首页> 外文期刊>Geophysical Research Letters >A high-quality global gravity field model from CHAMP GPS tracking data and accelerometry (EIGEN-1S) - art. no. 1692
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A high-quality global gravity field model from CHAMP GPS tracking data and accelerometry (EIGEN-1S) - art. no. 1692

机译:来自CHAMP GPS跟踪数据和加速度计(EIGEN-1S)的高质量全球重力场模型-art。没有。 1692

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1] Using three months of GPS satellite-to-satellite tracking and accelerometer data of the CHAMP satellite mission, a new long-wavelength global gravity field model, called EIGEN-1S, has been prepared in a joint German-French effort. The solution is derived solely from analysis of satellite orbit perturbations, i.e. independent of oceanic and continental surface gravity data. EIGEN-1S results in a geoid with an approximation error of about 20 cm in terms of 5 x 5 degree block mean values, which is an improvement of more than a factor of 2 compared to pre-CHAMP satellite-only gravity field models. This impressive progress is a result of CHAMP's tailored orbit characteristics and dedicated instrumentation, providing continuous tracking and direct on-orbit measurements of non-gravitational satellite accelerations. [References: 11
机译:1]在德法两国的共同努力下,利用CHAMP卫星任务的三个月GPS卫星到卫星的跟踪和加速度计数据,一个新的长波长全球重力场模型EIEI-1S已经准备就绪。该解决方案仅来自对卫星轨道扰动的分析,即独立于海洋和大陆表面重力数据。 EIGEN-1S产生的大地水准面具有约20 cm的近似误差(以5 x 5度的块平均值表示),与仅使用CHAMP的纯卫星重力场模型相比,改进了2倍以上。 CHAMP量身定制的轨道特性和专用仪器的结果是令人印象深刻的进步,它可以对非重力卫星加速度进行连续跟踪和直接在轨测量。 [参考:11

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