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2D Unitary ESPRIT Based Super-Resolution Channel Estimation for Millimeter-Wave Massive MIMO with Hybrid Precoding

机译:混合预编码的毫米波大规模MIMO基于二维Unit元ESPRIT的超高分辨率信道估计

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摘要

Millimeter-wave (mmWave) massive multiple-input multiple-output (MIMO) with hybrid precoding is a promising technique for the future 5G wireless communications. Due to a large number of antennas but a much smaller number of radio frequency (RF) chains, estimating the high-dimensional mmWave massive MIMO channel will bring the large pilot overhead. To overcome this challenge, this paper proposes a super-resolution channel estimation scheme based on two-dimensional (2D) unitary ESPRIT algorithm. By exploiting the angular sparsity of mmWave channels, the continuously distributed angle of arrivals/departures (AoAs/AoDs) can be jointly estimated with high accuracy. Specifically, by designing the uplink training signals at both base station (BS) and mobile station (MS), we first use low pilot overhead to estimate a low-dimensional effective channel, which has the same shift-invariance of array response as the high-dimensional mmWave MIMO channel to be estimated. From the low-dimensional effective channel, the superresolution estimates of AoAs and AoDs can be jointly obtained by exploiting the 2D unitary ESPRIT channel estimation algorithm. Furthermore, the associated path gains can be acquired based on the least squares (LS) criterion. Finally, we can reconstruct the high-dimensional mmWave MIMO channel according to the obtained AoAs, AoDs, and path gains. Simulation results have confirmed that the proposed scheme is superior to conventional schemes with a much lower pilot overhead.
机译:带有混合预编码的毫米波(mmWave)大规模多输入多输出(MIMO)是未来5G无线通信的一项有前途的技术。由于天线数量众多,但射频(RF)链数量少得多,因此估计高维mmWave大规模MIMO信道将带来较大的导频开销。为了克服这一挑战,本文提出了一种基于二维(2D)unitESPRIT算法的超分辨率信道估计方案。通过利用mmWave通道的角度稀疏性,可以高精度地共同估计到达/离开的连续分布角度(AoAs / AoDs)。具体来说,通过设计基站(BS)和移动台(MS)的上行链路训练信号,我们首先使用低导频开销来估计低维有效信道,该信道具有与高响应相同的阵列响应平移不变性。毫米波MIMO信道估计。从低维有效信道中,可以通过利用二维单一ESPRIT信道估计算法来联合获得AoA和AoD的超分辨率估计。此外,可以基于最小二乘(LS)标准来获取关联的路径增益。最后,我们可以根据获得的AoA,AoD和路径增益来重构高维mmWave MIMO信道。仿真结果证实了该方案优于传统方案,具有较低的导频开销。

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