混合rf -毫米波通信,在5G蜂窝系统中实现低延迟和高能效

M. Hashemi, C. E. Koksal, N. Shroff
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引用次数: 9

摘要

我们提出了一种混合架构,用于集成5G蜂窝系统的RF(即sub-6 GHz)和毫米波(mmWave)接口。为了缓解与毫米波通信相关的挑战,我们提出的架构集成了射频和毫米波接口,用于波束形成和数据传输,并利用了接口之间的时空相关性。基于室内和室外环境的广泛实验,我们证明了集成的RF/毫米波信令和信道估计方案可以解决与毫米波波束形成相关的高训练开销问题。此外,两个接口在更高层之间的合作有效地解决了毫米波通道中由高度间歇性连接引起的高延迟。随后,我们制定了射频和毫米波接口的最优调度问题,其目标是最大化毫米波接口的延迟约束吞吐量。我们利用子可加性分析证明了最优调度策略是基于单一阈值的,即使链路变化很大也可以很容易地采用。我们设计了一个最佳调度器,可以在毫米波接口上随机地调度数据包,而RF链路则充当回退机制,以防止高延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid RF-mmWave communications to achieve low latency and high energy efficiency in 5G cellular systems
We propose a hybrid architecture to integrate RF (i.e., sub-6 GHz) and millimeter wave (mmWave) interfaces for 5G cellular systems. To alleviate the challenges associated with mmWave communications, our proposed architecture integrates the RF and mmWave interfaces for beamforming and data transfer, and exploits the spatio-temporal correlations between the interfaces. Based on extensive experimentation in indoor and outdoor settings, we demonstrate that an integrated RF/mmWave signaling and channel estimation scheme can remedy the problem of high training overhead associated with mmWave beamforming. In addition, cooperation between two interfaces at the higher layers effectively addresses the high delays caused by highly intermittent connectivity in mmWave channels. Subsequently, we formulate an optimal scheduling problem over the RF and mmWave interfaces where the goal is to maximize the delay-constrained throughput of the mmWave interface. We prove using subadditivity analysis that the optimal scheduling policy is based on a single threshold that can be easily adopted despite high link variations. We design an optimal scheduler that opportunistically schedules the packets over the mmWave interface, while the RF link acts as a fallback mechanism to prevent high delay.
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