论文标题
MMWave双功能雷达通信系统中的混合波束形成:模型,技术和挑战
Hybrid Beamforming in mmWave Dual-Function Radar-Communication Systems: Models, Technologies, and Challenges
论文作者
论文摘要
作为超过5G(B5G)和6G的有前途的技术,双功能雷达通信(DFRC)旨在确保具有统一信号方案的单个集成平台上的雷达传感和通信。为了实现准确的感应和可靠的沟通,预计将在此类系统中实施大规模的阵列,这将带来硬件成本和功耗的突出问题。为了解决这些问题,Hybrid Beam Forming(HBF)除了成功地在通信系统中部署之外,在新兴DFRC方面可能是一种有希望的方法。在本文中,我们以独立的方式研究了DFRC系统上HBF技术的开发。具体而言,我们首先介绍了基于HBF的DFRC系统的基础知识,在该系统中,系统模型和不同的接收模式以重点进行讨论。然后,我们说明了相应的设计原理,这些原理从性能指标和优化公式到设计方法和我们的初步结果。最后,简单地讨论了潜在的扩展和关键研究机会,例如与可重构智能表面的结合。
As a promising technology in beyond-5G (B5G) and 6G, dual-function radar-communication (DFRC) aims to ensure both radar sensing and communication on a single integrated platform with unified signaling schemes. To achieve accurate sensing and reliable communication, large-scale arrays are anticipated to be implemented in such systems, which brings out the prominent issues on hardware cost and power consumption. To address these issues, hybrid beamforming (HBF), beyond its successful deployment in communication-only systems, could be a promising approach in the emerging DFRC ones. In this article, we investigate the development of the HBF techniques on the DFRC system in a self-contained manner. Specifically, we first introduce the basics of the HBF based DFRC system, where the system model and different receive modes are discussed with focus. Then we illustrate the corresponding design principles, which span from the performance metrics and optimization formulations to the design approaches and our preliminary results. Finally, potential extension and key research opportunities, such as the combination with the reconfigurable intelligent surface, are discussed concisely.