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Comparison of Present SST Gravity Field Models
作者姓名:LUO  Jia  SHI  Chuang  ZOU  Xiancai  WANG  Haihong
作者单位:School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, China
基金项目:Supported by the National Natural Science Foundation of China (No.40574005,No.40304001,No.40374006,No.40234039) .
摘    要:IntroductionSince 2000 , with the launch of CHAMP satellite,several series of high-accuracy and high-resolutionstatic Earth’s gravityfield models have been createdbased on aboundent SST data. With these models ,the research in solid geophysics ,oceangraphy,andgeodesy can be promoted greatly1].In this paper ,the SSTgravity models’accura-cyin various frequently domainis studied.First-ly,the difference among these models is compu-ted and compared,and then their accuracyis an-alyzed. Fina…

关 键 词:卫星跟踪  地心力  物理大地测量  SST
文章编号:1009-5020(2006)03-175-05
收稿时间:2006-04-10

Comparison of present SST gravity field models
LUO Jia SHI Chuang ZOU Xiancai WANG Haihong.Comparison of Present SST Gravity Field Models[J].Geo-Spatial Information Science,2006,9(3):175-179.
Authors:Luo Jia Ph D  Shi Chuang  Zou Xiancai  Wang Haihong
Institution:LUO Jia SHI Chuang ZOU Xiancai WANG Haihong
Abstract:Taking the main land of Europe as the region to be studied, the potential of the new satellite gravity technique: satellite-to-satellite tracking (SST) and improving the accuracy of regional gravity field model with the SST models are investigated. The drawbacks of these models are discussed. With GPM98C as the reference, the gravity anomaly residuals of several other models, the latest SST global gravity field models (EIGEN series and GGM series), were computed and compared. The results of the comparison show that in the selected region, some systematic errors with periodical properties exist in the EIGEN and GGM's S series models in the high degree and order. Some information that was not shown in the classic gravity models is detected in the low and middle degree and order of EIGEN and GGM's S series models. At last, the effective maximum degrees and orders of SST models are suggested. Supported by the National Natural Science Foundation of China (No. 40574005, No. 40304001; No. 40374006; No. 40234039).
Keywords:satellite-to-satellite tracking  gravity field  CHAMP  GRACE
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