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Harnessing NLOS Components for Position and Orientation Estimation in 5G Millimeter Wave MIMO

机译:利用NLOS组件进行5G毫米波MIMO中的位置和方向估计

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In the past, NLOS propagation was proven to be a source of distortion for radio-based positioning systems due to the lack of temporal and spatial resolution of previous cellular systems. Hence, every NLOS component was perceived as a perturbation for localization. Even though 5G is not yet standardized, a strong proposal, which has the potential to overcome the problem of limited temporal and spatial resolution, is the massive MIMO millimeter wave technology. We reconsider the role of NLOS components for position and orientation estimation in 5G millimeter wave MIMO systems. Our analysis is based on the concept of Fisher information. We show that for sufficiently high temporal and spatial resolution, NLOS components always provide position and orientation information that consequently increase position and orientation estimation accuracy. In addition, we show that the information gain of NLOS components depends on the actual location of the reflector or scatter. Our numerical examples suggest that the NLOS components are most informative about the position and orientation of a mobile terminal when the corresponding reflectors or scatterers are illuminated with narrow beams.
机译:过去,由于缺乏以前的蜂窝系统的时间和空间分辨率,事实证明,NLOS传播是基于无线电的定位系统的失真源。因此,每个NLOS组件都被视为本地化的干扰。尽管5G尚未标准化,但强大的建议是大规模MIMO毫米波技术,它有可能克服时空分辨率有限的问题。我们重新考虑了NLOS组件在5G毫米波MIMO系统中位置和方向估计中的作用。我们的分析基于Fisher信息的概念。我们表明,对于足够高的时间和空间分辨率,NLOS组件始终提供位置和方向信息,从而提高位置和方向估计的准确性。此外,我们表明NLOS分量的信息增益取决于反射器或散射的实际位置。我们的数值示例表明,当相应的反射器或散射器用窄光束照射时,NLOS组件对移动终端的位置和方向最有用。

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