米波通道在角度和延迟域中表现出固有的稀疏性,我们提出了一种用于空中基站(BS)的多用户宽带稀疏信道估计方案,具有混合全维(FD)-MIMO系统,在空中BS采用FD-MIMO阵列的情况下,通过通过视线(LOS)路径为单个天线提供多个用户设备。具体地,我们首先将多用户上行链路信道估计推定为参数估计问题。然后,通过在BS的混合组合器设计为可视化混合模拟/数字阵列作为数字阵列,我们使用三维(3-D)单一的ESPRIT算法来估计水平/垂直AOA和延迟。此外,使用最小二乘(LS)估计器获得相关的路径增益。最后,我们基于上面估计的主要频道参数重建MIMO信道。根据频谱估计理论,所提出的方案获得了水平/垂直角度(AOA)的超分辨率估计和具有低开销的稀疏LOS路径的延迟。仿真结果表明,该方案可以获得用于多用户宽带稀疏方案的良好信道估计性能。

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