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Integrated Millimeter Wave and Sub-6 GHz Wireless Networks: A Roadmap for Joint Mobile Broadband and Ultra-Reliable Low-Latency Communications

机译:集成毫米波和Sub-6 GHz无线网络:用于联合移动宽带和超可靠的低延迟通信的路线图

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Next-generation wireless networks must enable emerging technologies such as augmented reality and connected autonomous vehicles via a wide range of wireless services that span enhanced mobile broadband (eMBB) and ultra-reliable low-latency communication (URLLC). Existing wireless systems that solely rely on the scarce sub-6 GHz, mu W frequency bands will be unable to meet such stringent and mixed service requirements for future wireless services due to spectrum scarcity. Meanwhile, operating at high-frequency mmWave bands is seen as an attractive solution, primarily due to the bandwidth availability and possibility of large-scale multi-antenna communication. However, even though leveraging the large bandwidth at mmWave frequencies can potentially boost the wireless capacity for eMBB services and reduce the transmission delay for low-latency applications, mmWave communication is inherently unreliable due to its susceptibility to blockage, high path loss, and channel uncertainty. Hence, to provide URLLC and high-speed wireless access, it is desirable to seamlessly integrate the reliability of mW networks with the high capacity of mmWave networks. To this end, in this article, the first comprehensive tutorial for integrated mmWave-mW communications is introduced. This envisioned integrated design will enable wireless networks to achieve URLLC along with eMBB by leveraging the best of two worlds: reliable, long-range communications at the mW bands and directional high-speed communications at the mmWave frequencies. To achieve this goal, key solution concepts are discussed that include new architectures for the radio interface, URLLC-aware frame structure and resource allocation methods along with mobility management, to realize the potential of integrated mmWave-mW communications. The opportunities and challenges of each proposed scheme are discussed and key results are presented to show the merits of the developed integrated mmWave-mW framework.
机译:下一代无线网络必须通过跨越增强的移动宽带(embb)和超可靠的低延迟通信(URLLC),使新兴技术能够通过各种无线服务等待广泛的无线服务。仅依赖于稀缺Sub-6 GHz,MU W频带的现有无线系统将无法满足由于频谱稀缺而对未来无线服务的如此严格和混合的服务要求。同时,在高频MMWVEAVE频带的操作被视为有吸引力的解决方案,主要是由于带宽可用性和大规模多天线通信的可能性。但是,即使利用MM波频率的大带宽可能会提高embb服务的无线容量,并降低低延迟应用的传输延迟,由于其对阻塞,高路径损耗和信道不确定性的易感性,MMWAVE通信本身不可靠。因此,为了提供URLLC和高速无线接入,希望与MM波网络的高容量无缝地集成MW网络的可靠性。为此,在本文中,介绍了集成MMWAVE-MW通信的第一综合教程。这种设想的集成设计将使无线网络能够通过利用两个世界的最佳方式来实现URLLC以及embb:在MW频段和MMWAVE频率下的定向高速通信中可靠,远程通信。为了实现这一目标,讨论了关键解决方案概念,其中包括用于无线电接口的新架构,URLLC感知帧结构和资源分配方法以及移动性管理,实现集成MMWAVE-MW通信的潜力。讨论了每个拟议方案的机遇和挑战,并提出了关键结果,以展示发达的集成MMWAVE-MW框架的优点。

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