Quasi-Static Phase Shift Design for A Double-IRS Cooperatively Assisted System

Gengfa Ding, Ying Cui, L. Hu, Feng Yang, Lianghui Ding, Xin Xu
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引用次数: 1

Abstract

This paper investigates a double-IRS cooperatively assisted system, where a multi-antenna BS serves a single-antenna user with the help of two multi-element IRSs connected by the inter-IRS channel. The channel between any two nodes is modeled with Rician fading. The BS adopts the instantaneous CSI-adaptive maximum-ratio transmission (MRT) beamformer, and the two IRSs adopt a cooperative quasi-static phase shift design. The goal is to maximize the average achievable rate, which can be reflected by the average channel power of the equivalent channel, at low channel estimation cost and phase adjustment costs and computational complexity. First, we obtain a tractable expression of the average channel power of the equivalent channel. Then, we jointly optimize the phase shifts of the two IRSs to maximize the average channel power of the equivalent channel. We propose a computationally efficient iterative algorithm to obtain a stationary point of the non-convex problem. We show that the optimal quasi-static phase shift design for the double-IRS cooperatively assisted system achieves an average channel power gain in order identical to that of the optimal instantaneous CSI-adaptive phase shift design for the same system and higher than that of the optimal quasi-static phase shift design for a counterpart single-IRS assisted system. Finally, we numerically demonstrate notable gains of the proposed cooperative quasi-static phase shift design over the existing solutions. To our knowledge, this is the first work that optimizes the quasi-static phase shift design of a double-IRS cooperatively assisted system and characterizes its advantage over the optimal quasi-static phase shift design of the counterpart single-IRS-assisted system.
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双irs协同辅助系统的准静态相移设计
本文研究了一种双irs协同辅助系统,其中多天线BS通过irs间信道连接的两个多单元irs为单天线用户提供服务。任意两个节点之间的信道都用梯度衰落建模。BS采用瞬时csi自适应最大比传输(MRT)波束形成器,两个irs采用协同准静态相移设计。目标是在较低的信道估计成本和相位调整成本以及计算复杂度的情况下,最大限度地提高平均可达率,这可以通过等效信道的平均信道功率来反映。首先,我们得到了等效信道的平均信道功率的可处理表达式。然后,我们共同优化两个IRSs的相移,以最大化等效信道的平均信道功率。我们提出了一种计算效率高的求非凸问题的平稳点的迭代算法。研究表明,双irs协同辅助系统的最佳准静态相移设计实现了与同一系统的最佳瞬时csi自适应相移设计相同的平均信道功率增益,并且高于对应的单irs辅助系统的最佳准静态相移设计。最后,我们在数值上证明了所提出的合作准静态相移设计比现有的解决方案有显著的提高。据我们所知,这是第一个优化双irs协同辅助系统的准静态相移设计的工作,并描述了其相对于相应单irs辅助系统的最佳准静态相移设计的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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