This paper studies the cross-layer challenges and performance of Hybrid Beamforming (HBF) and Multi-User Multiple-Input Multiple-Output (MU-MIMO) in 5G millimeter wave (mmWave) cellular networks with full-stack TCP/IP traffic and MAC scheduling. While previous research on HBF and MU-MIMO has focused on link-level analysis of full-buffer transmissions, this work reveals the interplay between HBF techniques and the higher layers of the protocol stack. To this aim, prior work on full stack simulation of mmWave cellular network has been extended by including the modeling of MU-MIMO and HBF. Our results reveal novel relations between the networking layers and the HBF MU-MIMO performance in the physical layer. Particularly, throughput can be increased in 5G networks by means of Spatial Division Multiple Access (SDMA). However, in order to achieve such benefits it is necessary to take into account certain trade-offs and the implementation complexity of a full-stack HBF solution.
翻译:本文研究混合成形(HBF)和多用户多投入多产出(MU-MIMO)5G毫米波(mmWave)蜂窝网络的跨层次挑战和性能,包括全堆TCP/IP交通量和MAC时间表,虽然以前对HBF和MU-MIMO的研究侧重于对全吸气传输的链接分析,但这项工作揭示了HBF技术和协议堆叠较高层之间的相互作用,为此,以前对毫米瓦夫蜂窝网络全堆模拟的工作已经通过包括MMU-MIMO和HBF模型而扩大,我们的结果揭示了网络层与HBFM MU-IMO在物理层的性能之间的新关系,特别是,通过空间分层多存(SDMA)增加5G网络的吞吐量,但是,为了实现这些好处,有必要考虑到某些交易和全堆积HBFF解决方案的实施复杂性。