OTFS Enabled RIS- Aided Localization: Fundamental Limits and Potential Drawbacks

Don-Roberts Emenonye, Anish Pradhan, Harpreet S. Dhillon, R. Buehrer
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Abstract

In this paper, we consider a reconfigurable intelligent surface (RIS) aided orthogonal time frequency space (OTFS) system that can operate in either the near-field or far-field propagation regimes. The received signal expressions in the Doppler-delay (DD) are derived when the system experiences the effects of near-field or far-field propagation. Utilizing these received signal expressions and the Fisher information matrix (FIM), we derive the fundamental localization error limits of a user equipment (UE) that receives signals in the DD domain after reflections from the RISs. Through simulations, we show that the localization error decreases with the number of receive antennas and RIS elements. Subsequently, we note that RISs can become misoriented, i.e., their orientations can be disturbed after initial deployment. Hence, we investigate the possibility of exploiting the signals received at the UE in the DD domain to estimate the RIS orientation. Our simulation results indicate that the orientation of a certain RIS can only be estimated when the UE is experiencing the effects of near-field propagation with respect to that RIS. Through simulations, we show that a fundamental drawback of RIS-aided localization of a UE is that the RIS orientation offset is detrimental to the localization error of the UE.
OTFS支持的RIS辅助定位:基本限制和潜在缺点
在本文中,我们考虑了一种可重构智能表面(RIS)辅助正交时频空间(OTFS)系统,该系统可以在近场或远场传播模式下工作。推导了系统在近场和远场传播作用下接收信号的多普勒延迟表达式。利用这些接收信号表达式和Fisher信息矩阵(FIM),我们推导了接收到来自RISs反射的DD域信号的用户设备(UE)的基本定位误差极限。仿真结果表明,定位误差随接收天线个数和RIS单元个数的增加而减小。随后,我们注意到RISs可能会变得定向错误,也就是说,它们的定向在初始部署后可能会受到干扰。因此,我们研究了在DD域中利用UE接收到的信号来估计RIS方向的可能性。我们的模拟结果表明,只有当终端经历相对于该RIS的近场传播影响时,才能估计某个RIS的方向。通过仿真,我们发现RIS辅助终端定位的一个基本缺点是RIS方向偏移不利于终端的定位误差。
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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