Prior studies on intelligent reflecting surface (IRS) have mostly considered wireless communication systems aided by a single passive IRS, which, however, has limited control over wireless propagation environment and suffers severe product-distance path-loss. To address these issues, we propose in this paper a new multi-active multi-passive (MAMP)-IRS aided wireless communication system, where a number of active and passive IRSs are deployed to assist the downlink communication in complex environment, by establishing a multi-hop reflection path across active and passive IRSs. An optimization problem is formulated to maximize the achievable rate of a typical user by designing the active-and-passive IRS routing path as well as the joint beamforming of the BS and selected active/passive IRSs. To draw useful insights into the optimal design, we first consider a special case of the single-active multi-passive (SAMP)-IRS aided system. For this case, we propose an efficient algorithm to obtain its optimal solution by first optimizing the joint beamforming given any SAMP-IRS routing path, and then optimizing the routing path by using a new path decomposition method and graph theory. Next, for the general MAMP-IRS aided system, we show that its challenging beam routing optimization problem can be efficiently solved by a new two-phase approach. Its key idea is to first optimize the inner passive-IRS beam routing between each two active IRSs for effective channel power gain maximization, followed by an outer active-IRS beam routing optimization for rate maximization. Last, numerical results are provided to demonstrate the effectiveness of the proposed MAMP-IRS beam routing scheme.
翻译:关于智能反射表面(IRS)的先前研究大多考虑到由单一被动IRS帮助的无线通信系统,然而,这种系统对无线传播环境的控制有限,而且存在严重的产品距离路由损失。为了解决这些问题,我们在本文件中建议建立一个新的多动多动多动、多被动(MAMP)-IRS(IRS)辅助的无线通信系统,在这种系统中部署一些主动和被动的IRS(ISS)辅助系统,以协助复杂环境中的下行连接通信,方法是在主动和被动的IRS之间建立一个多点反射路径,从而最大限度地提高典型用户的可实现率,办法是设计主动和被动的IR(IS)路由路径,同时设计BS和某些主动/被动的IRS(IM)路径路径联成。为了对最佳设计进行有用的洞察,我们首先考虑一个单一式多动、被动的IR(SAMP)-IR(IR)-IR)辅助系统的特殊案例。我们提议一个高效的算法,以便首先通过优化任何SAMP-IR(IR)路径路径路径路径路径路径路径路径路径路径路径路径路径的组合,然后通过最优化的动力化后,然后优化的路径路径路径路由最优化的RRRRRRF 展示显示其最优化的路径的前进的路径的路径,这是最后的走向的走向的走向的走向的走向,一个最优化的方法是展示的走向,以便显示其方向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向,以最后的走向的走向的走向的走向的走向的走向的走向,以显示其方向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向的走向。