论文标题

在存在硬件障碍的情况下,RIS辅助安全多源通信系统的强大传输设计

Robust Transmission Design for RIS-assisted Secure Multiuser Communication Systems in the Presence of Hardware Impairments

论文作者

Peng, Zhangjie, Weng, Ruisong, Pan, Cunhua, Zhou, Gui, Di Renzo, Marco, Swindlehurst, A. Lee

论文摘要

本文研究了可重新配置的智能表面(RIS)辅助安全的多源通信系统,但受硬件损伤(HIS)的影响。我们共同优化了基站(BS)的波束形成向量以及RIS处的反射元件的相移,以最大化加权最低保密速率(WMSR),但在RIS处均受BS和单位模构约束的传输功率约束。为了解决公式的优化问题,我们首先将其分解为两个可牵引的子问题,然后使用块坐标下降(BCD)方法交替优化子问题。提出了两种不同的方法来解决两个获得的子问题。第一种方法将每个子问题转换为二阶锥编程(SOCP)问题,可以使用CVX直接解决。第二种方法利用少量化最大化(MM)算法。具体而言,我们首先得出一个凹接近似函数,该函数是原始目标函数的下限,然后将两个子问题转换为带有封闭形式解决方案的两个简单的替代问题。模拟结果验证了现有的非重塑设计所提出的鲁棒传输方法的性能提高。另外,显示MM算法的复杂性比基于SOCP的算法要低得多。

This paper investigates reconfigurable intelligent surface (RIS)-assisted secure multiuser communication systems subject to hardware impairments (HIs). We jointly optimize the beamforming vectors at the base station (BS) and the phase shifts of the reflecting elements at the RIS so as to maximize the weighted minimum secrecy rate (WMSR), subject to both transmission power constraints at the BS and unit-modulus constraints at the RIS. To address the formulated optimization problem, we first decouple it into two tractable subproblems and then use the block coordinate descent (BCD) method to alternately optimize the subproblems. Two different methods are proposed to solve the two obtained subproblems. The first method transforms each subproblem into a second order cone programming (SOCP) problem, which can be directly solved using CVX. The second method leverages the Minorization- Maximization (MM) algorithm. Specifically, we first derive a concave approximation function, which is a lower bound of the original objective function, and then the two subproblems are transformed into two simple surrogate problems with closedform solutions. Simulation results verify the performance gains of the proposed robust transmission method over existing nonrobust designs. In addition, the MM algorithm is shown to have much lower complexity than the SOCP-based algorithm.

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