GNSS World of China

Volume 44 Issue 6
Dec.  2019
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ZHOU Jianying, CHEN Guoheng, ZHANG Huijun. Analysis of tropospheric delay application in GAMIT short baseline calculation[J]. GNSS World of China, 2019, 44(6): 92-96. doi: DOI:10.13442/j.gnss.1008-9268.2019.06.015
Citation: ZHOU Jianying, CHEN Guoheng, ZHANG Huijun. Analysis of tropospheric delay application in GAMIT short baseline calculation[J]. GNSS World of China, 2019, 44(6): 92-96. doi: DOI:10.13442/j.gnss.1008-9268.2019.06.015

Analysis of tropospheric delay application in GAMIT short baseline calculation

doi: DOI:10.13442/j.gnss.1008-9268.2019.06.015
  • Publish Date: 2019-12-15
  • In this paper short baseline vector data of plain area, hilly area and island area from GNSS-C network in the coastal areas of south China are selected .Two different estimation strategy with and without tropospheric delay estimation are used to estimate the accuracy of data process in different geographic environment,  The experimental results show that both the accuracy U component with  tropospheric delay estimation and without tropospheric delay estimation are good in the three regions, but the accuracy of the latter is better than the former.In terms of baseline repeatability of the whole network, the accuracy of solution with tropospheric delay estimation and without the estimation of tropospheric delay is good, but the accuracy of the former is slightly better than the latter.

     

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  • [1]
    李征航, 黄劲松.GPS测量与数据处理[M].武汉:武汉大学出版社, 2005.
    [2]
    韩雪丽, 岳彩亚.浅析对流层对GNSS基线解算的影响[J].北京测绘, 2016(4):6-9,31.
    [3]
    安向东,杨登科.测站间高差对短时段GPS基线解算的影响[J].大地测量与地球动力学, 2016, 36(6):534-538.
    [4]
    舒海翅, 郑敏.河谷区对流层延迟对GPS短基线解算的影响分析[J].人民长江, 2010, 41(20):60-62.
    [5]
    章迪, 郭际明, 陈雪丰, 等.对流层延迟估计对高差较大短基线解算的影响[J].大地测量与地球动力学, 2014, 34(2):146-149.
    [6]
    王巍.对流层延迟对高差较大GPS测站短基线时间序列的影响分析[J].大地测量与地球动力学, 2018, 38(5):504-509.
    [7]
    赵章明, 冯径, 洪亮.卫星定位中对流层延迟模型对比分析[J].测绘通报, 2016(11):18-21,136.
    [8]
    刘晨,郑南山,丰秋林.全球对流层延迟模型的质量评价[J].大地测量与地球动力学, 2018, 38(10):1005-1010.
    [9]
    丁晓光.对流层延迟改正在GPS数据处理中的应用与研究[D].西安:长安大学, 2009.
    [10]
    陈威.3种对流层干延迟模型在中国低纬度地区的精度分析[J].地理空间信息, 2014, 12(2):114-115.
    [11]
    袁丰波, 潘元进, 何美琳, 等.GPS对流层延迟模型的比较分析[J].地理空间信息, 2012, 10(2):119-121.
    [12]
    葛茂荣, 刘经南.GPS定位中对流层折射估计研究[J].测绘学报, 1996, 25(4):285-291.
    [13]
    HERRIN G A, KING R W, FLOYD M A,et al.GAMIT reference manual, release 10.6[EB/OL].(2010-10-28)[2018-01-15].http://www-gpsg.mit.edu/~simon/gtgk/GAMIT Ref.pdf.
    [14]
    吕成亮, 王晓珅.GAMIT基线解算质量指标分析[J].城市勘测,2015(6):59-62.
    [15]
    中国国家标准化管理委员会.GB/T 18314-2009.全球定位系统(GPS)测量规范[S].北京:中国标准出版社,2009.
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