论文标题

分布式多RIS通信的合作反思和同步设计

Cooperative Reflection and Synchronization Design for Distributed Multiple-RIS Communications

论文作者

Zhao, Yaqiong, Xu, Wei, You, Xiaohu, Wang, Ning, Sun, Huan

论文摘要

为了获得通过无线网络中分布式重构智能表面(RISS)增强通信所获得的承诺收益,这些元信息之间的时机同步是实践中必不可少的先决条件。本文提出了一个统一的框架,用于对未知时序偏移和RIS通道参数的联合估计,以及用于分布式多RIS通信的合作反射和同步算法的设计。考虑到RIS通常是一种被动设备,信号处理能力有限,因此无法直接估计RIS链接的每个跳跃的单个定时偏移和通道增加。为了使估计可进行,我们建议通过得出最大似然估计量共同估算级联的通道和时间偏移。此外,我们从理论上表征了Cramer-Rao下限(CRLB),以评估该估计量的准确性。通过使用所提出的估计器和派生的CRLB,在RISS和目的地共同设计了有效的重新同步算法,以补偿多个正时偏移。基于大型最小化框架,所提出的算法分别为RIS反射矩阵和时机偏移均衡器分别允许半闭合和封闭式的溶液。仿真结果验证了我们的理论分析与数值测试相匹配,并验证提出的重新同步算法的有效性。

To reap the promised gain achieved by distributed reconfigurable intelligent surfaces (RISs)-enhanced communications in a wireless network, timing synchronization among these metasurfaces is an essential prerequisite in practice. This paper proposes a unified framework for the joint estimation of the unknown timing offsets and the RIS channel parameters, as well as the design of cooperative reflection and synchronization algorithm for the distributed multiple-RIS communication. Considering that RIS is usually a passive device with limited capability of signal processing, the individual timing offset and channel gains of each hop of the RIS links cannot be directly estimated. To make the estimation tractable, we propose to estimate the cascaded channels and timing offsets jointly by deriving a maximum likelihood estimator. Furthermore, we theoretically characterize the Cramer-Rao lower bound (CRLB) to evaluate the accuracy of this estimator. By using the proposed estimator and the derived CRLBs, an efficient resynchronization algorithm is devised jointly at the RISs and the destination to compensate the multiple timing offsets. Based on the majorization-minimization framework, the proposed algorithm admits semi-closed and closed form solutions for the RIS reflection matrices and the timing offset equalizer, respectively. Simulation results verify that our theoretical analysis well matches the numerical tests and validate the effectiveness of the proposed resynchronization algorithm.

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