LiDAR Aided Future Beam Prediction in Real-World Millimeter Wave V2I Communications
Abstract
This paper presents the first large-scale real-world evaluation for using LiDAR data to guide the mmWave beam prediction task. A machine learning (ML) model that leverages the LiDAR sensory data to predict the current and future beams was developed. Based on the large-scale real-world dataset, DeepSense 6G, this model was evaluated in a vehicle-to-infrastructure communication scenario with highly-mobile vehicles. The experimental results show that the developed LiDAR-aided beam prediction and tracking model can predict the optimal beam in of the cases and with more than reduction in the beam training overhead. The LiDAR-aided beam tracking achieves comparable accuracy performance to a baseline solution that has perfect knowledge of the previous optimal beams, without requiring any knowledge about the previous optimal beam information and without any need for beam calibration. This highlights a promising solution for the critical beam alignment challenges in mmWave and terahertz communication systems.
Keywords
Cite
@article{arxiv.2203.05548,
title = {LiDAR Aided Future Beam Prediction in Real-World Millimeter Wave V2I Communications},
author = {Shuaifeng Jiang and Gouranga Charan and Ahmed Alkhateeb},
journal= {arXiv preprint arXiv:2203.05548},
year = {2022}
}
Comments
The dataset and code files will be available on the DeepSense 6G website https://deepsense6g.net/