基于中继的多用户协作无人机网络

Ghania Khraimech, Fatiha Merazka
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引用次数: 0

摘要

在本研究中,我们研究了无人驾驶飞行器(uav)如何在使用解码和转发(DF)协议的协作通信中充当中继。我们应用了专家信道假设,研究了符号错误率(SER)来考虑障碍物阻塞整个节点和无人机的视距(LoS)链路的可能性,并观察了由衰落效应(SER)引起的LoS信号波动。为了提高无人机网络的性能,必须设计无人机网络中每对邻居之间的信道模型。网络编码技术在多用户协作通信系统中具有更高的频谱效率和充分的分集能力。然而,在基于中继的多用户协同网络无人机中,加入错误控制码可以提高方案的效率。这些因素促使NC在无线协同无人机网络中的应用。我们在这项工作中详细分析了这个概念,利用几种无人机中继策略,如DF(解码和转发)。仿真结果表明,在无人机协同通信环境下,基于时域衰落场景的编码可以显著提高整体时延性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relay-Based Multiuser Cooperative UAV Networks over Rician Channels
In this study, we investigate how unmanned aerial vehicles (UAVs) may serve as relays in cooperative communication using the Decode and Forward (DF) protocol. We apply the Rician channel assumption and study the Symbol Error Rate (SER) to account for the potential of obstacles blocking the line-of-sight (LoS) link throughout nodes and UAVs, as well as to observe fluctuations in the LoS signal induced by the fading effect (SER). A channel model between each pair of neighbors inside the UAV network must be designed to improve the performance of each network. The network coding (NC) technique provides greater spectral efficiency and full diversity when employed in multiuser cooperative communication systems. However, the addition of error control codes can improve the efficiency of a scheme in relay-based multiuser cooperative network-based UAVs. These factors motivate the use of NC in wireless cooperative UAV networks in a Rician fading scenario. We analyzed this concept in detail in this work, utilizing several UAV relaying strategies such as DF (decode and forward). According to simulation results, coding for a Rician fading scenario significantly improves overall delay performance in the cooperative UAV communications environment.
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