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气压对GPS大气可降水量解算的影响分析 被引量:21

IMPACT ANALYSIS OF PRESSURE PARAMETER ON INVERSION OF GPS PRECIPITABLE WATER VAPOR
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摘要 基于香港卫星定位参考站网的实测气压及GPS观测数据,分析气压对天顶总延迟(ZTD)和天顶静力学延迟(ZHD)解算精度的影响。结果表明,在GPS/MET的业务工作中,ZTD对GPS数据处理过程中所采用的气压参数的精度要求较低,甚至可以采用某些气压估计模型(如GPT模型)获得气压参数值;在对天顶静力学延迟参数进行估计时,则需采用精度较高的实测气压参数;对于气象台站和GPS测站位置不一致的情形,应根据两者之间的位置关系,作与高度相关的偏差改正,以便得到GPS测站上高精度的气压参数。 Based on the GPS observations and site-specific sitioning reference station, the effect of pressure parameters on pressure observations of the Hong Kong satellite poestimation of ZTD and ZHD were analyzed. The result shown, in the practical operation of the GPS/MET, the estimate of the ZTD parameters are less depended on the accuracy of the pressure, you can even use the GPT model to get these pressure parameters. However, when estimating the ZHD, it is required to use the pressure observations in high accuracy. For those stations that the GPS receiver and the pressure sensor are not located in the same position, the correction due to the height should be made.
出处 《大地测量与地球动力学》 CSCD 北大核心 2013年第2期87-90,95,共5页 Journal of Geodesy and Geodynamics
基金 国家863计划项目(2012AA120902) 大地测量与地球动力学国家重点实验室开放基金(SKLGED2013-4-3-E)
关键词 GPS气象学 气压 天顶延迟参数 天顶静力学延迟 大气可降水量 GPS/MET pressure zenith tropospheric delay zenith hydrostatic delay precipitable water vapor
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参考文献13

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