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Exclusion of GNSS NLOS receptions caused by dynamic objects in heavy traffic urban scenarios using real-time 3D point cloud: An approach without 3D maps

机译:使用实时3D点云排除在交通繁忙的城市场景中由动态物体引起的GNSS NLOS接收:一种没有3D地图的方法

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Absolute positioning is an essential factor for the arrival of autonomous driving. Global Navigation Satellites System (GNSS) receiver provides absolute localization for it. GNSS solution can provide satisfactory positioning in open or sub-urban areas, however, its performance suffered in super-urbanized area due to the phenomenon which are well-known as multipath effects and NLOS receptions. The effects dominate GNSS positioning performance in the area. The recent proposed 3D map aided (3DMA) GNSS can mitigate most of the multipath effects and NLOS receptions caused by buildings based on 3D city models. However, the same phenomenon caused by moving objects in urban area is currently not modelled in the 3D geographic information system (GIS). Moving objects with tall height, such as the double-decker bus, can also cause NLOS receptions because of the blockage of GNSS signals by surface of objects. Therefore, we present a novel method to exclude the NLOS receptions caused by double-decker bus in highly urbanized area, Hong Kong. To estimate the geometry dimension and orientation relative to GPS receiver, a Euclidean cluster algorithm and a classification method are used to detect the double-decker buses and calculate their relative locations. To increase the accuracy and reliability of the proposed NLOS exclusion method, an NLOS exclusion criterion is proposed to exclude the blocked satellites considering the elevation, signal noise ratio (SNR) and horizontal dilution of precision (HDOP). Finally, GNSS positioning is estimated by weighted least square (WLS) method using the remaining satellites after the NLOS exclusion. A static experiment was performed near a double-decker bus stop in Hong Kong, which verified the effectiveness of the proposed method.
机译:绝对定位是自主驾驶到达的重要因素。全球导航卫星系统(GNSS)接收器为其提供绝对的本地化。 GNSS解决方案可以在开放或分区区域提供令人满意的定位,然而,由于众所周知的多径效应和NLOS接收的现象,其在超城市化面积中遭受的性能。该效果在该区域中占主导地位的定位性能。最近提出的3D地图辅助(3DMA)GNSS可以减轻基于3D城市模型的建筑物引起的大多数多径效应和NLO接收。然而,目前在3D地理信息系统(GIS)中没有建模由城市地区移动物体引起的相同现象。移动具有高度高的物体,如双层总线,也可以导致NLOS接收,因为通过对象的表面堵塞GNSS信号。因此,我们提出了一种新的方法,以排除由香港高层城市化地区的双层巴士引起的NLOS接收。为了估计相对于GPS接收器的几何维度和取向,使用欧几里德集群算法和分类方法来检测双层总线并计算其相对位置。为了提高所提出的NLOS排除方法的精度和可靠性,提出了一种NLOS排除标准,以排除考虑到升高,信号噪声比(SNR)和精度稀释(HDOP)的水平稀释的堵塞卫星。最后,使用NLOS排除后的剩余卫星的加权最小二乘(WLS)方法估计GNSS定位。在香港的双层巴士站附近进行了静态实验,验证了该方法的有效性。

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