论文标题
基于NLO的MMWave通信系统的增强感测方法
An NLoS-based Enhanced Sensing Method for MmWave Communication System
论文作者
论文摘要
基于毫米的Wi-Fi感应技术最近引起了广泛的关注,因为它提供了实现更高的感应精度,因此引起了广泛的关注。但是,目前的作品主要集中于感应场景的存在(LOS)路径的存在,这大大限制了其应用。为了解决该问题,我们提出了一种增强的MMWave感应算法在3D非视线环境(MM3NLOS)中,旨在在LOS路径较弱或阻塞时感知目标的方向和距离。具体而言,我们首先采用定向光束来估计反射路径的方位角/高度到达角度(AOA)和出发角度(AOD)。然后,相关路径的距离通过精细的时序测量协议测量。最后,我们将多个非视线(NLOS)路径的AOA和AOD转换为方向向量,然后根据几何关系获得目标信息。模拟结果表明,MM3NLOS可以通过2M间距实现厘米级别的误差。与先前的工作相比,它可以大大降低NLOS条件下的性能降解。
The millimeter-wave (mmWave)-based Wi-Fi sensing technology has recently attracted extensive attention since it provides a possibility to realize higher sensing accuracy. However, current works mainly concentrate on sensing scenarios where the line-of-sight (LoS) path exists, which significantly limits their applications. To address the problem, we propose an enhanced mmWave sensing algorithm in the 3D non-line-of-sight environment (mm3NLoS), aiming to sense the direction and distance of the target when the LoS path is weak or blocked. Specifically, we first adopt the directional beam to estimate the azimuth/elevation angle of arrival (AoA) and angle of departure (AoD) of the reflection path. Then, the distance of the related path is measured by the fine timing measurement protocol. Finally, we transform the AoA and AoD of the multiple non-line-of-sight (NLoS) paths into the direction vector and then obtain the information of targets based on the geometric relationship. The simulation results demonstrate that mm3NLoS can achieve a centimeter-level error with a 2m spacing. Compared to the prior work, it can significantly reduce the performance degradation under the NLoS condition.