In this letter, we study the simultaneously transmitting and reflecting reconfigurable intelligent surface (STAR-RIS) assisted unmanned aerial vehicle (UAV) communications. Our goal is to maximize the sum rate of all users by jointly optimizing the STAR-RIS's beamforming vectors, the UAV's trajectory and power allocation. We decompose the formulated non-convex problem into three subproblems and solve them alternately to obtain the solution. Simulations show that: 1) the STAR-RIS achieves a higher sum rate than traditional RIS; 2) to exploit the benefits of STAR-RIS, the UAV's trajectory is closer to STAR-RIS than that of RIS; 3) the energy splitting for reflection and transmission highly depends on the real-time trajectory of UAV.
翻译:在这封信中,我们研究了同时传送和反映可重新配置的智能表面(STAR-RIS)辅助无人驾驶飞行器通信的情况,我们的目标是通过共同优化STAR-RIS的波束成形矢量、无人驾驶飞行器的轨迹和功率分配,最大限度地提高所有用户的总和率,我们把已拟订的非混凝土问题分解为三个子问题,并用其他方法解决这些问题。模拟表明:(1)STAR-RIS的总数比传统的RIS高;(2)利用STAR-RIS的效益,无人驾驶飞行器的轨迹比RIS的轨迹更接近STAR-RIS;(3)反射和传输的能源分解高度取决于UAV的实时轨迹。