A Novel Design of FANET Routing Protocol Aided 5G Communication Using IoT

I. Khan, Asrin Abdollahi, Abdul Jamil, Bisma Baig, M. A. Aziz, F. Subhan
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引用次数: 4

Abstract

Flying-Thing is a new promising area, while in last few years Unmanned Aerial Vehicles are emerged. UAVs are very efficient in completing tasks also organizing ad hoc behaviour of networks, thus making flying ad hoc networks. The formation of aerial nodes is not feasible until we use Mobility models for communication between UAV’s. Mobile ad hoc networks & wireless sensor networks are mostly static in behaviour but UAVs are dynamic and deployed in sky using mobility models. In flying ad hoc networks effective communication can be made possible using 5G networks while designing routing protocols. In this paper a comprehensive study is formally introduced covering routing protocols used in flying ad hoc networks, mobility models, heuristic computations, architecture and optimization techniques for improving parameters in flying ad hoc networks. This paper reflects and explains future challenges and help scientists, Researchers to discover more research gaps that have been discussed in the literature and need more investigation. Also, different applications of flying things can be used in IoT based forestry which includes forest mapping, management where optimal results can be obtained. The uniqueness of this research study is to provide heuristic computational algorithm called AntHocNet, Mobility models, drawbacks of traditional technologies, flying-things architecture will be the core interest of this research study.
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一种基于物联网的辅助5G通信的FANET路由协议设计
飞行器是一个很有前途的新领域,而无人机是近几年出现的。无人机在完成任务和组织网络的自组织行为方面非常高效,从而形成飞行自组织网络。在采用机动性模型进行无人机间通信之前,空中节点的形成是不可实现的。移动自组织网络和无线传感器网络在行为上大多是静态的,但无人机是动态的,并使用移动模型部署在天空中。在飞行自组织网络中,可以在设计路由协议时使用5G网络实现有效通信。本文正式介绍了飞行自组织网络中使用的路由协议、移动模型、启发式计算、结构和优化技术,以改善飞行自组织网络中的参数。这篇论文反映和解释了未来的挑战,并帮助科学家,研究人员发现更多的研究差距,这些差距已经在文献中讨论过,需要更多的调查。此外,飞行物的不同应用可以用于基于物联网的林业,包括森林测绘,管理,可以获得最佳结果。本研究的独特之处在于提供启发式计算算法AntHocNet,机动性模型、传统技术的弊端、飞行器架构将是本研究的核心兴趣。
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