In order to further exploit the potential of joint multi-antenna radar-communication (RadCom) system, we propose two transmission techniques respectively based on separated and shared antenna deployments. Both techniques are designed to maximize the weighted sum rate (WSR) and the probing power at target's location under average power constraints at the antennas such that the system can simultaneously communicate with downlink users and detect the target within the same frequency band. Based on a Weighted Minimized Mean Square Errors (WMMSE) method, the separated deployment transmission is designed via semidefinite programming (SDP) while the shared deployment problem is solved by majorization-minimization (MM) algorithm. Numerical results show that the shared deployment outperforms the separated deployment in radar beamforming. The tradeoffs between WSR and probing power at target are compared among both proposed transmissions and two practically simpler dual-function implementations i.e., time division and frequency division. Results show that although the separated deployment enables spectrum sharing, it experiences a performance loss compared with frequency division, while the shared deployment outperforms both and surpasses time division in certain conditions.
翻译:为了进一步挖掘多ANTAND雷达通信(RadCom)联合系统的潜力,我们分别根据分离和共用天线部署情况提出两种传送技术,两种技术的设计都是为了在天线平均功率限制下,使目标地点的加权总和率(WSR)和探测力最大化,使系统能够同时与下行用户通信,在同一频率段内探测目标。根据“轻度最小平均平方差错误”(WMMSE)方法,分离部署传输是通过半确定性编程(SDP)设计的,而共同部署问题则通过主要-最小化算法(MMM)解决。数字结果显示,共享部署比雷达波束的分散部署效果要好。WSR与目标预测力之间的权衡在拟议的传输和两个几乎更简单的双重功能执行(即时间划分和频率划分)之间进行了比较。结果显示,虽然分离的部署能够使频谱共享,但与频率区分相较,但相较之,在特定条件下,共同部署超出和超过时间段。