Reconfigurable Intelligent Surface (RIS) is a promising solution to reconfigure the wireless environment in a controllable way. To compensate for the double-fading attenuation in the RIS-aided link, a large number of passive reflecting elements (REs) are conventionally deployed at the RIS, resulting in large surface size and considerable circuit power consumption. In this paper, we propose a new type of RIS, called active RIS, where each RE is assisted by active loads (negative resistance), that reflect and amplify the incident signal instead of only reflecting it with the adjustable phase shift as in the case of a passive RIS. Therefore, for a given power budget at the RIS, a strengthened RIS-aided link can be achieved by increasing the number of active REs as well as amplifying the incident signal. We consider the use of an active RIS to a single input multiple output (SIMO) system. {However, it would unintentionally amplify the RIS-correlated noise, and thus the proposed system has to balance the conflict between the received signal power maximization and the RIS-correlated noise minimization at the receiver. To achieve this goal, it has to optimize the reflecting coefficient matrix at the RIS and the receive beamforming at the receiver.} An alternating optimization algorithm is proposed to solve the problem. Specifically, the receive beamforming is obtained with a closed-form solution based on linear minimum-mean-square-error (MMSE) criterion, while the reflecting coefficient matrix is obtained by solving a series of sequential convex approximation (SCA) problems. Simulation results show that the proposed active RIS-aided system could achieve better performance over the conventional passive RIS-aided system with the same power budget.
翻译:重新配置的智能表面(RIS) 是以一种可控制的方式重组无线环境的一个有希望的解决方案。 为了弥补RIS辅助链接中双重衰减功能, 常规地将大量被动反射元素( REs) 部署在RIS, 导致大量表面大小和电路电耗。 在本文中, 我们提出一种新的RIS, 称为活跃的RIS, 其中每个RE得到主动负载( 负负抗力) 的辅助, 反映并扩展事件信号, 而不是仅仅反映事件信号与可调整的阶段变化( 被动的RIS ) 。 因此, 为了补偿RIS辅助链接的双重衰减功能, 常规RES( RED) 增加活跃的RES数量, 以及扩大事件信号。 我们考虑对单一输入多输出( IMO) 系统使用主动性RIS 。 {无论如何, 它会无意地放大与RIS- 相关噪音相关的噪音, 因此拟议的系统必须平衡收到信号的阶段变换换换换阶段变化, 正在实现 IMIS- IMIS- 最优化的系统, 以最优化的变变压的系统, 正在显示一个最接近的 。