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First Results of Field Absolute Calibration of the GPS Receiver Antenna at Wuhan University

机译:武汉大学GPS接收天线的场绝对校准的初步结果

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摘要

GNSS receiver antenna phase center variations (PCVs), which arise from the non-spherical phase response of GNSS signals have to be well corrected for high-precision GNSS applications. Without using a precise antenna phase center correction (PCC) model, the estimated position of a station monument will lead to a bias of up to several centimeters. The Chinese large-scale research project “Crustal Movement Observation Network of China” (CMONOC), which requires high-precision positions in a comprehensive GPS observational network motived establishment of a set of absolute field calibrations of the GPS receiver antenna located at Wuhan University. In this paper the calibration facilities are firstly introduced and then the multipath elimination and PCV estimation strategies currently used are elaborated. The validation of estimated PCV values of test antenna are finally conducted, compared with the International GNSS Service (IGS) type values. Examples of NONE antenna calibrations from our calibration facility demonstrate that the derived PCVs and IGS type mean values agree at the 1 mm level.
机译:对于高精度GNSS应用,必须对由GNSS信号的非球形相位响应引起的GNSS接收器天线相位中心变化(PCV)进行校正。在不使用精确的天线相位中心校正(PCC)模型的情况下,车站纪念碑的估计位置将导致高达几厘米的偏差。中国的大型研究项目“中国地壳运动观测网络”(CMONOC)要求在一个全面的GPS观测网络中提供高精度位置,以推动建立一套位于武汉大学的GPS接收器天线的绝对场标定。本文首先介绍了校准工具,然后阐述了当前使用的多径消除和PCV估计策略。最后,与国际GNSS服务(IGS)类型值进行比较,验证测试天线的PCV估计值。来自我们的校准设施的NONE天线校准示例表明,得出的PCV和IGS类型平均值在1 mm的水平上一致。

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