测绘通报 ›› 2016, Vol. 0 ›› Issue (2): 75-78.doi: 10.13474/j.cnki.11-2246.2016.0053.
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DING Wenyu
Received:
2015-11-14
Online:
2016-02-25
Published:
2016-03-08
CLC Number:
DING Wenyu. Analysis of the Slant Wet Delay Measurements of GPS Using Precise Point Positioning Method[J]. 测绘通报, 2016, 0(2): 75-78.
[1] 何锡扬. 基于PPP技术的地基GPS 大气水汽反演与三维层析研究[D]. 武汉:武汉大学, 2010. [2] 毛节泰. GPS的气象应用[J]. 气象科技, 1993(4): 45-49. [3] BEVIS M, BUSINGER S, HERRING T A, et al. GPS Meteorology: Remote Sensing of Atmospheric Water Vapor Using the Global Positioning System[J]. Journal of Geophysics Research,1992,97(D14):15787-15801. [4] ROCKEN C, HOVE V T,JOHNSON J, et al. GPS/STORM-GPS Sensing of Atmospheric Water Vapor for Meteorology[J]. Atmos and Ocean Tech, 1995,12: 468-478. [5] 王小亚, 朱文耀, 丁金才,等. 上海地区GPS/STORM试验与结果[J]. 全球定位系统, 2000, 25(3): 6-10. [6] 王勇,柳林涛,刘根友.基于水汽辐射计与GPS 湿延迟的对比研究[J].大地测量与地球动力学,2005,25(4):110-113. [7] 张小红. 动态精密单点定位(PPP)的精度分析[J]. 全球定位系统, 2006(1): 7-11. [8] KOUBA J, HEROUX P. Precise Point Positioning Using IGS Orbit and Clock Products[J]. GPS Solutions, 2001, 5(2): 12-28. [9] 丁金才. GPS气象学及其应用[M]. 北京: 气象出版社, 2009. [10] BRAUN J, ROCKEN C, WARE R. Validation of Line-of-sight Water Vapor Measurements with GPS[J]. Radio Science, 2001,36(3):459-472. [11] NIELL A E, COSTER A J, SOLHEIM F S, et al. Comparison of Measurements of Atmospheric Wet Delay by Radiosonde, Water Vapor Radiometer, GPS, and VLBI[J]. Journal of Atmospheric and Oceanic Technology,2000(8):830-850. |
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