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Flying Ad Hoc Networks: A New Domain for Network Communications

机译:飞行ad hoc网络:网络通信的新域

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摘要

The advent of flying ad hoc networks (FANETs) has opened an opportunity to create new added-value services. Even though it is clear that these networks share common features with its predecessors, e.g., with mobile ad hoc networks and with vehicular ad hoc networks, there are several unique characteristics that make FANETs different. These distinctive features impose a series of guidelines to be considered for its successful deployment. Particularly, the use of FANETs for telecommunication services presents demanding challenges in terms of quality of service, energy efficiency, scalability, and adaptability. The proper use of models in research activities will undoubtedly assist to solve those challenges. Therefore, in this paper, we review mobility, positioning, and propagation models proposed for FANETs in the related scientific literature. A common limitation that affects these three topics is the lack of studies evaluating the influence that the unmanned aerial vehicles (UAV) may have in the on-board/embedded communication devices, usually just assuming isotropic or omnidirectional radiation patterns. For this reason, we also investigate in this work the radiation pattern of an 802.11 n/ac (WiFi) device embedded in a UAV working on both the 2.4 and 5 GHz bands. Our findings show that the impact of the UAV is not negligible, representing up to a 10 dB drop for some angles of the communication links.
机译:飞行Ad Hoc网络(FANET)的出现已经开设了创建新的附加价值服务的机会。尽管很明显,这些网络与其前辈们共享共同功能,例如,通过移动临时网络和车辆临时网络,有几种独特的特性使粉丝不同。这些独特的功能强加了一系列指南可考虑其成功部署。特别是,在服务质量,能源效率,可扩展性和适应性方面,使用扇形传感器的使用呈现出苛刻的挑战。在研究活动中正确使用模型将无疑将有助于解决这些挑战。因此,在本文中,我们审查了在相关科学文献中提出的移动性,定位和传播模型。影响这三个主题的常见限制是缺乏研究,评估无人驾驶飞行器(UAV)在车载/嵌入式通信设备中的影响,通常仅仅假设各向同性或全向辐射图案。因此,我们还在这项工作中调查了802.11n / ac(WiFi)设备的辐射模式,嵌入在2.4和5 GHz带上的UAV中。我们的研究结果表明,对于通信链路的某种角度,UAV的影响不会忽略不可忽略,表示为10 dB。

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