Hybrid reconfigurable intelligent surfaces (HRIS) are RIS architectures having both active and passive elements. The received signal-to-noise ratio (SNR) in HRIS-assisted communication systems depends on the placement of active elements. In this paper, we show that received SNR can be improved with a channel-aware placement of the active elements. We jointly design the transmit precoder, the RIS coefficients, and the location of active and passive elements of the HRIS to maximize the SNR. We solve the underlying combinatorial nonconvex optimization problem using alternating optimization and propose a low-complexity solver, which is provably nearly optimal. Through numerical simulations, we demonstrate that the proposed method offers significantly improved performance compared to communication systems having a fully passive RIS array or a hybrid RIS array with channel agnostic active element placement and performance comparable to that of communication systems with a fully active RIS array.
翻译:在本文中,我们表明,接收到的SNR可以通过对热源元素的频道感知定位来改进。我们联合设计了传输预编码器、RIS系数以及HRIS的主动和被动元素的位置,以最大限度地扩大SRR。我们通过交替优化解决了潜在的组合式非对流优化问题,并提出了低兼容性解答器,该解答器几乎是最佳的。通过数字模拟,我们证明拟议方法与具有完全被动的RIS阵列或混合的RIS阵列的通信系统相比,其性能大大改进,而后者具有完全被动的RIS阵列或混合的RIS阵列,其频道的感知性元素定位和性能与完全活跃的RIS阵列的通信系统相似。