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GPS Cycle Slip Detection Considering Satellite Geometry Based on TDCP/INS Integrated Navigation

机译:基于TDCP / INS组合导航的考虑卫星几何的GPS周跳检测

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This paper presents a means of carrier phase cycle slip detection for an inertial-aided global positioning system (GPS), which is based on consideration of the satellite geometry. An integrated navigation solution incorporating a tightly coupled time differenced carrier phase (TDCP) and inertial navigation system (INS) is used to detect cycle slips. Cycle-slips are detected by comparing the satellite-difference (SD) and time-difference (TD) carrier phase measurements obtained from the GPS satellites with the range estimated by the integrated navigation solution. Additionally the satellite geometry information effectively improves the range estimation performance without a hardware upgrade. And the covariance obtained from the TDCP/INS filter is used to compute the threshold for determining cycle slip occurrence. A simulation and the results of a vehicle-based experiment verify the cycle slip detection performance of the proposed algorithm.
机译:本文提出了一种用于惯性辅助全球定位系统(GPS)的载波相位周期滑移检测的方法,该方法基于对卫星几何形状的考虑。集成了紧密耦合的时差载波相位(TDCP)和惯性导航系统(INS)的集成导航解决方案可用于检测周跳。通过比较从GPS卫星获得的卫星差(SD)和时差(TD)载波相位测量值与集成导航解决方案估算的范围,可以检测出周跳。此外,卫星的几何信息可以有效地提高测距性能,而无需进行硬件升级。从TDCP / INS滤波器获得的协方差用于计算确定循环滑移发生的阈值。仿真和基于车辆的实验结果验证了所提出算法的循环滑移检测性能。

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