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Pedestrian Localization Service Using 3D Map and RAIM GNSS Satellite Selection Technique

机译:使用3D地图和RAIM GNSS卫星选择技术的行人定位服务

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The requirement of the accurate pedestrian position is increasing due to the booming pedestrian-to-vehicle (P2V) communication. Currently, global navigation satellite system (GNSS) receivers can provide accurate and reliable positioning service in open-field areas. However, its performance in city downtown is still affected by the multipath and none-line-of-sight (NLOS) receptions. This paper proposes an innovative positioning method using the 3D building maps and the receiver autonomous integrity monitoring (RAIM) satellite selection method to achieve satisfactory positioning performance in urban area for the pedestrian user. The 3D building model is used with a ray-tracing technique to simulate the line-of-sight (LOS) and NLOS signal travel distance, which is well-known as pseudorange, between the satellite and receiver. The proposed RAIM fault exclusion is able to compare the similarity between the raw pseudorange measurement and the simulated pseudorange. The measurement of the satellite will be excluded if the simulated and raw pseudorange is inconsistent. Because of the assumption of single reflection in the ray-tracing technique, the inconsistent case indicates it is a double or multiple reflected NLOS signal. According to the experiment result, the RAIM satellite selection technique can reduce about 8.4% of the large positioning solutions (points that estimated at the wrong side of the road) in the middle urban canyon environment.
机译:由于行人对车辆(P2V)通讯的蓬勃发展,对精确行人位置的要求越来越高。当前,全球导航卫星系统(GNSS)接收器可以在露天区域提供准确而可靠的定位服务。但是,其在市区的性能仍然受到多径和非视距(NLOS)接收的影响。本文提出了一种创新的定位方法,该方法使用3D建筑地图和接收机自主完整性监控(RAIM)卫星选择方法来为行人提供令人满意的市区定位性能。 3D建筑模型与射线跟踪技术一起使用,以模拟卫星和接收器之间的视线(LOS)和NLOS信号传播距离,这就是众所周知的伪距。提出的RAIM故障排除能够比较原始伪距测量值和模拟伪距之间的相似性。如果模拟和原始伪距不一致,则将排除卫星的测量。由于在光线跟踪技术中假设是单反射,因此不一致的情况表明它是两次或多次反射的NLOS信号。根据实验结果,RAIM卫星选择技术可以减少城市中部峡谷环境中约8.4%的大型定位解决方案(估计在道路错误侧的点)。

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