论文标题
在移动网络中启用联合通信和雷达感测 - 一项调查
Enabling Joint Communication and Radar Sensing in Mobile Networks -- A Survey
论文作者
论文摘要
移动网络从仅通信网络发展到具有联合通信和雷达/无线电传感(JCAS)功能的网络,我们称为感知移动网络(PMN)。在PMN中,JCAS将传感纳入通信,共享大多数系统模块和相同的传输信号。预计PMN将提供无处不在的无线电传感平台,并启用大量新颖的智能应用程序,同时提供不受欢迎的通信。在本文中,我们通过为过去十年中主要开发的系统和技术提供了全面的调查,介绍了实现PMN的动机,方法,挑战和研究机会。首先,通过审查有关共存通信和雷达系统的工作,我们强调了它们在解决干扰问题上的限制,然后引入JCAS技术。然后,我们在移动网络上下文中设置JCA,并设想其潜在应用程序。我们继续简要审查三种类型的JCAS系统,特别关注它们在设计理念上的差异。然后,我们引入了PMN的框架,包括系统平台和基础架构,三种类型的感应操作以及可用于感应的信号。随后,我们讨论了所需的系统修改,以使人们能够感知当前仅通信基础架构。在PMN的背景下,我们审查了刺激研究问题和潜在解决方案,在九个主题下组织:性能界限,波形优化,天线阵列设计,混乱抑制,传感参数估计,传感歧义的分辨率,模式分析,在细胞拓扑下进行网络感应以及感应辅助的通信。我们通过列出上述主题的关键开放研究问题并分享了我们学到的一些教训,从而结束了本文。
Mobile network is evolving from a communication-only network towards one with joint communication and radar/radio sensing (JCAS) capabilities, that we call perceptive mobile network (PMN). In PMNs, JCAS integrates sensing into communications, sharing a majority of system modules and the same transmitted signals. The PMN is expected to provide a ubiquitous radio sensing platform and enable a vast number of novel smart applications, whilst providing non-compromised communications. In this paper, we present a broad picture of the motivation, methodologies, challenges, and research opportunities of realizing PMN, by providing a comprehensive survey for systems and technologies developed mainly in the last ten years. Beginning by reviewing the work on coexisting communication and radar systems, we highlight their limits on addressing the interference problem, and then introduce the JCAS technology. We then set up JCAS in the mobile network context and envisage its potential applications. We continue to provide a brief review of three types of JCAS systems, with particular attention to their differences in design philosophy. We then introduce a framework of PMN, including the system platform and infrastructure, three types of sensing operations, and signals usable for sensing. Subsequently, we discuss required system modifications to enable sensing on current communication-only infrastructure. Within the context of PMN, we review stimulating research problems and potential solutions, organized under nine topics: performance bounds, waveform optimization, antenna array design, clutter suppression, sensing parameter estimation, resolution of sensing ambiguity, pattern analysis, networked sensing under cellular topology, and sensing-assisted communications. We conclude the paper by listing key open research problems for the aforementioned topics and sharing some lessons that we have learned.