GNSS World of China

Volume 46 Issue 2
Apr.  2021
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LI Yanhong, CHENG Fang, SHEN Pengli, XIAO Xia. Study on the influence of ocean tidal load on precise point positioning[J]. GNSS World of China, 2021, 46(2): 25-31. doi: 10.12265/j.gnss.2020090401
Citation: LI Yanhong, CHENG Fang, SHEN Pengli, XIAO Xia. Study on the influence of ocean tidal load on precise point positioning[J]. GNSS World of China, 2021, 46(2): 25-31. doi: 10.12265/j.gnss.2020090401

Study on the influence of ocean tidal load on precise point positioning

doi: 10.12265/j.gnss.2020090401
  • Received Date: 2020-09-04
    Available Online: 2021-04-28
  • Publish Date: 2021-05-13
  • A total of 85 IGS stations located inland, on the coast and on the islands are selected from around the world, and the position of these stations are solved by considering adding the global ocean tide model (GOT4.8) or not. The effect of ocean tidal load on the precise point positioning(PPP) accuracy of IGS stations in different geographical regions is analyzed and studied. The results show that ocean tidal load has the greatest impact on the station located on the island. After adding the ocean tide correction, about 91% of the positioning error of the island stations are improved, and the proportions of coastal stations and inland stations are about 85% and 82%, respectively. The ocean tide correction has almost no impact on the N direction of the station, and has little impact on the E direction, and has the greatest positive impact on the U direction. Among them, the impact range in the U direction of the island station is 2~8 mm, and that of some stations are close to the centimeter level.

     

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  • [1]
    张小红, 李星星, 李盼. GNSS精密单点定位技术及应用进展[J]. 测绘学报, 2017, 46(10): 1399-1407.
    [2]
    赵红, 张勤, 黄观文, 等. 基于不同海潮模型研究海潮负荷对GPS精密定位的影响[J]. 大地测量与地球动力学, 2012, 32(5): 108-112.
    [3]
    ANDERSEN O B. Ocean tides in the northern north-Atlantic and adjacent seas from ERS-1 altimetry[J]. Journal of geophysical research-oceans, 1994, 99(C11): 557-573. DOI: 10.1029/94JC01433
    [4]
    丁倩云, 孙宪坤, 尹玲, 等. 近海潮汐效应对上海地区精密定位的影响[J]. 全球定位系统, 2018, 43(3): 32-38.
    [5]
    赵红, 张勤, 徐超, 等. 潮汐效应对香港地区GPS PPP的影响[J]. 大地测量与地球动力学, 2016, 36(1): 6-10.
    [6]
    张捍卫, 郑勇, 赵方泉. 海洋负荷潮汐对测站位移影响的理论研究[J]. 大地测量与地球动力学, 2003, 23(1): 69-73.
    [7]
    XU G C. GPS理论、算法与应用[M]. 北京: 清华大学出版社, 2011.
    [8]
    肖亮明, 蒋胜华. 潮汐对精密单点定位的影响[J]. 测绘信息与工程, 2010, 35(1): 19-21.
    [9]
    张杰, 李斐, 楼益栋, 等. 海潮负荷对GPS精密定位的影响[J]. 武汉大学学报(信息科学版), 2013, 38(12): 1400-1404.
    [10]
    朱干章. 潮汐及环境负荷对GPS高程影响的研究[J]. 城市勘测, 2009(2): 75-78.
    [11]
    邹璇, 姜卫平. 潮汐改正对精密GPS基线解算的影响[J]. 测绘信息与工程, 2008, 33(1): 6-8.
    [12]
    李婧, 李潭欣. 海潮负荷对中国区域CORS站点精密定位影响[J]. 海洋测绘, 2019, 39(5): 75-77, 82.
    [13]
    臧建飞, 范士杰, 易昌华, 等. 实时精密单点定位的远海实时GPS潮汐观测[J]. 测绘科学, 2017, 42(6): 155-160.
    [14]
    刘焱雄, 周兴华, 张卫红, 等. GPS精密单点定位精度分析[J]. 海洋测绘, 2005, 25(1): 44-46.
    [15]
    李博峰, 葛海波, 沈云中. 无电离层组合、UOFC和非组合精密单点定位观测模型比较[J]. 测绘学报, 2015, 44(7): 734-740.
    [16]
    李浩军, 王解先, 陈俊平, 等. 基于GNSS网络的实时精密单点定位及精度分析[J]. 地球物理学报, 2010, 53(6): 1302-1307.
    [17]
    赵文娇, 党亚民, 成英燕, 等. 海洋潮汐及其参数选取方法对GPS基线解算精度的影响分析[J]. 导航定位学报, 2013, 1(2): 42-45.
    [18]
    冯梓航. 基于精密单点定位技术的海潮负荷位移反演研究[D]. 济南: 山东大学, 2019.
    [19]
    刘辛中. 基于GPS测定海洋分潮方法研究[D]. 青岛: 国家海洋局第一海洋研究所, 2013.
    [20]
    梁寅, 李星星, 畅毅, 等. 静态精密单点定位的精度和收敛性分析[J]. 测绘工程, 2010, 19(2): 32-34.
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