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首页> 外文期刊>IEEE Transactions on Signal Processing >Two-Timescale Hybrid Compression and Forward for Massive MIMO Aided C-RAN
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Two-Timescale Hybrid Compression and Forward for Massive MIMO Aided C-RAN

机译:两次时间尺度混合压缩和前进的大规模MIMO辅助C-RAN

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We consider the uplink of a cloud radio access network (C-RAN), where massive multiple-input multiple-output (MIMO) remote radio heads (RRHs) serve as relays between users and a centralized baseband unit (BBU). Although employing massive MIMO at RRHs can improve the spectral efficiency, it also significantly increases the amount of data that need to be transported over the fronthaul links between RRHs and BBU. Existing fronthaul compression methods for conventional C-RAN are not suitable in the massive MIMO regime because they require fully digital processing and/or real-time full channel state information (CSI), incurring high implementation cost for massive MIMO RRHs. To overcome this challenge, we propose to perform a two-timescale hybrid analog-and-digital spatial filtering at each RRH to reduce the fronthaul consumption. Specifically, the analog filter is adapted to the channel statistics to achieve the massive MIMO array gain, and the digital filter is adapted to the instantaneous effective CSI to achieve the spatial multiplexing gain. Such a design can alleviate the bottleneck of limited fronthaul while achieving reduced hardware cost and power consumption, and is more robust to the CSI delay. We propose an online algorithm for the two-timescale non-convex optimization of analog and digital filters, and establish its convergence to stationary solutions. Finally, simulations verify the advantages of the proposed scheme over the state-of-the-art baseline schemes.
机译:我们考虑云无线电接入网络(C-RAN)的上行链路,其中大量多输入多输出(MIMO)远程无线电头(RRH)用作用户和集中基带单元(BBU)之间的继电器。虽然在RRH上采用大规模的MIMO可以提高光谱效率,但它也显着增加了在RRHS和BBU之间的FRONTHAUL联系上需要运输的数据量。传统C-RAN的现有Fronthaul压缩方法不适用于大规模的MIMO制度,因为它们需要完全数字处理和/或实时的全频道状态信息(CSI),这为大规模MIMO RRHS产生了高实现成本。为了克服这一挑战,我们建议在每个RRH下执行两个时间尺度的混合模数空间过滤,以减少Fronsthaul消耗。具体地,模拟滤波器适于实现大量MIMO阵列增益的信道统计,并且数字滤波器适于实现空间复用增益的瞬时有效的CSI。这种设计可以缓解有限公司Fronthaul的瓶颈,同时实现硬件成本和功耗降低,并且对CSI延迟更加强大。我们提出了一种用于模拟和数字滤波器的双模非凸优化的在线算法,并建立其收敛到固定解决方案。最后,模拟验证了所提出的方案的优势,最先进的基线方案。

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