论文标题
IRDRC:一种智能的实时双功能雷达通信系统,用于汽车车辆
iRDRC: An Intelligent Real-time Dual-functional Radar-Communication System for Automotive Vehicles
论文作者
论文摘要
这封信介绍了一个智能的实时双功能雷达通信(IRDRC)系统,用于自动驾驶汽车(AVS)。该系统使AV能够同时执行雷达和数据通信功能,以最大程度地利用带宽利用,并显着提高安全性。特别是,数据通信功能允许AV传输数据,例如当前流量,到边缘计算系统,雷达功能用于增强可靠性并降低AV的碰撞风险,例如在恶劣天气条件下。 IRDRC的问题是决定何时使用通信模式或雷达模式来最大化数据吞吐量,同时鉴于周围环境的不确定性,在最小化意外事件的错过检测概率。为了解决问题,我们开发了一种深厚的加强学习算法,该算法使AV可以快速获得最佳策略,而无需任何有关环境的事先信息。仿真结果表明,所提出的方案在数据吞吐量,错过检测概率和收敛率方面优于基线方案。
This letter introduces an intelligent Real-time Dual-functional Radar-Communication (iRDRC) system for autonomous vehicles (AVs). This system enables an AV to perform both radar and data communications functions to maximize bandwidth utilization as well as significantly enhance safety. In particular, the data communications function allows the AV to transmit data, e.g., of current traffic, to edge computing systems and the radar function is used to enhance the reliability and reduce the collision risks of the AV, e.g., under bad weather conditions. The problem of the iRDRC is to decide when to use the communication mode or the radar mode to maximize the data throughput while minimizing the miss detection probability of unexpected events given the uncertainty of surrounding environment. To solve the problem, we develop a deep reinforcement learning algorithm that allows the AV to quickly obtain the optimal policy without requiring any prior information about the environment. Simulation results show that the proposed scheme outperforms baseline schemes in terms of data throughput, miss detection probability, and convergence rate.