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Data communication in linear wireless sensor networks using Unmanned Aerial Vehicles

机译:使用无人飞行器的线性无线传感器网络中的数据通信

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Unmanned Aerial Vehicles (UAVs) technology is evolving very quickly. New advancements in this important area of research have led more efficient and superior UAVs of all sizes, which have a vast amount of on-board command, control, processing, storage and networking capabilities. Such devices promise to be very useful and efficient in a wide variety of applications. In order to successfully and efficiently achieve their functions and accomplish their tasks, UAVs must communicate with each other using UAV-to-UAV (U2U) communication. They also must communicate with other systems using UAV-to-Infrastructure (U2I) communication. Furthermore, in addition to the numerous tasks and services that would be greatly improved using UAVs, these useful devices can be used to enhance the data collection process in wireless sensor networks (WSNs), which have a large number of environmental, military, and commercial monitoring and surveillance applications. In this paper, we offer an overview of UAV system services, functions, and requirements that are involved in the design of UAV-based systems at the various networking layers. We also present some of the various types of networking architectures, frameworks, and networking protocols that can be used for U2U and U2I communication. In addition, the paper outlines the services that can be performed by the middleware layer to provide increased networking system efficiency and seamless handling of communication between heterogeneous UAV nodes as well as ground and satellite communication units. In addition, we discuss the use of UAVs for data collection in WSNs. Such use of UAVs can be very effective in reducing WSN energy consumption, and communication interference, which can lead to a highly scalable and efficient networking framework.
机译:无人机技术发展非常迅速。在这一重要研究领域的新进展已导致各种规模的更高效,更优质的无人机,它们具有大量的机载命令,控制,处理,存储和联网功能。这样的设备有望在各种应用中非常有用和高效。为了成功且有效地实现其功能并完成其任务,UAV必须使用UAV到UAV(U2U)通信相互通信。他们还必须使用UAV到基础架构(U2I)通信与其他系统通信。此外,除了使用无人机可以大大改善的众多任务和服务外,这些有用的设备还可用于增强无线传感器网络(WSN)中的数据收集过程,该传感器网络具有大量的环境,军事和商业用途监视和监视应用程序。在本文中,我们提供了在各个网络层基于UAV的系统设计中涉及的UAV系统服务,功能和要求的概述。我们还将介绍可用于U2U和U2I通信的各种类型的网络体系结构,框架和网络协议。此外,本文还概述了可以由中间件层执行的服务,以提供更高的联网系统效率以及异构UAV节点以及地面和卫星通信单元之间通信的无缝处理。此外,我们讨论了在WSN中使用无人机进行数据收集的方法。无人机的这种使用在减少WSN能耗和通信干扰方面非常有效,这可以导致高度可扩展和高效的网络框架。

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