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Empirical characterization of mm-wave communication links in realistic indoor scenarios

机译:现实室内场景中毫米波通信链路的经验表征

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The large contiguous bandwidths available in the mm-wave frequency bands have recently started to gain significant attention due to the growing belief that it can alleviate the spectrum shortage at lower frequencies and meet the increasing high data rate demands. While some commercially available mm-wave transceivers in the 60 GHz and 70 GHz bands have been developed, only a few studies exist on the achievable data rates in realistic deployment scenarios. Moreover, practical issues such as interference and coexistence of heterogeneous applications have not been investigated. In this paper, we present our empirical study on the bit error ratio and throughput for realistic indoor application scenarios in 60 GHz and 70GHz using orthogonal frequency division multiplexing based physical layer on various commercially available transceivers. Furthermore, we analyze the effects of interference on the performance characteristics of the mm-wave frequency links in different deployment setups.
机译:由于越来越多的人相信它可以缓解较低频率下的频谱短缺并满足日益增长的高数据速率需求,因此毫米波频段中可用的大连续带宽最近已开始引起人们的广泛关注。尽管已经开发出了一些在60 GHz和70 GHz频段上可买到的毫米波收发器,但在实际部署情况下,对于可实现的数据速率只有很少的研究。此外,尚未研究诸如异构应用程序的干扰和共存之类的实际问题。在本文中,我们使用各种商用收发器上基于正交频分复用的物理层,针对60 GHz和70 GHz实际室内应用场景中的误码率和吞吐量进行了实证研究。此外,我们分析了不同部署设置中干扰对毫米波频率链路性能特征的影响。

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