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差分码偏差对QZSS单点定位的影响

Influence of differential code bias on QZSS single point positioning

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【作者】 李佳豪贾小林杜彦君徐煜

【Author】 LI Jiahao;JIA Xiaolin;DU Yanjun;XU Yu;College of Geological Engineering and Geomatics, Chang’an University;Xi’an Research Institute of Surveying and Mapping;College of Geomatics, Xi’an University of Science and Technology;

【通讯作者】 贾小林;

【机构】 长安大学地质工程与测绘学院西安测绘研究所西安科技大学测绘科学与技术学院

【摘要】 为探究差分码偏差(DCB)对准天顶卫星系统(QZSS)伪距单点定位(SPP)的影响,推导了QZSS伪距单点定位时间群延迟(TGD)和DCB改正模型,并选取6个MGEX (Multi-GNSS Experiment)测站连续7 d的观测数据按照两种不同方案进行实验.结果表明:DCB产品月稳定度较好,无明显波动,各颗卫星月稳定度优于0.2 ns,与TGD互差值优于2.5 ns;TGD/DCB改正对SPP精度影响为米级,经TGD/DCB改正后水平方定位精度可从4~9 m提升至3~6 m,高程方向可从7~9 m提升至5~7 m,提升率为10%~46%.可见DCB改正对单点定位精度影响较大,在定位解算中不可忽略.

【Abstract】 To investigate the effect of differential code bias on Quasi-Zenith Satellite System(QZSS)pseudorange single-point positioning, this paper derives a differential code bias(DCB) and timing group delay(TGD) correction model for QZSS pseudorange single-point positioning, and selects 6 Multi-GNSS Experiment(MGEX) stations for 7 day of continuous observation data to conduct experiments according to two different schemes. The results show that the monthly stability of DCB products is good without obvious fluctuations, and the monthly stability of each satellite is better than 0.2 ns, and the mutual difference value with TGD is better than 2.5 ns. The impact of TGD/DCB correction on SPP accuracy is of meter level, and the horizontal positioning accuracy can be improved from 4–9 m to 3–6 m after TGD/DCB correction, and the elevation direction can be improved from 7–9 m to 5–7 m, and the improvement rate is about 10%–46%,which shows that DCB has a large impact on the single-point positioning accuracy and cannot be ignored in the positioning solution.

【基金】 国家自然科学基金(41874041)
  • 【文献出处】 全球定位系统 ,GNSS World of China , 编辑部邮箱 ,2023年02期
  • 【分类号】P228
  • 【下载频次】12
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