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Adapting Cellular Networks to Whitespaces Spectrum

机译:使蜂窝网络适应空白频谱

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TV Whitespaces, recently opened up by the Federal Communications Commission (FCC) for unlicensed use, are seen as a potential cellular offload and/or standalone mechanism, especially in dense metros where the demand for throughput is high. In this paper, we use real data collected from whitespaces databases to empirically demonstrate features unique to whitespaces—power–spectrum tradeoff and spatial variation in spectrum availability. From this study, we conclude the need for whitespaces-specific adaptations to cellular networks so as to be able to extract maximum throughput and guarantee reliability. To tackle the effects of the power–spectrum tradeoff, we propose a novel base-station design that specifically uses low-power transmitters as a means to maximize throughput. This design co-locates and networks together many low-powered mode-I devices to act as a multiple-antenna array. We estimate the size of the array required to meet typical rate targets, and show that the array design significantly outperforms traditional designs in terms of throughput for a given cost. We then turn our attention to spatial variability and study its impact on the problem of locating base stations in a whitespaces network. Here, we propose spectrum-aware placement algorithms for whitespaces, which account for this spatial variability along with key parameters like user density. We show that such algorithms clearly outperform traditional placement algorithms and improve network coverage in this band.
机译:联邦通信委员会(FCC)最近开放了电视空白空间,用于未经许可的使用,这被视为潜在的蜂窝式卸载和/或独立机制,尤其是在吞吐量要求很高的密集都市中。在本文中,我们使用从空白数据库中收集的真实数据,以经验方式证明空白所独有的功能-功率-频谱权衡和频谱可用性的空间变化。从这项研究中,我们得出结论,需要对蜂窝网络进行特定于空格的调整,以便能够提取最大吞吐量并保证可靠性。为了解决功率频谱权衡的影响,我们提出了一种新颖的基站设计,该设计专门使用低功率发射机作为最大化吞吐量的手段。此设计将许多低功耗I型设备放置在一起并联网,以充当多天线阵列。我们估算了满足典型速率目标所需的阵列大小,并表明在给定成本下,阵列设计在吞吐量方面明显优于传统设计。然后,我们将注意力转移到空间可变性上,并研究其对空白空间网络中基站定位问题的影响。在这里,我们提出了针对频谱的频谱感知布局算法,该算法考虑了这种空间变异性以及诸如用户密度之类的关键参数。我们证明了这样的算法明显优于传统的布局算法,并提高了该频段的网络覆盖率。

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