论文标题

异步RIS辅助本地化:对基本限制的全面分析

Asynchronous RIS-assisted Localization: A Comprehensive Analysis of Fundamental Limits

论文作者

Gong, Ziyi, Wu, Liang, Zhang, Zaichen, Dang, Jian, Wu, Yongpeng, Wang, Jiangzhou

论文摘要

可重新配置的智能表面(RIS)因其不仅可以提高无线通信的性能,而且还具有低成本的室内定位,引起了人们的关注。本文研究了异步方案中基于RIS的近场定位的性能限制,并分析了级联通道对本地化性能的影响。 Fisher信息矩阵(FIM)和绑定的位置误差(PEB)被得出。此外,我们还为位置相关的中间参数得出了等效的Fisher信息(EFI)。由派生的EFI启用,我们验证当考虑到频道的RIS-USER设备(UE)部分时,可以在近场模型中获得用户的范围和轴承信息,而仅在远足场景中可以推断出UE的方向。在这种情况下,该结果众所周知,传统的活动大规模阵列直接感知到达的曲率(COA),我们证明当大型RI被动地感知COA时,它仍然存在。对于通道的基站(BS)-RIS部分,我们揭示了该通道的这一部分确定BS天线阵列提供的增益类型。此外,在单载波,单个快照案例中,它需要BS-RIS和RIS-UE部分在近场方案中起作用以定位UE。我们还表明,最大化收到的SNR的RIS的众所周知的聚焦控制方案并不总是一个不错的选择,并且可能会降低异步场景中的本地化性能。模拟结果验证了分析工作。还研究了聚焦控制方案对同步和异步条件下的PEB性能的影响。

The reconfigurable intelligent surface (RIS) has drawn considerable attention for its ability to enhance the performance of not only the wireless communication but also the indoor localization with low-cost. This paper investigates the performance limits of the RIS-based near-field localization in the asynchronous scenario, and analyzes the impact of each part of the cascaded channel on the localization performance. The Fisher information matrix (FIM) and the position error bound (PEB) are derived. Besides, we also derive the equivalent Fisher information (EFI) for the position-related intermediate parameters. Enabled by the derived EFI, we verify that both the ranging and bearing information of the user can be obtained when the near-field model is considered for the RIS-User equipment (UE) part of the channel, while only the direction of the UE can be inferred in the far-field scenario. This result is well known in the scenario that the curvature of arrival (COA) is directly sensed by the traditional active large-scale array, and we prove that it still holds when the COA is sensed passively by the large RIS. For the base station (BS)-RIS part of the channel, we reveal that this part of the channel determines the type of the gain provided by the BS antenna array. Besides, in the single-carrier, single snapshot case, it requires both the BS-RIS and the RIS-UE part of the channel works in the near-field scenario to localize the UE. We also show that the well-known focusing control scheme for RIS, which maximizes the received SNR, is not always a good choice and may degrade the localization performance in the asynchronous scenario. The simulation results validate the analytic work. The impact of the focusing control scheme on the PEB performances under synchronous and asynchronous conditions is also investigated.

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