论文标题

限制RIS阶段轮廓优化和近场定位的时间共享

Constrained RIS Phase Profile Optimization and Time Sharing for Near-field Localization

论文作者

Rahal, Moustafa, Denis, Benoît, Keykhosravi, Kamran, Keskin, Furkan, Uguen, Bernard, Wymeersch, Henk

论文摘要

可重构智能表面(RIS)的上升概念具有超越5G本地化应用程序的潜力。我们在这里研究了反射性RIS的不同相位剖面设计,该设计可以通过下行链路单个天线传输在近场进行非线位置。我们首先得出相应的Fisher信息矩阵(FIM)和位置误差(PEB)的闭合形式表达式。因此,假设对用户设备位置的先验知识,我们然后提出了一种新的本地化 - 最佳相位剖面设计。在规范场景中的数值模拟表明,我们的建议在PEB方面优于常规的RIS随机和方向梁代码簿设计。我们还说明了在RIS上分配的四个光束(即一个方向光束,以及其相对于空间尺寸的导数),并显示如何根据时间共享(即考虑可行的光束依次实现)根据最佳解决方案实现其相对权重)。

The rising concept of reconfigurable intelligent surface (RIS) has promising potential for Beyond 5G localization applications. We herein investigate different phase profile designs at a reflective RIS, which enable non-line-of-sight positioning in nearfield from downlink single antenna transmissions. We first derive the closed-form expressions of the corresponding Fisher information matrix (FIM) and position error bound (PEB). Accordingly, we then propose a new localization-optimal phase profile design, assuming prior knowledge of the user equipment location. Numerical simulations in a canonical scenario show that our proposal outperforms conventional RIS random and directional beam codebook designs in terms of PEB. We also illustrate the four beams allocated at the RIS (i.e., one directional beam, along with its derivatives with respect to space dimensions) and show how their relative weights according to the optimal solution can be practically implemented through time sharing (i.e., considering feasible beams sequentially).

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