The joint communication and sensing (JCS) system can provide higher spectrum efficiency and load-saving for 6G machine-type communication (MTC) applications by merging necessary communication and sensing abilities with unified spectrum and transceivers. In order to suppress the mutual interference between the communication and radar sensing signals to improve the communication reliability and radar sensing accuracy, we propose a novel code-division orthogonal frequency division multiplex (CD-OFDM) JCS MTC system, where MTC users can simultaneously and continuously conduct communication and sensing with each other. {\color{black} We propose a novel CD-OFDM JCS signal and corresponding successive-interference-cancellation (SIC) based signal processing technique that obtains code-division multiplex (CDM) gain, which is compatible with the prevalent orthogonal frequency division multiplex (OFDM) communication system.} To model the unified JCS signal transmission and reception process, we propose a novel unified JCS channel model. Finally, the simulation and numerical results are shown to verify the feasibility of the CD-OFDM JCS MTC system {\color{black} and the error propagation performance}. We show that the CD-OFDM JCS MTC system can achieve not only more reliable communication but also comparably robust radar sensing compared with the precedent OFDM JCS system, especially in low signal-to-interference-and-noise ratio (SINR) regime.
翻译:为了提高 6G 机器类型通信 (MTC) 应用的频谱利用率和负载降低,合并必要的通信和感知能力与统一的频谱和收发器,联合通信和感知 (JCS) 系统可以提供更高的频谱效率。为了抑制通信和雷达感知信号之间的相互干扰,以提高通信可靠性和雷达感知精度,我们提出了一种新颖的CD-OFDM JCS MTC 系统,其中 MTC 用户可以同时持续地彼此进行通信和感知。我们提出了一种新颖的CD-OFDM JCS 信号和相应的连续干扰消除 (SIC) 信号处理技术,它获得了码分复用 (CDM) 增益,与普及的正交频分复用(OFDM) 通信系统兼容。为了模拟统一的JCS信号传输和接收过程,我们提出了一种新的统一JCS信道模型。最后,通过模拟和数值结果来验证CD-OFDM JCS MTC系统以及误码传输性能的可行性。我们表明,与先前的OFDM JCS系统相比,CD-OFDM JCS MTC系统不仅可以实现更可靠的通信,而且在低信干比 (SINR) 区间尤其是在雷达感知方面也具有相当的鲁棒性。