We consider a multi-user multiple-input single-output (MISO) communications system which is assisted by a hybrid active-passive reconfigurable intelligent surface (RIS). Unlike conventional passive RISs, hybrid RIS is equipped with a few active elements with the ability to reflect and amplify incident signals to significantly improve the system performance. Towards a fairness-oriented design, we maximize the minimum rate among all users through jointly optimizing the transmit beamforming vectors and RIS reflecting/amplifying coefficients. Combining tools from block coordinate ascent and successive convex approximation, the challenging nonconvex problem is efficiently solved by a low-complexity iterative algorithm. The numerical results show that a hybrid RIS with 4 active elements out of a total of 50 elements with a power budget of -1 dBm offers an improvement of up to 80% to the considered system, while that achieved by a fully passive RIS is only 27%.
翻译:我们认为多用户多投入单产出通信系统(MISO)是一个多用户多投入单产出通信系统,它得到一个混合式主动式被动重组智能表面(RIS)的辅助。与常规的被动式RIS不同的是,混合式RIS配备了几个能反映和扩展事件信号以显著改善系统性能的积极元素。为了实现公平性设计,我们通过联合优化传输波束矢量和RIS反映/增益系数,在所有用户中实现最低比率最大化。将区块坐标上升和接连对流近的工具结合起来,挑战性非convex问题通过低复杂性迭代算法得到有效解决。数字结果显示,在总共50个要素中,有4个活性元素,其功率预算为-1 dBm,能预算为-1 dBm,能将80%的速率提高到考虑的系统,而完全被动性RIS所实现的速率仅为27%。