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Analyzing the Tradeoffs in Using Millimeter Wave Directional Links for High Data-Rate Tactile Internet Applications

机译:使用毫米波定向链路进行高数据速率触觉互联网应用的折衷

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摘要

Ultra-low latency and high reliability communications are the two defining characteristics of tactile Internet (TI). Nevertheless, some TI applications would also require high data-rate transfer of audiovisual information to complement the haptic data. Using millimeter Wave (mmWave) communications is an attractive choice for high data-rate TI applications due to the availability of large bandwidth in the mmWave bands. Moreover, mmWave radio access is also advantageous to attain the air-interface-diversity required for high reliability in TI systems as mmWave signal propagation significantly differs to sub-6 GHz propagation. However, the use of narrow beamwidth in mmWave systems makes them susceptible to link misalignment-induced unreliability and high access latency. In this article, we analyze the tradeoffs between high gain of narrow beamwidth antennas and corresponding susceptibility to misalignment in mmWave links. To alleviate the effects of random antenna misalignment, we propose a beamwidth-adaptation scheme that significantly stabilize the link throughput performance.
机译:超低延迟和高可靠性通信是触觉互联网(TI)的两个定义特征。然而,一些TI应用还需要高数据速率传输视听信息来补充触觉数据。使用毫米波(MMWAVE)通信是高数据速率TI应用的有吸引力的选择,由于MM波频带中的大带宽的可用性。此外,MMWAVE无线电接入也是有利的,可以在TI系统中获得高可靠性所需的空气界面分集,因为MMWAVE信号传播显着不同于SUB-6 GHz传播。然而,在MM波系统中使用窄波束宽度使它们易于链接错位引起的不可靠性和高访问延迟。在本文中,我们分析了窄波束天线的高增益与MMWAVE链路中的错位易感性之间的权衡。为了减轻随机天线未对准的影响,我们提出了一种波束适应方案,可显着稳定链路通量性能。

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