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Performance Enhancement of Land Vehicle Positioning Using Multiple GPS Receivers in an Urban Area

机译:使用多个GPS接收器提高市区内陆地车辆定位的性能

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The Global Positioning System (GPS) is the most widely used navigation system in land vehicle applications. In urban areas, the GPS suffers from insufficient signal strength, multipath propagation and non-line-of-sight (NLOS) errors, so it thus becomes difficult to obtain accurate and reliable position information. In this paper, an integration algorithm for multiple receivers is proposed to enhance the positioning performance of GPS for land vehicles in urban areas. The pseudoranges of multiple receivers are integrated based on a tightly coupled approach, and erroneous measurements are detected by testing the closeness of the pseudoranges. In order to fairly compare the pseudoranges, GPS errors and terms arising due to the differences between the positions of the receivers need to be compensated. The double-difference technique is used to eliminate GPS errors in the pseudoranges, and the geometrical distance is corrected by projecting the baseline vector between pairs of receivers. In order to test and analyze the proposed algorithm, an experiment involving live data was performed. The positioning performance of the algorithm was compared with that of the receiver autonomous integrity monitoring (RAIM)-based integration algorithm for multiple receivers. The test results showed that the proposed algorithm yields more accurate position information in urban areas.
机译:全球定位系统(GPS)是陆地车辆应用中使用最广泛的导航系统。在城市地区,GPS遭受信号强度不足,多径传播和非视线(NLOS)误差的困扰,因此变得难以获得准确而可靠的位置信息。为了提高GPS在城市地面车辆上的定位性能,提出了一种多接收机集成算法。多个接收器的伪距基于紧密耦合的方法进行集成,并且通过测试伪距的接近度来检测错误的测量结果。为了公平地比较伪距,需要补偿由于接收器位置之间的差异而引起的GPS误差和项。使用双差技术消除伪距中的GPS误差,并通过投影两对接收机之间的基线矢量来校正几何距离。为了测试和分析所提出的算法,进行了涉及实时数据的实验。将算法的定位性能与针对多个接收器的基于接收器自主完整性监控(RAIM)的集成算法的定位性能进行了比较。测试结果表明,该算法能够在城市地区产生更精确的位置信息。

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