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Design of Future UAV-Relay Tactical Data Link for Reliable UAV Control and Situational Awareness

机译:未来无人机中继战术数据链路的设计,以实现可靠的无人机控制和态势感知

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Unmanned aerial vehicles (UAVs) have recently been widely used in the military and commercial domains. UAVs, especially in the military domain, were initially used for gathering intelligence, surveillance, and reconnaissance data, and sending them to a command center. Their use was then expanded to the tactical level to perform military operations with manned platforms. Operating a UAV as a relay node in the air has many advantages, including coverage, recovery from disconnection from a relay, clear communication channel, and easy deployment. Thus, the UAV-Relay tactical network can support more effective military operations. However, reliable UAV control and situational awareness must be guaranteed for the use of tactical UAVs. In other words, all tactical nodes must be able to send their location and status periodically under the dynamic and unexpected situation of a battlefield. However, a jamming attack from the enemy can make UAV control and situational awareness impossible. Thus, we need a robust tactical data link (TDL) to guarantee reliable UAV control and situational awareness under a jamming attack. In this article, we first explain the requirements for reliable UAV control and situational awareness. We then design a future UAV-relay TDL, called link-situational awareness and control (Link-SAC), which satisfies the requirements. We also deal with the spectrum allocation and management of Link-SAC because Link-SAC requires large bandwidth under the scarcity of spectrum resource. Thus, we consider spectrum sharing to allocate an X-Band uplink to Link-SAC. Based on the interference analysis in a prior study, we show that spectrum sharing is possible. We also show how Link-SAC can manage the spectrum. Lastly, we present our concluding remarks.
机译:无人机(UAV)最近已广泛用于军事和商业领域。无人机,特别是在军事领域,最初用于收集情报,监视和侦察数据,并将其发送到指挥中心。然后将其使用范围扩大到战术级别,以便在有人驾驶平台上执行军事行动。将UAV作为空中中继节点进行操作具有许多优势,包括覆盖范围,从中继断开连接中恢复,清晰的通信通道以及易于部署。因此,无人机中继战术网络可以支持更有效的军事行动。但是,使用战术无人机必须保证可靠的无人机控制和态势感知。换句话说,所有战术节点必须能够在战场的动态和意外情况下定期发送其位置和状态。但是,敌人的猛烈攻击会使无人机控制和态势感知变得不可能。因此,我们需要强大的战术数据链路(TDL),以确保在干扰攻击下进行可靠的无人机控制和态势感知。在本文中,我们首先说明对可靠的无人机控制和态势感知的要求。然后,我们设计满足需求的未来无人机中继TDL,称为链接情况感知和控制(Link-SAC)。我们还处理Link-SAC的频谱分配和管理,因为Link-SAC在频谱资源稀缺的情况下需要大带宽。因此,我们考虑频谱共享以将X波段上行链路分配给Link-SAC。根据先前研究中的干扰分析,我们表明频谱共享是可能的。我们还将展示Link-SAC如何管理频谱。最后,我们提出结论。

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