Reconfigurable intelligent surface (RIS) or intelligent reflecting surface (IRS) has recently been envisioned as one of the most promising technologies in the future sixth-generation (6G) communications. In this paper, we consider the joint optimization of the transmit beamforming at the base station (BS) and the phase shifts at the RIS for an RIS-aided wireless communication system with both hardware impairments and imperfect channel state information (CSI). Specifically, we assume both the BS-user channel and the BS-RIS-user channel are imperfect due to the channel estimation error, and we consider the channel estimation error under the statistical CSI error model. Then, the transmit power of the BS is minimized, subject to the outage probability constraint and the unit-modulus constraints on the reflecting elements. By using Bernstein-type inequality and semidefinite relaxation (SDR) to reformulate the constraints, we transform the optimization problem into a semidefinite programming (SDP) problem. Numerical results show that the proposed robust design algorithm can ensure communication quality of the user in the presence of both hardware impairments and imperfect CSI.
翻译:最近,人们设想重新配置智能表面或智能反射表面(IRS)是未来第六代(6G)通信中最有前景的技术之一。在本文件中,我们考虑将基站传输波束和空间系统分级转换为具有硬件缺陷和频道状态信息不完善的RIS辅助无线通信系统。具体地说,我们假定BS用户频道和BS用户频道由于频道估计错误而不完善,我们认为CSI统计误差模型下的频道估计错误。然后,将BS的传输能力最小化,但受失灵概率限制和反射元素的单位模式限制。我们利用Bernstein型的不平等和半成型放松(SDR)来重新配置限制。我们把优化问题转换成半成半成半成程序化(SDP)问题。数字结果显示,拟议的稳健的设计算法可以确保硬件缺陷和不完善的CSI的用户的通信质量。