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首页> 外文期刊>Studia Geophysica et Geodaetica >Geoid and Sea Surface Topography Derived from ERS-1 Altimeter Data by the Adjoint Method
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Geoid and Sea Surface Topography Derived from ERS-1 Altimeter Data by the Adjoint Method

机译:通过伴随法从ERS-1高度计数据得出的大地水准面和海面地形

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摘要

A method for splitting sea surface height measurements from satellite altimetry into geoid undulations and sea surface topography is presented. The method is based on a combination of the information from altimeter data and a dynamic sea surface height model. The model consists of geoid undulations and a quasi-geostrophic model for expressing the sea surface topography. The goal is the estimation of those values of the parameters of the sea surface height model that provide a least-squares fit of the model to the data. The solution is accomplished by the adjoint method which makes use of the adjoint model for computing the gradient of the cost function of the least-squares adjustment and an optimization algorithm for obtaining improved parameters. The estimation is applied to the North Atlantic. ERS-1 altimeter data of the year 1993 are used. The resulting geoid agrees well with the geoid of the EGM96 gravity model.
机译:提出了一种将卫星测高仪的海面高度测量值分成大地水准面起伏和海面地形的方法。该方法基于来自高度计数据的信息和动态海平面高度模型的组合。该模型由大地水准面波动和用于表达海面地形的准地转模型组成。目标是对海面高度模型的参数的那些值进行估计,以提供该模型对数据的最小二乘拟合。该解决方案是通过使用伴随模型计算最小二乘调整的成本函数的梯度的伴随方法和用于获得改进参数的优化算法来实现的。该估计将应用于北大西洋。使用了1993年的ERS-1高度计数据。得到的大地水准面与EGM96重力模型的大地水准面非常吻合。

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