提高FANET中QoS和频繁通信的拥塞控制技术分析

Devashri Anwekar, Sunil Phulre
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摘要

fanet,或飞行自组织网络,是一个对无人驾驶飞行器(uav)如何相互通信非常感兴趣的研究领域。由于网络拓扑结构的不断变化,移动节点之间可能很难有效地相互通信。没有物理基础设施支持这个网络,但节点或无人机配备处理比传感器收集的数据多得多的数据。此外,由于无人机飞得离地面很低,使用短程无线连接比使用高空无线连接产生更好的性能。自适应通信和无人机机动性模型串联发展也能提高性能。例如,当无人机与地面站有稳定的连接时,它需要以较慢的速度移动以保持无线联系。网络效率最关键的指标之一是它的路由。在本文中,我们提出了如何通过控制无人机的能源使用、拥塞和地理位置数据来提高QoS的分析。QoS服务的改进受到多种因素的影响,然而,本分析主要关注能源、拥堵、物理位置、无人机的大小以及无人机在农业中的重要性。为了保证网络的生存时间,保证正常发送报文和传统路由机制的高比率,采用了基于最小代价路由的自适应选择路由和基于网络情况修改或更新路由技术。本文还讨论了路由协议的研究,以便更好地理解该领域正在进行的工作,并提高路由协议的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Congestion Control Techniques to Improve QoS and Frequent Communication in FANET
Fanets, or Flying Ad Hoc Networks, is a field of study that is very interested in how unmanned aerial vehicles (UAVs) communicate with each other. Due to the ever-changing topology of a network, it might be difficult for mobile nodes to effectively communicate with one another. There is no physical infrastructure supporting this network, but the nodes, or UAVs, are equipped to deal with much more data than can be collected by sensors. Also, since UAVs fly so low to the ground, using short-range wireless links yields far better performance than using high-altitude wireless connectivity. Adaptive communications and a UAV mobility model developed in tandem can also increase performance. When a UAV has a stable connection to the ground station, for instance, it needs to move at a slower rate to maintain wireless contact. One of the most crucial indicators of a network’s efficiency is its routing. In this article, we propose analysis on how to improve QoS by controlling energy usage, congestion, and geolocation data by UAVs. QoS service improvement is influenced by a wide variety of factors, however, this analysis is focusing on energy, congestion, and physical location, size of UAVs and importance of UAVs in agriculture. To preserve network lifetime and keep the ratio of properly delivered packets and conventional routing mechanisms high, adaptively selected routes using minimal-cost routing and modified or updated routing techniques based on network conditions are used. A study of routing protocols is also discussed here in order to better understand the work being done in this area and to enhance routing protocol performance.
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