物联网通信无人机:使用匹配游戏和网络切片进行波束选择

Salma Brihi, Anas Ghamizi, Karim Chakri
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引用次数: 0

摘要

在蜂窝通信网络中,研究人员正在努力改进网络通信并使其适应物联网等新技术的要求。下一代无线网络(5G)承诺提供低延迟、外围计算和无线电融合等新网络功能,为无处不在的连接世界铺平道路。在这种情况下,即使在恶劣的网络条件下,也要持续地、无处不在地提供必要的高质量服务和连接,任何网络故障都必须得到快速有效的管理。覆盖偏远地区的网络,在拥挤地区提供服务,或者在蜂窝基础设施受损(例如,物理灾难)的情况下保护网络,这些都是许多挑战。在本文中,我们讨论了飞行模式的架构和可能的应用,作为5G网络的一部分,在中继无人机(uav)作为小单元的程度上支持网络分裂和轻量级虚拟化。并提供5G航测结果,支持无人机在两种可能场景下使用的可行性验证,即通过支持博弈理论的算法,通过增加网络覆盖率,额外提高无人机相对于用户位置和流通的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UAV for IoT Communications: Beam Selection Using Matching Game and Network Slicing
In cellular communication networks, researchers are trying to improve network communication and adapt it to meet the requirements of new technologies such as the Internet of Things. The next generation of wireless networks (5G) promises new network features such as low latency, peripheral computing and radio convergence that will pave the way for a world that is ubiquitously connected. In this context and for the provision of the necessary high-quality services and connection, continuously and everywhere, even under poor network conditions, any network failures must be managed quickly and efficiently. Covering the network in remote areas, providing services in overcrowded areas, or safeguarding the network in the event of damage to the cellular infrastructure (for example, a physical disaster) are a number of challenges. In this paper we discuss the architecture and possible applications of flight modes as a part of a 5G network supporting network splitting and lightweight virtualization at the extent of relay Unmanned Aerial Vehicles (UAVs) as being small cells. It also provides 5G aerial measurement results to support the feasibility check of UAV use in two possible scenarios, namely improving the position of UAVs relative to the position and circulation of users (UEs) additionally because the increased network coverage through algorithms supported theory of games.
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