Unmanned Aerial Vehicles (UAV)-enabled communication is a promising solution for secure air-to-ground (A2G) networks due to the additional secure degrees of freedom afforded by mobility. However, the jittering characteristics caused by the random airflow and the body vibration of the UAV itself have a non-negligible impact on the performance of UAV communication. Considering the impact of UAV jittering, this paper propose a robust and secure transmission design assisted by an novel active intelligent reflecting surface (IRS),where the reflecting elements in IRS not only adjust the phase shift but also amplify the amplitude of signals. Specifically, under the worst-case secrecy rate constraints, we aim to minimize the transmission power by the robust joint design of active IRS's reflecting coefficient and beamforming at the UAV-borne base station (UBS). However,it is challenging to solve the joint optimization problem due to its non-convexity. To tackle this problem, the non-convex problem is reformulated with linear approximation for the channel variations and linear matrix inequality transformed by S-procedure and Schur's complement. Then, we decouple this problem into two sub-problems, namely, passive beamforming and active IRS's reflecting coefficient optimization, and solve them through alternate optimization (AO). Finally, the numerical results demonstrate the potential of active IRS on power saving under secure transmission constraints and the impact of UAV jittering.
翻译:无人驾驶航空飞行器(UAV)的无人驾驶航空飞行器(UAV)驱动的通信是安全空对地(A2G)网络的一个很有希望的解决方案,因为机动性增加了安全的自由度。然而,无人驾驶航空飞行器本身的随机空气流和机体震动本身造成的震动性震动性效应对UAV通信的性能产生了不可忽略的影响。考虑到UAV 震动的影响,本文提出在新型的主动智能反射表面(IRS)的协助下,进行强力和安全的传输设计,使IRS的反映要素不仅调整了阶段转变,而且还扩大了信号的放大幅度。具体地说,在最坏的保密率限制下,我们的目标是通过动态IRS联合设计反映系数和在UAVBS的基站(UBS)上成形。然而,由于UAVS的不凝固性反射力,因此难以解决联合优化问题。要解决这个问题,非Civex问题要以线性近近和线性矩阵模型化的不平等来改变S-ROVI和S的递模变压性最佳化变压,最终演化后,我们通过SFIFIMLMLMLUDLLUDLUDLLULULULULULU。要展示的硬化和后,要展示的压压压压压压。