飞行 Ad-Hoc 网络 (FANETs):综述

Tarandeep Kaur Bhatia, Sanya Gilhotra, Suraj Singh Bhandari, Radhika Suden
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引用次数: 0

摘要

引言:FANET 是一种无线通信网络,由无人驾驶飞行器(UAV)或无人机组成,它们协同工作,处理数据并获得最佳结果。这些网络因其在不同工程领域的潜在应用而备受关注。本文对 FANET 进行了全面分析,涉及其分类、架构、通信类型、移动模式、挑战、特点和设计等各个方面。本文还讨论了 FANET 中路由协议和拓扑结构的重要性。此外,本文还确定并提出了 FANET 领域的开放性问题和挑战,敦促研究人员重点探索并解决这些基本参数和研究领域的问题。目标:本文旨在促进 FANET 和类似网络领域的进一步研究和进步,使研究人员能够探索和克服挑战,在短期内释放这些基于无人机的 ad-hoc 网络的全部潜力。方法:本文使用的数据来自各种研究论文。本文对 FANET、MANET 和 VANET 进行了简要比较,并突出了要点。本文还阐述了 FANET 的一般架构、移动模型、路由、路由协议。结果:研究发现,建议同时使用确定性和概率性技术来提高 FANET 的性能和效率。通过结合这些方法,本文认为可以在网络可靠性、适应性和整体性能方面取得更好的效果。结论:本文讨论了 FANET 中路由协议和拓扑结构的重要性。此外,本文还指出并提出了 FANET 领域中尚未解决的问题和面临的挑战,敦促研究人员重点探索并解决这些基本参数和研究领域的问题。
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Flying Ad-Hoc Networks (FANETs): A Review
INTRODUCTION: FANETs are a type of wireless communication network consisting of Unmanned Aerial Vehicles (UAVs) or drones that work collaboratively to process data and attain optimal results. These networks have achieved significant attention due to their potential applications in diverse engineering fields. The paper provides a comprehensive analysis of FANET, covering various aspects related to its classification, architecture, communication types, mobility models, challenges, characteristics, and design. It also discusses the importance of routing protocols and topology in FANETs. Furthermore, this paper identifies and presents open issues and challenges in the field of FANETs, urging researchers to focus on exploring and addressing these essential parameters and research areas. OBJECTIVES: This paper will aims to promote further investigation and advancement in the field of FANETs and similar networks, enabling researchers to explore and overcome the challenges to unleash the full potential of these UAV-based ad-hoc networks shortly. METHODS: The data used in this paper was gathered from various research papers. A brief comparison among FANETs, MANETs, and VANETs has been shown and highlighted the main points. This paper also elaborates the general architecture, mobility models, routing, routing protocols in FANETs. RESULTS: It was discovered that the use of both deterministic and probabilistic techniques is suggested to enhance the performance and efficiency of FANETs. By combining these methods, the paper suggests that better results can be achieved in terms of network reliability, adaptability, and overall performance. CONCLUSION: This paper discusses the importance of routing protocols and topology in FANETs. Furthermore, this paper identifies and presents open issues and challenges in the field of FANETs, urging researchers to focus on exploring and addressing these essential parameters and research areas.
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