RIS-STAR: RIS-based Spatio-Temporal Channel Hardening for Single-Antenna Receivers

Saray Sanchez, Kubra Alemdar, Vini Chaudhary, K. Chowdhury
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Abstract

Small form-factor single antenna devices, typically deployed within wireless sensor networks, lack many benefits of multi-antenna receivers like leveraging spatial diversity to enhance signal reception reliability. In this paper, we introduce the theory of achieving spatial diversity in such single-antenna systems by using reconfigurable intelligent surfaces (RIS). Our approach, called ‘RIS-STAR’, proposes a method of proactively perturbing the wireless propagation environment multiple times within the symbol time (that is less than the channel coherence time) through reconfiguring an RIS. By leveraging the stationarity of the channel, RIS-STAR ensures that the only source of perturbation is due to the chosen and controllable RIS configuration. We first formulate the problem to find the set of RIS configurations that maximizes channel hardening, which is a measure of link reliability. Our solution is independent of the transceiver’s relative location with respect to the RIS and does not require channel estimation, alleviating two key implementation concerns. We then evaluate the performance of RIS-STAR using a custom-simulator and an experimental testbed composed of PCB-fabricated RIS. Specifically, we demonstrate how a SISO link can be enhanced to perform similar to a SIMO link attaining an 84.6% channel hardening improvement in presence of strong multipath and non-line-of-sight conditions.
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RIS-STAR:基于ris的单天线接收机时空信道硬化
小型单天线设备通常部署在无线传感器网络中,缺乏多天线接收器的许多优点,如利用空间分集来提高信号接收可靠性。本文介绍了利用可重构智能曲面(RIS)实现单天线系统空间分集的理论。我们的方法,称为“RIS- star”,提出了一种通过重新配置RIS,在符号时间(小于信道相干时间)内多次主动干扰无线传播环境的方法。通过利用通道的平稳性,RIS- star确保扰动的唯一来源是由于选择和可控的RIS配置。我们首先将问题公式化,以找到最大化信道强化的RIS配置集,信道强化是链路可靠性的度量。我们的解决方案独立于收发器相对于RIS的相对位置,并且不需要信道估计,从而减轻了两个关键的实现问题。然后,我们使用定制模拟器和由pcb制造的RIS组成的实验测试平台来评估RIS- star的性能。具体来说,我们展示了如何增强SISO链路以实现与SIMO链路相似的性能,在强多径和非视距条件下实现84.6%的信道硬化改善。
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