下一代无人机卫星通信:人工智能创新和未来展望

IF 4.8 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Sherief Hashima;Ahmad Gendia;Kohei Hatano;Osamu Muta;Mostafa S. Nada;Ehab Mahmoud Mohamed
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引用次数: 0

摘要

第六代(6G)网络与无人机(uav)和卫星的融合,将为无线通信领域带来重大改进,为确保全面全球连接的统一、不间断的天空-空-地-海网络铺平道路。这一变革范例的核心是人工智能(AI),它通过增强决策自主权、实现实时数据处理、优化网络性能和覆盖范围,推动了各个领域的创新。本调查报告探讨了用于6G应用的人工智能无人机卫星通信,重点关注其挑战、潜力和未来。这种新系统结合了6G网络、无人机(先进无人机)和卫星的优势。它为精准农业、灾害管理、增强电信服务和遥感开辟了新的可能性。尽管前景光明,但该领域面临着复杂的挑战。其中包括频谱管理、安全风险、监管障碍以及无缝集成人工智能操作。本文全面分析了这些挑战,提供了创新的解决方案,并概述了未来的研究方向,以解锁支持6g的无人机卫星通信的完整功能。此外,它还包括一个案例研究,展示了多武装土匪(MAB)算法在优化无人机-低地球轨道(LEO)卫星通信场景的资源分配和决策过程中的有效性,展示了网络性能的显着改进。这项工作为新一代超连接、数据驱动的应用奠定了基础,通过解决这些关键问题,这些应用将重新定义全球连接和技术进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Next-Gen UAV-Satellite Communications: AI Innovations and Future Prospects
The convergence of sixth-generation (6G) networks with unmanned aerial vehicles (UAVs) and satellites is poised to introduce substantial improvements to the landscape of wireless communication, paving the way for a unified and uninterrupted space-air-ground-sea network that ensures comprehensive global connectivity. At the heart of this transformative paradigm lies artificial intelligence (AI), which drives innovation across diverse sectors by enhancing decision-making autonomy, enabling real-time data processing, and optimizing network performance and coverage. This survey paper explores AI-enabled UAV-satellite communications for 6G applications, focusing on its challenges, potential, and future. This new system combines the strengths of 6G networks, UAVs (advanced drones), and satellites. It opens up new possibilities in precision agriculture, disaster management, enhanced telecommunication services, and remote sensing. Despite its promise, this field faces complex challenges. These include spectrum management, security risks, regulatory barriers, and integrating AI operations seamlessly. This paper comprehensively analyzes these challenges, offering innovative solutions and outlining future research directions to unlock the complete capabilities of 6G-enabled UAV-satellite communications. Furthermore, it includes a case study demonstrating the effectiveness of multi-armed bandit (MAB) algorithms in optimizing resource allocation and decision-making processes for UAV-low Earth orbit (LEO) satellite communication scenarios, showcasing significant improvements in network performance. This work lays the foundation for a new generation of ultra-connected, data-driven applications that will redefine global connectivity and technological advancement by addressing these critical aspects.
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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
25
审稿时长
10 weeks
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