无人机群的高效组播路由协议

Youssra Cheriguene, Soumia Djellikh, Fatima Zohra Bousbaa, N. Lagraa, Abderrahmane Lakas, Kerrache Chaker Abdelaziz, Abdou el Karim Tahari
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引用次数: 13

摘要

部署一群用于执行分布式任务的协作无人机应用程序已经引起了学术界和工业界研究人员的关注。使用一组无人机代替一架无人机提供了许多优点,如扩展任务覆盖范围,提供可靠的自组织网络服务,并增强服务性能,仅举几例。然而,由于蜂群拓扑的高度动态性,大量无人机之间的协调对传统的无人机间通信协议提出了新的挑战。因此,需要设计新的网络协议,以有效地支持在各种环境下协调群导航的快节奏和实时性要求。本文提出了一种适用于无人机编队飞行的群节能多播路由协议SEMRP。SEMRP的主要目的是促进无人机之间的控制和信息传递,同时最小化无人机之间的数据包丢失、数据包重传和端到端延迟。在本研究中,我们展示了SEMRP如何通过考虑各种服务质量参数(如网络吞吐量、无人机机动性和能源效率)来实现这些目标,以确保向无人机群的所有成员及时准确地传递信息。使用NS-2进行的模拟结果表明,与SP-GMRF协议相比,我们提出的两个版本(SEMRP-v1和SEMRP-v2)在减少总发射能量(至少减少10 dBm),优化端到端延迟44%以及将分组传输率提高22%以上方面的效率更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEMRP: an Energy-efficient Multicast Routing Protocol for UAV Swarms
The deployment of a swarm of cooperative UAVs applications for the execution of distributed tasks has increased attention from both academia and industry researchers. The use of a group of UAVs instead of one single UAV offers many advantages like extending the mission coverage, providing a reliable ad-hoc networks services, and enhancing the service performance, to name a few. However, due to the highly dynamic nature of the swarm topology, the coordination of a large number of UAVs poses new challenges to traditional inter-UAV communication protocols. Therefore, there is a need for the design of new networking protocols that can efficiently support the fast-pace and real-time requirements of a coordinated swarm navigation in various environments. In this paper, we propose SEMRP a Swarm energy-efficient multicast routing protocol for UAVs flying in group formations. The main purpose of SEMRP is to facilitate the control and information delivery between UAVs while minimizing inter-UAV packet loss, packet re-transmission, and end-to-end delay. In this study we show how SEMRP achieves these objectives by taking into account various Quality-of-Service parameters like the network throughput, the UAVs mobility, and energy efficiency to ensure a timely and accurate information delivery to all members of a UAV swarm. The results of the conducted simulation using NS-2 advocate for the efficiency of our proposal through its to two presented versions (SEMRP-v1 and SEMRP-v2) in term of reducing the total emission energy (at least by 10 dBm), optimizing the End-to-End Delay by 44%, and increasing the packet delivery ratio by more than to 22% compared to SP-GMRF protocol.
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