论文标题

可重新配置的智能表面辅助无线本地化

Reconfigurable Intelligent Surface Aided Wireless Localization

论文作者

Liu, Yiming, Liu, Erwu, Wang, Rui

论文摘要

毫米波和大型天线阵列技术对于准确的无线定位的优势最近引起了广泛的关注。但是,即使在视线受阻的情况下,如何进一步提高无线定位的准确性也是在很大程度上没有发现的。在本文中,将可重构的智能表面(RIS)引入系统中,以使定位更准确。首先,我们建立了三维RIS辅助无线定位通道模型。之后,我们得出了Fisher信息矩阵和Cramer-Rao下限,以评估绝对移动站位置的估计。最后,我们提出了一种替代优化方法和一种梯度体面的方法,以优化反射光束成型,该方法旨在最大程度地减少Cramer-Rao下限以获得更准确的估计。我们的结果表明,提出的方法可以显着提高定位的准确性,并且可以通过使用大量反射元件的RIS来实现分解表级别甚至厘米级的定位。

The advantages of millimeter-wave and large antenna arrays technologies for accurate wireless localization received extensive attentions recently. However, how to further improve the accuracy of wireless localization, even in the case of obstructed line-of-sight, is largely undiscovered. In this paper, the reconfigurable intelligent surface (RIS) is introduced into the system to make the positioning more accurate. First, we establish the three-dimensional RIS-assisted wireless localization channel model. After that, we derive the Fisher information matrix and the Cramer-Rao lower bound for evaluating the estimation of absolute mobile station position. Finally, we propose an alternative optimization method and a gradient decent method to optimize the reflect beamforming, which aims to minimize the Cramer-Rao lower bound to obtain a more accurate estimation. Our results show that the proposed methods significantly improve the accuracy of positioning, and decimeter-level or even centimeter-level positioning can be achieved by utilizing the RIS with a large number of reflecting elements.

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