With the increasing number of wireless communication systems and the demand for bandwidth, the wireless medium has become a congested and contested environment. Operating under such an environment brings several challenges, especially for military communication systems, which need to guarantee reliable communication while avoiding interfering with other friendly or neutral systems and denying the enemy systems of service. In this work, we investigate a novel application of Rate-Splitting Multiple Access(RSMA) for joint communications and jamming with a Multi-Carrier(MC) waveform in a multiantenna Cognitive Radio(CR) system. RSMA is a robust multiple access scheme for downlink multi-antenna wireless networks. RSMA relies on multi-antenna Rate-Splitting (RS) at the transmitter and Successive Interference Cancellation (SIC) at the receivers. Our aim is to simultaneously communicate with Secondary Users(SUs) and jam Adversarial Users(AUs) to disrupt their communications while limiting the interference to Primary Users(PUs) in a setting where all users perform broadband communications by MC waveforms in their respective networks. We consider the practical setting of imperfect CSI at transmitter(CSIT) for the SUs and PUs, and statistical CSIT for AUs. We formulate a problem to obtain optimal precoders which maximize the mutual information under interference and jamming power constraints. We propose an Alternating Optimization-Alternating Direction Method of Multipliers(AOADMM) based algorithm for solving the resulting non-convex problem. We perform an analysis based on Karush-Kuhn-Tucker conditions to determine the optimal jamming and interference power thresholds that guarantee the feasibility of problem and propose a practical algorithm to calculate the interference power threshold. By simulations, we show that RSMA achieves a higher sum-rate than Space Division Multiple Access(SDMA).
翻译:随着无线通信系统数量的增加和对带宽的需求,无线媒体已成为一个凝聚和有争议的环境。在这种环境下运行带来若干挑战,特别是军事通信系统,这些系统需要保证可靠的通信,同时避免干扰其他友好或中性系统,并拒绝敌方服务系统。在这项工作中,我们调查了一种新型的应用,即使用超速多光速多存(RSMA)系统进行联合通信和干扰多轨联运(MC)的波形系统。RSMA是一个强有力的多端连接多端无线网络的多重接入机制。RSMA依靠多层安纳调频调控(RS)在发报机和成功互换互换系统(SIC)进行多端通信,我们的目标是同时与二级用户(SUS)通信和Aversari用户(AURS)进行通信问题联系,同时限制主要用户(PUSD)在多个网络中通过多端波变系统进行宽带通信的干扰。我们考虑在SUSI上进行不完善的超端电流流流数据分析,在SALIS上提出一个基于SUALDAVAF的智能的智能智能智能智能智能智能智能智能智能智能变压变压。