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Spectrum Sharing Strategies for UAV-to-UAV Cellular Communications

机译:用于无人机到UAV蜂窝通信的频谱共享策略

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In this article, we consider a cellular network deployment where UAV-to-UAV (U2U) transmit-receive pairs coexist with the uplink (UL) of cellular ground users (GUEs). Our analysis focuses on comparing two spectrum sharing mechanisms: i) overlay, where the available time-frequency resources are split into orthogonal portions for U2U and GUE communications, and ii) underlay, where the same resources may be accessed by both link types, resulting in mutual interference. We evaluate the coverage probability and rate of all links and their interplay to identify the best spectrum sharing mechanism. Among other things, our results demonstrate that, in scenarios with a large number of UAV pairs, adopting overlay spectrum sharing seems the most suitable approach for maintaining a minimum guaranteed rate for UAVs and a high GUE UL performance. We also find that increasing the density of U2U links degrades their rates in the overlay-where UAVs only receive interference from other UAVs-, but not significantly so in the underlay-where the effect of GUE-generated interference is dominant.
机译:在本文中,我们考虑一个蜂窝网络部署,其中UAV到UAV(U2U)发送接收对与蜂窝接地用户(GUE)的上行链路(UL)共存。我们的分析侧重于比较两个频谱共享机制:i)覆盖,其中可用时频资源被分成U2U和GUE通信的正交部分,并且II)底层,可以通过链路类型访问相同的资源,结果在相互干扰中。我们评估所有链接的覆盖概率和速率及其相互作用,以识别最佳频谱共享机制。除此之外,我们的结果表明,在具有大量无人对对的情景中,采用覆盖频谱共享似乎是维持无人机和高Gue UL性能的最低保证速率的最合适的方法。我们还发现,增加U2U链接的密度在覆盖层中降低了它们的速率 - 其中无人机只接受来自其他无人机的干扰,但在底层中没有显着的影响 - 在底层 - 产生的界面 - 产生的干扰的效果是显性的。

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