To mitigate the radar and communication frequency overlapping caused by massive devices access, we propose a novel joint communication and sensing (JCS) system in this paper, where a micro base station (MiBS) can realize target sensing and cooperative communication simultaneously. Concretely, the MiBS, as the sensing equipment, can also serve as a full-duplex (FD) decode-and-forward (DF) relay to assist the end-to-end communication. To further improve the spectrum utilization, non-orthogonal multiple access (NOMA) is adopted such that the communication between the macro base station (MaBS) and the Internet-of-Things (IoT) devices. To facilitate the performance evaluation, the exact and asymptotic outage probabilities, ergodic rates, sensing probability of the system are characterized. Subsequently, two optimal power allocation (OPA) problems of maximizing the received signal-to-interference-plus-noise ratio of sensing signal and maximizing the sum rate for communication are designed that are solved by means of the Lagrangian method and function monotonicity. The simulation results demonstrate that: 1) the proposed JCS NOMA system can accomplish both communication enhancement and sensing function under the premise of the same power consumption as non-cooperative NOMA; 2) the proposed OPA schemes manifest superiorities over a random power allocation scheme.
翻译:为了减少大规模设备接入造成的雷达和通信频率重叠,我们提议本文件采用一个新的联合通信和遥感系统,使微型基地站(MIBS)能够同时实现目标感测和合作通信,具体地说,MABS作为遥感设备,也可以作为全解码和前向(DF)中继系统,协助端对端通信;为了进一步改善频谱利用,采用非横向多存取(NOMA),使宏观基地站(MABS)与互联网-Tings(IOT)设备之间的通信能够同时实现目标感测与合作通信;为了便利业绩评估,MABS作为遥感设备,也可以作为全解码和前向前传输(DF)中继器,协助终端至终端通信;为了进一步改善频谱利用、非横向多存取的多重存取(NOMA)信号和通信总速率(NOMA),设计了宏观基站站站站和互联网-TIT(IOT)装置之间的通信;为了便利性评估,精确和无线性失标的异常性异常性异常性异常性异常性异常性异常性,MS-MA系统的拟议升级性动力分配办法可以实现不高超度的NOMA系统。