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GeoUAVs: A new geocast routing protocol for fleet of UAVs

机译:GeoUAV:针对无人机机群的新的地理广播路由协议

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摘要

Routing in cooperative UAVs networks is a challenging task due to mobility of nodes, dynamically changing topology and three-dimensional (3D) movement. In this work, we study the fleet routing problem in FANET, which aims at delivering data to a specific group of mobile drones identified by their geographical location. Although many fleet routing protocols have been proposed, only partial inherent constraints of FANET (such as mobility, 3D movement and reliability) are taken into account. Therefore, we propose a new geocast routing protocol namely Geocast routing protocol for fleet of UAVs (GeoUAVs). This protocol aims at delivering information to a specific group of mobile UAVs identified by their geographical location. It takes into account the mobility of nodes, dynamic changing topology with 3D movement, and reliability. Simulations conducted in NS-3 simulator demonstrate that our proposal GeoUAVs outperforms AntHocNet and BeeAdHoc protocols by reducing the average delay by more than to 61% and increasing both the packet delivery ratio and throughput.
机译:由于节点的移动性,动态变化的拓扑结构和三维(3D)移动,在协作式无人机网络中进行路由是一项具有挑战性的任务。在这项工作中,我们研究了FANET中的机队路由问题,该问题旨在将数据传递到由其地理位置确定的一组特定的移动无人机。尽管已经提出了许多车队路由协议,但仅考虑了FANET的部分固有约束(例如移动性,3D移动和可靠性)。因此,我们提出了一种新的地理广播路由协议,即用于无人机机队的地理广播路由协议(GeoUAV)。该协议旨在将信息传递给通过其地理位置标识的一组特定的移动式无人机。它考虑了节点的移动性,具有3D移动的动态变化拓扑以及可靠性。在NS-3仿真器中进行的仿真表明,我们的建议GeoUAV通过将平均延迟降低超过61%并增加了数据包的传输率和吞吐量,从而优于AntHocNet和BeeAdHoc协议。

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