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Traceability in metrology and uncertainty evaluation of a calibration system for GPS receivers

机译:GPS接收器校准系统的计量和不确定度评价的可追溯性

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GPS is already a main method of positioning measurement in geodesy and is applied widely in many fields. For maintaining and ensuring the accuracy of positioning, an accurate and efficient system for calibration the GPS receivers must be established. A highly accurate GPS calibration network tied to the ITRF coordinates of IGS stations, can be effectively used to evaluate the performance of GPS receivers. This study addresses the feasibility of establishing a system for calibrating GPS receivers and the system's traceabilty in metrology. Uncertainties of the GPS calibration network established and maintained by NML (National Measurement Laboratory, Taiwan) are evaluated based on the method suggested by the ISO (International Organization for Standardization). The uncertainties of NML network coordinates are obtained and used as a basis for calibration. The results of the slope distances between pillars measured by the GPS processing units and the precise EDM units are discussed. Analytical results indicate that the 3D expanded uncertainty of the main station TNML of the network in the ITRF system is around 33.2 mm at the 95% confidence level. The 3D expanded uncertainties of the calibration points of ultra-short distance network and short distance network are evaluated to be about 22.2 mm and 3.4 mm in relation to the main station TNML, respectively, at the 95% confidence level. The precision of the NML network coordinates suffices to calibrate the geodetic and navigational GPS receivers of regional users and is available through the Internet.
机译:GPS已经是在大地测量中定位测量的主要方法,并且在许多领域中广泛应用。为了维护和确保定位的准确性,必须建立准确,高效的校准GPS接收器系统。可以有效地使用与IGS站的ITRF坐标相关的高度精确的GPS校准网络,以评估GPS接收器的性能。本研究解决了建立校准GPS接收器的系统的可行性以及系统在计量学中的修道院。基于ISO(标准化国际组织)所建议的方法,评估由NML(国家测量实验室,台湾)建立和维护的GPS校准网络的不确定性。获得了NML网络坐标的不确定性,并用作校准的基础。讨论了GPS处理单元测量的柱之间的斜率距离的结果和精确的EDM单元。分析结果表明,ITRF系统中网络主站TNML的3D扩大不确定性在95%置信水平下约为33.2毫米。在95%的置信水平,超短距离网络和短距离网络的校准点的校准点的校准点的不确定性分别评估为大约22.2毫米和3.4mm。 NML网络坐标的精度足以校准区域用户的大地测量和导航GPS接收器,并通过互联网获得。

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