This paper aims to explore the feasibility of the spectrum sharing between the communication and radar system. We investigate the full-duplex (FD) joint radar and communication multi-antenna system in which a node labeled ComRad with a dual communication and radar capability is communicating with a downlink and an uplink users, as well as detecting the target of interest simultaneously. Considering a full interference scenario and imperfect channel state information (CSI), the fundamental performance limits of the FD JRC system are analyzed. In particular, we first obtain the downlink rate when the radar signals act as interference. Then, viewing the uplink channel and radar return channel as a multiple access channel, we propose an alternative successive interference cancellation scheme, based on which the achievable uplink communication rate is obtained. For the radar operation, we first derive the general expression of the estimation rate, which quantifies how much information is obtained about the target in terms of the direction, the range and the velocity. Considering the uniform linear antenna array and linear frequency modulated radar signals, we further obtain the exact closed-form estimation rate. Numerical simulations reveal that the joint manner of the communication and radar operations achieves larger rate regions compared to that of working independently.
翻译:本文旨在探讨通信和雷达系统之间共享频谱的可行性。我们调查了全双面(FD)联合雷达和通信多ANTANNA系统,在这个系统中,标有双重通信和雷达能力的节点ComRad正与下行和上上行用户沟通,同时探测感兴趣的目标。考虑到全面的干扰情景和不完善的频道状态信息(CSI),对FD JRC系统的基本性能限制进行了分析。特别是,当雷达信号起到干扰作用时,我们首先获得下行链路率。然后,将上行链路和雷达返回通道视为一个多重接入通道,我们提出一个替代的连续取消干扰计划,以此实现可实现的上行链路通信率。对于雷达操作,我们首先得出估计率的一般表示,该估计率在方向、范围及速度方面对目标所获得的信息量进行了微量的量化。考虑到统一的线性天线阵列和线性频率调整的雷达信号,我们进一步获得精确的封闭式估计率。数字模拟显示通信和雷达运行的联合方式与独立区域相比达到较大率。