计算机科学
无线自组网
计算机网络
路由协议
优化链路状态路由协议
布线(电子设计自动化)
节点(物理)
车载自组网
机动性模型
adhoc无线分发服务
链路状态路由协议
自适应服务质量多跳路由
钥匙(锁)
无线路由协议
移动自组网
分布式计算
目的地顺序距离矢量路由
无线
电信
计算机安全
工程类
网络数据包
结构工程
作者
Demeke Shumeye Lakew,Umar Sa'ad,Nhu‐Ngoc Dao,Woongsoo Na,Sungrae Cho
标识
DOI:10.1109/comst.2020.2982452
摘要
The use of unmanned aerial vehicles (UAVs) is attracting considerable interest in academic research, commercial, and military applications. Multi-UAV systems organized in an ad hoc fashion called a flying ad hoc network (FANET) can cooperatively and collaboratively accomplish complex missions more efficiently compared to single large UAV systems. However, the unique features of FANETs such as high mobility, low node density, and high frequency of topology changes introduce challenges to the communication design, especially routing. Thus, the routing requirements of FANETs surpass those of MANETs or VANETs. In this paper, we present UAV classification, communication and application architectures, and an exhaustive survey of the existing routing protocols for flying ad hoc networks. Furthermore, we highlight the key features, strengths and weaknesses, and different mobility models used for the performance evaluation of the existing FANET routing protocols. More importantly, a proposed taxonomy and a review on the existing FANET routing protocols are presented. Finally, we highlight the existing challenges and open research issues.
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