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Millimeter-Wave CRAN with Lens Antenna Arrays

机译:带有透镜天线阵列的毫米波CRAN

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Millimeter-wave (mmWave) communication has emerged as a promising candidate for next-generation wireless systems due to the availability of large bandwidth, while cloud radio access network (CRAN), in which low-complexity remote radio heads (RRHs) are deployed to serve users in a distributed manner, is a cost-effective solution to achieve network densification. However, for a CRAN operating over a large bandwidth in the mmWave frequencies, the fronthaul links would be easily saturated by the large amount of sampled and quantized signals to be transferred between RRHs and the central processor. To tackle this problem, we propose in this paper a new architecture for mmWave CRAN with advanced lens antenna arrays at the RRHs. With the energy focusing property, lens antenna arrays are effective in exploiting the angular sparsity of the mmWave channel to simplify the signal processing required to achieve high data rates with multiple antennas, even when the channel is frequency selective. We consider the uplink transmission in a mmWave CRAN with lens antenna arrays and propose a low-complexity quantization bit allocation scheme for multiple antennas at each RRH to meet the stringent fronthaul rate constraint. We compare the proposed mmWave CRAN using lens antenna arrays, with a conventional CRAN using uniform planar arrays at the RRHs, and show that the proposed design achieves significant throughput gains with much lower complexity.
机译:由于大带宽的可用性,毫米波(mmWave)通信已成为下一代无线系统的有希望的候选者,而在其中部署了低复杂性远程无线电头(RRH)的云无线电接入网络(CRAN)以分布式方式为用户提供服务,是一种实现网络密集化的经济高效的解决方案。但是,对于在mmWave频率上的较大带宽上工作的CRAN,前传链路很容易因要在RRH和中央处理器之间传输的大量采样和量化信号而饱和。为了解决这个问题,我们在本文中提出了一种针对毫米波CRAN的新架构,该架构在RRH处具有先进的透镜天线阵列。具有能量聚焦特性,即使天线是频率选择性的,透镜天线阵列也可有效利用毫米波通道的角度稀疏性,以简化使用多个天线实现高数据速率所需的信号处理。我们考虑了毫米波CRAN中具有透镜天线阵列的上行链路传输,并针对每个RRH的多个天线提出了一种低复杂度的量化比特分配方案,以满足严格的前传速率约束。我们将所建议的使用透镜天线阵列的毫米波CRAN与在RRH处使用均匀平面阵列的常规CRAN进行了比较,结果表明,所提出的设计以低得多的复杂度实现了显着的吞吐量增益。

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