Reconfigurable Intelligent Surface (RIS) is one of the promising techniques for 6G wireless communications, and recently has also been shown to be able to improve secure communications. However, there is a "double fading" effect in the reflection link between base station and user, thus passive RIS only achieves a negligible secrecy gain in typical communications scenarios.In this letter, we propose an active RIS-aided multi-antenna physical layer secrecy transmission scheme, where the active RIS can amplify the signal actively. Our aim is to minimize the transmit power subject to the constraint of secrecy rate. To solve the non-convex optimization problem, a penalty-based alternating minimization (AltMin) algorithm is proposed to optimize both the beamformer at the transmitter and the reflection matrix at RIS. Simulation results show that active RIS can resist the impact of "double fading" effect effectively, and is more energy efficient than passive RIS.
翻译:重新配置的智能表面(RIS)是6G无线通信的有希望的技术之一,最近也证明能够改进安全通信。然而,在基地站和用户之间的反射联系中产生了“双重衰减”效应,因此被动的RIS在典型的通信情景中只能取得微不足道的保密收益。 在本信里,我们提议建立一个积极的RIS辅助多层安全物理保密传输计划,让活跃的RIS能够积极放大信号。我们的目标是尽量减少受保密率限制的传输能力。为了解决非电解优化问题,建议采用基于惩罚的交替最小化算法,优化发射器的光束和TRIS的反射矩阵。模拟结果表明,积极的RIS能够有效抵御“双层蒸发”效应的影响,并且比被动的RIS更具能源效率。