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Achieving high reliability in Aerial-Terrestrial networks: Opportunistic space-time coding

机译:在空中地面网络中实现高可靠性:机会时空编码

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To rapidly deploy a communication network in the aftermath of disaster or emergency event, an Aerial-Terrestrial architecture integrating aerial base stations mounted on the balloons has been investigated in EU FP7 ABSOLUTE project. Since the signal coverage provided by aerial base stations is patchy and unstable, the opportunistic relaying is applied to increase the link reliability and the system robustness. However, the performance of relay selection drastically degrades due to the outdated Channel State Information (CSI) from the feedback delay over the Aerial-to-Terrestrial radio channels. In this paper, therefore, we present a novel method named opportunistic space-time coding (OSTC) to combat the outdated CSI. The link reliability in terms of outage probability is evaluated using both Rayleigh channels and the realistic models of Aerial-to-Terrestrial and Device-to-Device channels. The numerical results reveal that OSTC obviously outperforms the opportunistic relaying in the presence of outdated CSI. Moreover, the improvement of reliability comes without any sacrifice in the spectral efficiency.
机译:为了在灾难或紧急事件发生后快速部署通信网络,欧盟FP7 ABSOLUTE项目已研究了集成了安装在气球上的空中基站的空中地面架构。由于空中基站提供的信号覆盖范围不连续且不稳定,因此应用了机会中继来提高链路可靠性和系统鲁棒性。但是,由于来自天线到地面无线电信道的反馈延迟而导致的信道状态信息(CSI)过时,导致中继选择的性能急剧下降。因此,在本文中,我们提出了一种称为机会空时编码(OSTC)的新方法来应对过时的CSI。使用瑞利信道以及天线到地面和设备到设备信道的实际模型评估了基于中断概率的链路可靠性。数值结果表明,在存在过时的CSI的情况下,OSTC明显优于机会中继。此外,在不牺牲频谱效率的情况下提高了可靠性。

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