In this paper, we investigate the energy efficiency (EE) problem under reconfigurable intelligent surface (RIS)-aided secure cell-free networks, where multiple legitimate users and eavesdroppers (Eves) exist. We formulate a max-min secure EE optimization problem by jointly designing the distributed active beamforming and artificial noise at base stations as well as the passive beamforming at RISs under practical constraints. To deal with it, we first divide the original optimization problem into two sub-ones, and then propose an iterative optimization algorithm to solve each sub-problem based on the fractional programming, constrained convex-convex procedure (CCCP) and semi-definite programming (SDP) techniques. After that, these two sub-problems are alternatively solved until convergence, and the final solutions are obtained. Next, we extend to the imperfect channel state information of the Eves' links, and investigate the robust SEE beamforming optimization problem by bringing the outage probability constraints. Based on this, we first transform the uncertain outage probability constraints into the certain ones by the bernstein-type inequality and sphere boundary techniques, and then propose an alternatively iterative algorithm to obtain the solutions of the original problem based on the S-procedure, successive convex approximation, CCCP and SDP techniques. Finally, the simulation results are conducted to show the effectiveness of the proposed schemes.
翻译:在本文中,我们调查在可重新配置智能表面(RIS)辅助的安全无细胞网络下能源效率问题(EEE),在这些网络中,存在多个合法用户和窃听器(Eves),我们通过在基地站联合设计分布式主动波束成形和人工噪音,以及根据实际限制条件在RIS中被动波束化。为了解决这个问题,我们首先将最初的优化问题分为两个子节点,然后提出一个迭代优化算法,以解决每一个次级问题,其依据是分数编程、受限制的convex-convex程序(CCCP)和半确定性程序(SDP)技术。之后,这两个子节点在基地站点联合设计分布式主动波束和人工噪声以及最后解决方案得到实现之前,可以解决最大程度的 Evees 链接的频道状态信息不完善,然后通过引入超值概率限制来调查强的优化问题。 在此基础上,我们首先将不确定的超概率限制转化为某些次等值程序,然后通过S-commal-comalalal 战略, 展示了S-ral-ralalal-traal-tradal-traal-laction-laction-laction-lades的S-rod the the roducal-rocal-rocal-roducal-roducal-stal-stal-st-st-stal-lautal-stal-st-st-st-stal-st-st-st-st-st-st-st-sl-sl) roc-smoltrac-st-st-stal-st-stal-rogleglegleglegleglection-s-s-sal-st-stal-stal-stal-stal-sal-sal-s-sal-sl-sal-sal-sal-sal-sl-sl-sl-sal-sal-sl-s-s-l-sl-s-s-s-s-s-s-s-s-s-s-sl-sl-sl-sl-sl-l-l-s-s-sl-l-l-