论文标题
星空辅助全双工系统的资源分配
Resource Allocation of STAR-RIS Assisted Full-Duplex Systems
论文作者
论文摘要
精心设计的同时传输和反映RI(星形)将半空间覆盖范围扩展到全空间覆盖范围,侵蚀了无线通信环境,使其聪明且可重新配置。在本文中,我们调查了星际 - 瑞斯如何影响全双工用户的全双工通信系统的性能,其中基站(BS)和上行链路用户会受到最大的传输功率约束。首先,加权总和率(WSR)是系统性能度量标准。然后,我们将资源分配设计制定为等效加权的最小均方纠错形式,然后将其转换为多个凸子问题,以最大化WSR作为优化问题,从而共同优化了Beborming和BS在BS上的组合矢量,即优带用户的转移功率和相位移位的转移。尽管WSR优化是非凸的,但提出了有效的迭代交替程序来实现优化问题的亚最佳解决方案。其次,通过连续的凸近似技术优化了星际 - 瑞斯的相移。最后,提供了数值结果来解释星际瑞士如何通过全双工用户的存在来改善性能指标。
Well-designed simultaneously transmitting and reflecting RIS (STAR-RIS), which extends the half-space coverage to full-space coverage, incurs wireless communication environments to be smart and reconfigurable. In this paper, we survey how STAR-RIS affects the performance of full-duplex communication systems with the presence of full-duplex users, wherein the base station (BS) and the uplink users are subject to maximum transmission power constraints. Firstly, the weighted sum-rate (WSR) is derived as a system performance metric. Then, we formulate the resource allocation design into an equivalent weighted minimum mean-square-error form and then transform it into several convex sub-problems to maximize the WSR as an optimization problem which jointly optimizes the beamforming and the combining vectors at the BS, the transmit powers of the uplink users, and phase shifts of STAR-RIS. Although the WSR optimization is non-convex, an efficient iterative alternating procedure is proposed to achieve a sub-optimal solution for the optimization problem. Secondly, the STAR-RIS's phase shifts are optimized via the successive convex approximation technique. Finally, numerical results are provided to explain how STAR-RIS improves the performance metric with the presence of full-duplex users.