论文标题
智能Omni表面辅助无线通信系统的联合波束形成设计
Joint Beamforming Design for Intelligent Omni Surface Assisted Wireless Communication Systems
论文作者
论文摘要
智能反射表面(IRS)被广泛认为是由于其动态控制反射电磁波(EM)波的相移以构建有利的传播环境的能力,因此被广泛认为是未来无线通信网络的关键启用技术之一。尽管IRS仅关注信号反射,但最近出现的智能Omni-Surface(IOS)创新的概念可以提供操纵反射和传输信号的双重功能。因此,iOS是实现无处不在的无线通信的新范式。在本文中,我们考虑了iOsassist的多用户多输入单输出(MU-MISO)系统,其中iOS利用其反射性和传播性能来增强MU-MISO传输。功率最小化和总和率最大化问题均通过利用二阶锥度编程(SOCP),Riemannian歧管,加权最小均方根误差(WMMSE)和块坐标下降(BCD)方法来解决。仿真结果验证了无线系统iOS的进步,并说明了我们提出的关节发射光束形成,反射和传输相移以及iOS能量分割设计算法的显着性能提高。与常规IRS相比,iOS可以显着扩大通信覆盖范围,增强接收信号的强度并提高通信链接的质量。
Intelligent reflecting surface (IRS) has been widely considered as one of the key enabling techniques for future wireless communication networks owing to its ability of dynamically controlling the phase shift of reflected electromagnetic (EM) waves to construct a favorable propagation environment. While IRS only focuses on signal reflection, the recently emerged innovative concept of intelligent omni-surface (IOS) can provide the dual functionality of manipulating reflecting and transmitting signals. Thus, IOS is a new paradigm for achieving ubiquitous wireless communications. In this paper, we consider an IOSassisted multi-user multi-input single-output (MU-MISO) system where the IOS utilizes its reflective and transmissive properties to enhance the MU-MISO transmission. Both power minimization and sum-rate maximization problems are solved by exploiting the second-order cone programming (SOCP), Riemannian manifold, weighted minimum mean square error (WMMSE), and block coordinate descent (BCD) methods. Simulation results verify the advancements of the IOS for wireless systems and illustrate the significant performance improvement of our proposed joint transmit beamforming, reflecting and transmitting phase-shift, and IOS energy division design algorithms. Compared with conventional IRS, IOS can significantly extend the communication coverage, enhance the strength of received signals, and improve the quality of communication links.