Towards 6G Satellite–Terrestrial Networks: Analysis of Air Mobility Operations

Krishnakanth Mohanta, Saba Al-Rubaye
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Abstract

This paper presents an analytical exploration of sixth-generation (6G) satellite–terrestrial integrated networks, focusing specifically on their applications within air mobility operations, such as those involving unmanned aerial vehicles (UAVs). As the integration of satellite and terrestrial networks promises to revolutionize mobile communication by extending coverage and enhancing connectivity, this study delves into two critical aspects: link budget analysis and handover and mobility analysis for UAVs. The link budget analysis assesses the communication requirements necessary to ensure robust and consistent connectivity between satellites and UAVs, accounting for factors such as path loss, antenna gains, and power transmission. Meanwhile, the handover and mobility analysis investigates the challenges and solutions associated with UAVs transitioning between different network nodes and layers in a dynamic aerial environment. This paper utilizes theoretical models and simulations to provide insights into the design and optimization of these networks, aiming to enhance the reliability and efficiency of UAV operations in the context of the emerging 6G landscape. The findings propose not only technological advancements in network architecture but also practical guidelines for the deployment of UAVs in complex environments, marking a significant step toward the realization of a fully integrated, satellite-terrestrial ecosystem.
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迈向 6G 卫星-地面网络:空中机动行动分析
本文对第六代(6G)卫星-地面集成网络进行了分析探索,特别关注其在空中移动业务中的应用,如涉及无人机(UAV)的业务。由于卫星与地面网络的集成有望通过扩大覆盖范围和增强连接性来彻底改变移动通信,因此本研究深入探讨了两个关键方面:链路预算分析和无人机的切换与移动性分析。链路预算分析评估了确保卫星与无人机之间稳健一致的连接所需的通信要求,并考虑了路径损耗、天线增益和功率传输等因素。同时,切换和移动性分析研究了无人机在动态空中环境中不同网络节点和层之间切换所面临的挑战和解决方案。本文利用理论模型和模拟来深入分析这些网络的设计和优化,旨在提高无人机在新兴 6G 环境下运行的可靠性和效率。研究结果不仅提出了网络架构的技术进步,还提出了在复杂环境中部署无人机的实用指南,标志着向实现完全集成的卫星-地面生态系统迈出了重要一步。
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