This paper investigates a multi-pair device-to-device (D2D) communication system aided by an active reconfigurable intelligent surface (RIS) with phase noise and direct link. The approximate closed-form expression of the ergodic sum rate is derived over spatially correlated Rician fading channels with statistical channel state information (CSI). When the Rician factors go to infinity, the asymptotic expressions of the ergodic sum rates are presented to give insights in poor scattering environment. The power scaling law for the special case of a single D2D pair is presented without phase noise under uncorrelated Rician fading condition. Then, to solve the ergodic sum rate maximization problem, a method based on genetic algorithm (GA) is proposed for joint power control and discrete phase shifts optimization. Simulation results verify the accuracy of our derivations, and also show that the active RIS outperforms the passive RIS.
翻译:本文对多孔设备到设备( D2D) 通信系统进行了调查, 其辅助系统是一个动态可重新配置的智能表面(RIS), 具有相位噪音和直接链接。 ergodic总和率的近似封闭式表达方式, 是在与统计频道国家信息( CSI) 有着空间联系的里氏淡化渠道上产生的。 当里氏系数到达无限度时, ergodic总和率的无症状表达方式将显示在差散环境中的洞察力。 单一的D2D对特殊情况下的功率缩放法在与风化不相干的状态下出现。 然后, 为了解决电离子相和率最大化问题, 提议了基于遗传算法( GA) 的方法, 用于联合电源控制和离子相位移动优化。 模拟结果验证了我们出法的准确性, 并显示主动的RIS 超越了被动RIS 。