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Applying an Expansion of the Second Derivatives of the Earth's Gravitational Potential in Modified Spherical Harmonics for Constructing and Estimating Its Models

机译:在改进的球形谐波中施加地球的重力潜力的第二衍生物的扩展,用于构建和估算其模型

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摘要

Second-order derivatives of the Earth's potential in a local north-oriented coordinate system are expanded in series of modified spherical harmonics. Linear relations are derived between the spectral coefficients of these series and the spectrum of the geopotential. Based on these relations, recurrent procedures are developed for estimating the geopotential coefficients from the spectrum of each derivative and, conversely, for simulating the spectrum from a known geopotential model. The very simple structure of the expressions for the derivatives is convenient for estimating the coefficients of the geopotential by the least squares method at a certain step of processing satellite gradiometry data. Since the new series are orthogonal, the method with a quadrature formula can be applied, which helps avoid aliasing errors caused by the truncation of the series. The spectral coefficients of the derivatives are estimated using the derived relations for different models on an average orbital sphere of the GOCE satellite and at other altitudes above the Earth's surface.
机译:地球对北方坐标系潜力的二阶衍生物在一系列修改的球形谐波中扩展。线性关系源于这些系列的光谱系数和地球势的光谱之间。基于这些关系,开发了用于估计来自每个衍生物的频谱的地球势系数的复发过程,并相反地,用于模拟来自已知的地理位能模型的光谱。衍生物的表达式的非常简单的结构方便在处理卫星思考数据的某一步骤中估计最小二乘法的基层势的系数。由于新系列是正交的,因此可以应用具有正交公式的方法,这有助于避免由该系列截断引起的锯齿误差。衍生物的光谱系数估计使用岩石卫星的平均轨道球体上的不同模型和地球表面上方的其他高度的不同模型的衍生关系。

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