论文标题
迈向6G-V2X:超级可靠和低延迟自动驾驶的RF-VLC聚合
Towards 6G-V2X: Aggregated RF-VLC for Ultra-Reliable and Low-Latency Autonomous Driving
论文作者
论文摘要
我们目睹了向新时代的过渡,在该时代,无人驾驶汽车将普遍连接,以极大地提高安全性,交通效率和旅行体验。通过建立新兴的第六代(6G)无线网络,将使一套多样化的高级车辆用例(包括连接的自动驾驶汽车)成为可能。在许多6G无线技术中,本文的主要目标是通过研究干扰以及各种气象学现象的影响,介绍车辆可见光通信(V VLC)和车辆射频(V RF)通信系统的混合融合的潜在好处。雨,雾和干雪。特别是,我们表明,无论有任何气象影响,正确配置的链接凝聚的混合V-VLC/V-RF系统都能够满足严格的超高可靠性(> 99.999%)和超低潜伏期(<3 ms)的要求,这使其成为6G车辆对every-Everything(V2X)通信的有前途的候选人。为了刺激混合RF-VLC V2X空间中未来的研究,我们还强调了潜在的挑战和研究方向。
We are witnessing a transition to a new era where driverless cars will be pervasively connected to deliver significantly improved safety, traffic efficiency, and travel experiences. A diverse set of advanced vehicular use cases including connected autonomous vehicles will be made possible by building upon the emerging sixth-generation (6G) wireless networks. Among many 6G wireless technologies, the principal objective of this paper is to introduce the potential benefits of the hybrid integration of Vehicular Visible Light Communication (V VLC) and Vehicular Radio Frequency (V RF) communication systems by studying the impact of interference as well as various meteorological phenomenon viz. rain, fog and dry snow. In particular, we show that regardless of any meteorological impact, a properly configured link-aggregated hybrid V-VLC/V-RF system is capable of meeting stringent ultra high reliability (>99.999%) and ultra-low latency (<3 ms) requirements, making it a promising candidate for 6G Vehicle-to-Everything (V2X) Communications. To stimulate future research in the hybrid RF-VLC V2X space, we also highlight the potential challenges and research directions.