论文标题

RIS辅助MIMO系统的同时主动和被动信息传输:迭代解码和进化分析

Simultaneous Active and Passive Information Transfer for RIS-Aided MIMO Systems: Iterative Decoding and Evolution Analysis

论文作者

Jiang, Wenjun, Yuan, Xiaojun

论文摘要

本文研究了可重构智能表面(RIS)在RIS辅助多输入多输出(MIMO)系统中的被动信息传输的潜力。我们提出了一种新型的同时主动和被动信息传输(SAPIT)方案。在SAPIT中,发射机(TX)和RIS同时传递信息,其中RIS信息通过嵌入反射信号中的RIS相移。我们在TX和RIS介绍了编码的调制技术。 SAPIT方案的主要挑战是同时检测接收器处的TX信号和RIS相系数。为了应对这一挑战,我们引入了适当的辅助变量,以相对于TX信号将原始信号模型转换为两个线性模型,并且相对于RIS相系数,将原始信号模型转换为两个线性模型。使用此辅助信号模型,我们开发了一种基于消息的接收器算法。此外,我们分析了拟议的SAPIT-MIMO收发器的基本绩效极限。值得注意的是,我们建立了状态进化,以预测大型系统中的接收器性能。我们进一步分析了TX和RI的可实现速率,该速率可洞悉总和率最大化的代码设计。数值结果验证了我们的分析,并表明SAPIT方案在TX和RIS的可实现总和速率方面的表现优于被动波束形成。

This paper investigates the potential of reconfigurable intelligent surface (RIS) for passive information transfer in a RIS-aided multiple-input multiple-output (MIMO) system. We propose a novel simultaneous active and passive information transfer (SAPIT) scheme. In SAPIT, the transmitter (Tx) and the RIS deliver information simultaneously, where the RIS information is carried through the RIS phase shifts embedded in reflected signals. We introduce the coded modulation technique at the Tx and the RIS. The main challenge of the SAPIT scheme is to simultaneously detect the Tx signals and the RIS phase coefficients at the receiver. To address this challenge, we introduce appropriate auxiliary variables to convert the original signal model into two linear models with respect to the Tx signals and one entry-by-entry bilinear model with respect to the RIS phase coefficients. With this auxiliary signal model, we develop a message-passing-based receiver algorithm. Furthermore, we analyze the fundamental performance limit of the proposed SAPIT-MIMO transceiver. Notably, we establish the state evolution to predict the receiver performance in a large-size system. We further analyze the achievable rates of the Tx and the RIS, which provides insight into the code design for sum-rate maximization. Numerical results validate our analysis and show that the SAPIT scheme outperforms the passive beamforming counterpart in achievable sum rate of the Tx and the RIS.

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