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Preliminary Evaluation of Baseline Relative Accuracies Using L1 Frequency Observations of Navigation-Grade GARMIN Receivers

机译:使用导航级GARMIN接收器的L1频率观测值初步评估基线相对精度

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摘要

Handheld navigation global positioning system (GPS) receivers are significantly cheaper and their position determination accuracy is less than their geodetic-grade counterparts. Although the main observable in most low-cost handheld GPS receivers is the coarse acquisition (C/A) code, some receive L1 frequency observations and utilize them to smooth the code measurements. In this technical paper, we examined the use of the C/A code and L1 phase observations captured by two GARMIN eTrex receivers in a postprocessing mode. We used software applications that send low level commands to download and save the receiver data stream and convert the observations into standard RINEX file format. Nineteen baselines with different lengths were observed using the eTrex receivers and dual frequency geodetic-grade receivers. The baseline lengths were derived from the eTrex observations and compared to corresponding ones derived from the higher accuracy geodetic-grade receiver observations. Several tests were conducted to analyze the effect of potential error sources on the achieved accuracy. The results showed that low satellite angles and existing cycle slips contributed to the errors in the processed eTrex data. The implementation of a cycle slip detection algorithm and their subsequent deletion significantly enhanced the obtained baseline relative accuracy to a finally limited range of 1.8-13.4 cm/km.
机译:手持导航全球定位系统(GPS)接收机要便宜得多,并且其位置确定精度要比大地测量级的接收机低。尽管在大多数低成本手持式GPS接收机中主要观察到的是粗采集(C / A)码,但有些接收L1频率观测值并利用它们来平滑代码测量。在本技术论文中,我们检查了两个GARMIN eTrex接收器以后处理方式捕获的C / A码和L1相位观测值的使用。我们使用发送低级命令的软件应用程序来下载和保存接收器数据流,并将观测值转换为标准RINEX文件格式。使用eTrex接收器和双频大地测量级接收器观察到19个不同长度的基线。基线长度是从eTrex观测值得出的,并与从更高精度的大地测量级接收器观测值得出的相应长度进行了比较。进行了几次测试,以分析潜在错误源对所获得准确性的影响。结果表明,较低的卫星角和现有的周跳会造成处理后的eTrex数据中的误差。循环打滑检测算法的实施及其后续删除操作将获得的基线相对精度大大提高到最终的1.8-13.4 cm / km有限范围。

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