ORION:使用商用Wi-Fi进行方位估计

M. Mahfoudi, T. Turletti, T. Parmentelat, F. Ferrero, L. Lizzi, R. Staraj, W. Dabbous
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引用次数: 14

摘要

通过MIMO, Wi-Fi率先采用天线阵列信号处理技术,使用商用硬件进行细粒度定位。这些技术,以前只适用于特定的应用领域,将激发人们对定位以外的兴趣,现在可以考虑估计设备在空间中的方向,而这曾经需要其他信息来源。Wi-Fi的受欢迎程度和与信道传播(CSI)相关的度量的可用性,使其成为可用于实验的候选者。因此,我们提出了ORION系统来估计一个MIMO Wi-Fi装备的物体的方向(航向和偏航),依赖于到达角和离开角的联合估计。虽然CSI的相位数据受到一些相位不一致的困扰,但我们证明了适当的相位补偿策略可以显着提高估计精度。我们的技术可以在毫米级精度内估计方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ORION: Orientation estimation using commodity Wi-Fi
With MIMO, Wi-Fi led the way to the adoption of antenna array signal processing techniques for fine-grained localization using commodity hardware. These techniques, previously exclusive to specific domains of applications, will spur interest to reach beyond localization, and now allow to consider estimating the device's orientation in space, that once required other sources of information. Wi-Fi's popularity and the availability of metrics related to channel propagation (CSI), makes it a candidate readily available for experimentation. Accordingly, we propose the ORION system to estimate the orientation (heading and yaw) of a MIMO Wi-Fi equipped object, relying on a joint estimation of the angle of arrival and the angle of departure. Although the CSI's phase data is plagued by several phase inconsistencies, we demonstrate that an appropriate phase compensation strategy significantly improves estimation accuracy. Our technique allows estimating orientations within millimeter-level precision.
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