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A comparative study on geographic-based routing algorithms for flying ad-hoc networks

机译:用于飞行Ad-hoc网络的地理学路由算法的比较研究

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摘要

The advancement of the technology and broad availability of low-cost devices (e.g., networking technology, micro-embedded computers, and sensors, etc.) have opened new ways for the expansion of flying ad-hoc networks (FANETs). The unmanned aerial vehicles (UAVs) have the potential to change their trajectory freely in the case of FANETs. This freedom demands efficient routing to make the network connection smooth. However, designing routing protocols for FANETs is a crucial task for highly dynamic nodes like UAVs. The position-based routing demonstrated high efficiency and resilience to handle the high mobility of UAV nodes in FANETs as compared to topology-based routing protocols. Geographic routing protocols utilize the coordinates of the node to greedily proceed toward the destination. This article presents an extensive review of position-based or geographic routing protocols in FANETs. Previous survey papers have performed a comparative analysis of all the protocols on different network conditions, assumptions, tools, and settings, therefore their performance is not comparable. The novelty of this survey is that this article performs the comparative analysis of various geographic routing protocols by evaluating all the geographic routing protocols over a common network scenario with a varying number of nodes. The starting phase of this article covers the basic outline of FANETs. Thereafter, an absolute study of the geographic based routing protocol has been presented by distinguishing the routing protocols on the basis of path and packet forwarding strategy. This article further emphasizes on the strength, weaknesses, quality of service (QoS), and comparative analysis of the various characteristics of the geographic routing protocols. Finally, a performance comparison summary of all the analyzed routing protocols for FANETs has been presented. The open research issues have been discussed at the end of this article.
机译:技术的进步和低成本设备的广泛可用性(例如,网络技术,微嵌入式计算机和传感器等)开辟了扩展飞行ad-hoc网络(FANET)的新方法。无人驾驶飞行器(无人机)有可能在粉丝的情况下自由改变轨迹。这种自由需要有效的路由使网络连接流畅。但是,为FANET设计的路由协议是高度动态节点的关键任务,如UVS。与基于拓扑的路由协议相比,基于位置的路由表明了高效率和弹性,以处理FAAV节点中的UAV节点的高移动性。地理路由协议利用节点的坐标来贪婪地前往目的地。本文介绍了对FANET的基于位置或地理路由协议的广泛审查。之前的调查论文对不同网络条件,假设,工具和设置的所有协议进行了比较分析,因此它们的性能不可比较。本调查的新颖性是本文通过使用不同数量的节点评估公共网络场景的所有地理路由协议来执行各种地理路由协议的比较分析。本文的起始阶段涵盖了粉丝的基本轮廓。此后,通过基于路径和分组转发策略区分路由协议来呈现基于地理路由协议的绝对研究。本文进一步强调了强度,劣势,服务质量(QoS),以及地理路由协议的各种特征的比较分析。最后,已经介绍了对FANET的所有分析路由协议的性能比较摘要。本文结束时已经讨论了开放的研究问题。

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