A non-orthogonal multiple access (NOMA) inspired integrated sensing and communication (ISAC) system is investigated. A dual-functional base station (BS) serves multiple communication users while sensing multiple targets, by transmitting the non-orthogonal superposition of the communication and sensing signals. A NOMA inspired interference cancellation scheme is proposed, where part of the dedicated sensing signal is treated as the virtual communication signals to be mitigated at each communication user via successive interference cancellation (SIC). Based on this framework, the transmitted communication and sensing signals are jointly optimized to match the desired sensing beampattern, while satisfying the minimum rate requirement and the SIC condition at the communication users. Then, the formulated non-convex optimization problem is solved by invoking the successive convex approximation (SCA) to obtain a near-optimal solution. The numerical results show the proposed NOMA-inspired ISAC system can achieve better performance than the conventional ISAC system and comparable performance to the ideal ISAC system where all sensing interference is assumed to be removed unconditionally.
翻译:调查了非横向多重存取(NOMA)激励的综合遥感和通信系统(ISAC),通过传输通信和遥感信号的非横向叠加,为多个目标的多重通信用户提供了双功能基础站(BS),通过传输通信和遥感信号的非横向叠加,为多个通信用户提供了遥感服务。提出了NOMA激励干扰取消计划,其中将专用遥感信号的一部分作为每个通信用户通过连续取消干扰(SIC)来减轻的虚拟通信信号。根据这个框架,传输的通信和遥感信号被联合优化,以与理想的感应信号相匹配,同时满足最低速要求和通信用户的SIC条件。然后,通过援引连续的电离子线近似最佳的解决方案解决了已形成的非电离子优化问题。数字结果显示,拟议的诺MA激励的ISAC系统能够比常规ISAC系统取得更好的性能,并且与理想的ISAC系统相似的性能,假设所有感应无条件去除所有感应的ISAC系统。