Enhancing 5G Broadcast Services in Large-Scale IoV Networks Using Reliable RIS Relaying

IF 3.2 1区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Broadcasting Pub Date : 2024-08-23 DOI:10.1109/TBC.2024.3394293
Qian Huang;Xueguang Yuan;Xiaoyin Yi;Qingming Xie;Qin Jiang;Bingxin Wang
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Abstract

The advent of 5G technology and new energy radio communication systems heralds a significant shift in the landscape of automated driving. This paper focuses on the integration of 5G and broadcast services in the realm of new energy automatic assisted driving, emphasizing the importance of reliable, energy-efficient communication in the large-scale IoV. The enhanced capabilities of 5G enable improved vehicle battery endurance while safeguarding user data privacy and road traffic safety. We introduce RIS relay reflection as a novel approach to optimize non-line-of-sight links, presenting a RIS-assisted communication model tailored for 5G-enhanced large-scale IoV. The paper evaluates the trustworthiness of RIS relays using user behavior data, proposing a reliable and energy-efficient communication scheme that incorporates RIS security relay assistance. This scheme ensures the selection of trustworthy relays, synergizing the beam direction of transmitters and RISs for optimal 5G broadcast service delivery and OTA updates. Our approach promises to revolutionize communication in large-scale IoV systems, paving the way for a more connected and efficient future in automated vehicle networks.
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利用可靠的 RIS 中继增强大规模物联网网络中的 5G 广播服务
5G 技术和新能源无线电通信系统的出现预示着自动驾驶领域的重大变革。本文重点探讨了新能源自动辅助驾驶领域中 5G 与广播服务的整合,强调了可靠、节能的通信在大规模 IoV 中的重要性。5G 的增强功能可提高车辆电池的续航能力,同时保护用户数据隐私和道路交通安全。我们将 RIS 中继反射作为优化非视距链路的一种新方法,提出了一种专为 5G 增强型大规模物联网量身定制的 RIS 辅助通信模型。论文利用用户行为数据评估了 RIS 中继的可信度,提出了一种结合 RIS 安全中继辅助的可靠且节能的通信方案。该方案确保选择值得信赖的中继站,协同发射机和 RIS 的波束方向,以优化 5G 广播服务交付和 OTA 更新。我们的方法有望彻底改变大规模物联网系统中的通信,为自动驾驶汽车网络更互联、更高效的未来铺平道路。
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来源期刊
IEEE Transactions on Broadcasting
IEEE Transactions on Broadcasting 工程技术-电信学
CiteScore
9.40
自引率
31.10%
发文量
79
审稿时长
6-12 weeks
期刊介绍: The Society’s Field of Interest is “Devices, equipment, techniques and systems related to broadcast technology, including the production, distribution, transmission, and propagation aspects.” In addition to this formal FOI statement, which is used to provide guidance to the Publications Committee in the selection of content, the AdCom has further resolved that “broadcast systems includes all aspects of transmission, propagation, and reception.”
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Front Cover Table of Contents Table of Contents IEEE Transactions on Broadcasting Information for Authors IEEE Transactions on Broadcasting Information for Authors
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