Modulating Data Using Reconfigurable Intelligent Surface by Symbol Level Precoding

Hei Victor Cheng, Wei Yu
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引用次数: 1

Abstract

This paper investigates a reconfigurable intelligent surface (RIS) aided communication scenario in which the RIS and the transmitter jointly send information to the receiver. While most studies of the RIS focus on its ability to beamform and boost the received signal-to-noise ratio (SNR), it is known that if the information data stream is also available at the RIS and can be modulated through the adjustable phases at the RIS, significant improvement in the multiplexing gain of the overall channel is possible. To achieve the theoretic multiplexing gain, this paper provides a symbol level precoding (SLP) approach for modulating data through the phases of the RIS. The SLP strategy is to set the received signal to be as close to the desired points in a constellation as possible. The idea is to directly make the received signal to be the symbols corresponding to the information to be transmitted and to design the transmitter and the reflective coefficients of the RIS so that the desired symbols are synthesized at the receiver. This strategy is formulated as an optimization problem and an augmented Lagrangian approach with the Riemannian conjugate gradient descent method is proposed to solve the optimization problem efficiently. Numerical simulation results show that the proposed method can achieve the theoretical multiplexing gain.
利用符号级预编码的可重构智能表面调制数据
本文研究了一种可重构智能表面(RIS)辅助通信场景,其中RIS和发射机共同向接收机发送信息。虽然对RIS的大多数研究都集中在其波束形成和提高接收信噪比(SNR)的能力上,但众所周知,如果信息数据流在RIS也可用,并且可以通过RIS的可调相位进行调制,则可能显著改善整个信道的多路复用增益。为了实现理论上的复用增益,本文提出了一种符号级预编码(SLP)方法,通过RIS的相位调制数据。SLP策略是将接收到的信号设置为尽可能靠近星座中的期望点。其思路是直接将接收到的信号作为要发送的信息对应的符号,设计发射机和RIS的反射系数,从而在接收端合成所需的符号。将该策略表述为一个优化问题,并提出了一种带有黎曼共轭梯度下降法的增广拉格朗日方法来有效地求解优化问题。数值仿真结果表明,该方法能达到理论复用增益。
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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