论文标题

MIMO VLC的智能反射表面:表面配置和收发器信号处理的关节设计

Intelligent Reflecting Surface for MIMO VLC: Joint Design of Surface Configuration and Transceiver Signal Processing

论文作者

Sun, Shiyuan, Yang, Fang, Song, Jian, Zhang, Rui

论文摘要

凭借重新配置无线电磁环境的能力,智能反射表面(IRS)是设计未来无线通信系统的新范式。在本文中,我们考虑了在多输入和多输出(MIMO)设置下改善可见光通信(VLC)性能的光学IRS。具体而言,我们专注于室内MIMO VLC系统的下行链路通信,并旨在最大程度地减少接收器中解调信号的均方误差(MSE)。为此,IRS ADED VLC的MIMO通道增益首先是在点源假设下得出的,然后将MSE最小化问题提出,但要遵守发射功率约束。接下来,我们提出了一种交替优化算法,将原始问题分解为三个子问题,以迭代优化IRS配置,预编码和检测矩阵,以最大程度地减少MSE。此外,提供了有关在高和低信噪比(SNR)方面进行的拟议算法性能的理论分析,这表明在这种特殊情况下可以简化关节优化过程,并且还讨论了算法的收敛性和计算复杂性。最后,数值结果表明,与没有IRS的对应物相比,IRS辅助方案显着降低了MSE,并且所提出的算法的表现优于其他基线方案。

With the capability of reconfiguring the wireless electromagnetic environment, intelligent reflecting surface (IRS) is a new paradigm for designing future wireless communication systems. In this paper, we consider optical IRS for improving the performance of visible light communication (VLC) under a multiple-input and multiple-output (MIMO) setting. Specifically, we focus on the downlink communication of an indoor MIMO VLC system and aim to minimize the mean square error (MSE) of demodulated signals at the receiver. To this end, the MIMO channel gain of the IRS-aided VLC is first derived under the point source assumption, based on which the MSE minimization problem is then formulated subject to the emission power constraints. Next, we propose an alternating optimization algorithm, which decomposes the original problem into three subproblems, to iteratively optimize the IRS configuration, the precoding and detection matrices for minimizing the MSE. Moreover, theoretical analysis on the performance of the proposed algorithm in high and low signal-to-noise rate (SNR) regimes is provided, revealing that the joint optimization process can be simplified in such special cases, and the algorithm's convergence property and computational complexity are also discussed. Finally, numerical results show that IRS-aided schemes significantly reduce the MSE as compared to their counterparts without IRS, and the proposed algorithm outperforms other baseline schemes.

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