The full-duplex (FD) communication can achieve higher spectrum efficiency than conventional half-duplex (HD) communication; however, self-interference (SI) is the key hurdle. This paper is the first work to propose the intelligent Omni surface (IOS)-assisted FD multi-input single-output (MISO) FD communication systems to mitigate SI, which solves the frequency-selectivity issue. In particular, two types of IOS are proposed, energy splitting (ES)-IOS and mode switching (MS)-IOS. We aim to maximize data rate and minimize SI power by optimizing the beamforming vectors, amplitudes and phase shifts for the ES-IOS and the mode selection and phase shifts for the MS-IOS. However, the formulated problems are non-convex and challenging to tackle directly. Thus, we design alternative optimization algorithms to solve the problems iteratively. Specifically, the quadratic constraint quadratic programming (QCQP) is employed for the beamforming optimizations, amplitudes and phase shifts optimizations for the ES-IOS and phase shifts optimizations for the MS-IOS. Nevertheless, the binary variables of the MS-IOS render the mode selection optimization intractable, and then we resort to semidefinite relaxation (SDR) and Gaussian randomization procedure to solve it. Simulation results validate the proposed algorithms' efficacy and show the effectiveness of both the IOSs in mitigating SI compared to the case without an IOS.
翻译:完全翻版(DFD)通信可以实现比传统的半翻(HD)通信更高的频谱效率;然而,自我干预(SI)是关键障碍。本文件是首次提出智能Omni表面(IOS)协助的FD多投入单输出(MISO)FD通信系统以缓解SI,这解决了频率选择性问题。特别是,提出了两种IOS类型,即能源分离(ES)-IOS和模式转换(MS)-IOS。我们的目标是通过优化ES-IOS的成形矢量、振动和阶段转换(IS-IOS)以及MS-I的模式选择和阶段转换(MS-IS),将S-IS的升级(I)和升级(MS-IS)的升级(I)的升级(S-I)和升级(MS-S)的升级(S-I(I)的升级(I-I)程序,将SLO-S-S(S-S)的简化(IOS)和升级(SLI)的升级(I-SLI)和升级(S-S-S-SLI)的升级(SLI和升级)的简化(S-S-S-SLI和升级)程序,将S-S-SLI和升级(SLI)的简化的简化和升级(SLI)。