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Radar-Assisted Predictive Beamforming for Vehicular Links: Communication Served by Sensing

机译:用于车辆链路的雷达辅助预测波束成形:传感服务提供的通信

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In vehicular networks of the future, sensing and communication functionalities will be intertwined. In this article, we investigate a radar-assisted predictive beamforming design for vehicle-to-infrastructure (V2I) communication by exploiting the dual-functional radar-communication (DFRC) technique. Aiming for realizing joint sensing and communication functionalities at road side units (RSUs), we present a novel extended Kalman filtering (EKF) framework to track and predict kinematic parameters of each vehicle. By exploiting the radar functionality of the RSU we show that the communication beam tracking overheads can be drastically reduced. To improve the sensing accuracy while guaranteeing the downlink communication sum-rate, we further propose a power allocation scheme for multiple vehicles. Numerical results have shown that the proposed DFRC based beam tracking approach significantly outperforms the communication-only feedback based technique in the tracking performance. Furthermore, the designed power allocation method is able to achieve a favorable performance trade-off between sensing and communication.
机译:在未来的车辆网络中,传感和通信功能将被交织在一起。在本文中,我们通过利用双功能雷达通信(DFRC)技术来研究用于基于车辆到基础设施(V2I)通信的雷达辅助预测波束形成设计。旨在实现路边单元(RSUS)的联合传感和通信功能,我们提出了一种新的扩展卡尔曼滤波(EKF)框架,用于跟踪和预测每个车辆的运动学参数。通过利用RSU的雷达功能,我们示出了通信波束跟踪开销可以大幅减少。为了在保证下行链路通信总和率的同时提高感测精度,我们进一步提出了用于多车辆的功率分配方案。数值结果表明,所提出的基于DFRC的波束跟踪方法显着优于基于对跟踪性能的通信反馈的技术。此外,设计的功率分配方法能够在感测和通信之间实现有利的性能权衡。

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