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Application of DGPS/INS to automobile navigation with latency compensation

机译:DGPS / INS在具有时延补偿的汽车导航中的应用

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Differential Global Positioning System (DGPS) techniques are frequently used to correct for ranging errors common to two receivers, one of which is at a known position. One such source of error is selective availability (SA). A time delay (latency) is inherent between the generation of pseudo-range corrections and their application by the user, and can result in large residual errors. The data latency of the DGPS correction is a fundamental limitation on DGPS performance accuracies. These corrections can be predicted for relatively short periods of time. In this paper, an innovative methodology is developed which predicts the corrections and compensates the GPS data in real time. It also takes care of any transients in the DGPS data and/or GPS data in real time. This methodology has been applied to automobile navigation and tested in a DGPS/INS system. For these experiments, we used a 12-channel Ashtech XII GPS receiver. The INS system included a 3-axis Hitachi HGA-D fiber-optic gyro, a 3-axis 177 2g accelerometer by NeuwGhent Technology, Inc., and a Vector 2x electronic compass by Precision Navigation.
机译:差分全球定位系统(DGPS)技术经常用于校正两个接收器共有的测距误差,其中一个位于已知位置。此类错误来源之一是选择性可用性(SA)。在伪距校正的生成和用户对其进行应用之间,固有的时间延迟(延迟)会导致较大的残留误差。 DGPS校正的数据等待时间是对DGPS性能准确性的基本限制。可以在相对较短的时间段内预测出这些校正。在本文中,开发了一种创新的方法,该方法可以预测校正并实时补偿GPS数据。它还实时处理DGPS数据和/或GPS数据中的任何瞬变。该方法已应用于汽车导航,并在DGPS / INS系统中进行了测试。对于这些实验,我们使用了12通道Ashtech XII GPS接收器。 INS系统包括3轴日立HGA-D光纤陀螺仪,NeuwGhent Technology,Inc.的3轴177 2g加速度计和Precision Navigation的Vector 2x电子罗盘。

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