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首页> 外文期刊>Journal of Geodesy >Optimal regularization for geopotential model GOCO02S by Monte Carlo methods and multi-scale representation of density anomalies
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Optimal regularization for geopotential model GOCO02S by Monte Carlo methods and multi-scale representation of density anomalies

机译:蒙特卡罗方法和密度异常的多尺度表示法对GOCO02S势能模型进行最佳正则化

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摘要

GOCO02S is a combined satellite-only geopotential model, regularized from degrees 180 to 250 of the expansion into spherical harmonics. To investigate the start of the regularization, the normal equations of GOCO02S have been used to compute additional geopotential models by regular-izations beginning at degrees 160,200,220 and with no regularization. Three different methods are applied to determine where to start the regularization. The simplest one considers the decrease of the degree variances of the not regularized solution. The second one tests for the same solution the hypothesis that the square root of the degree variance is equal to the value computed by the estimated harmonic coefficients. If the hypothesis has to be rejected for a certain degree, the error degree variance is so large that the estimated harmonic coefficients cannot be trusted anymore so that the regularization has to start at that degree. The third method uses the density anomalies by which the disturbing potential is caused resulting from the geopotential model. The density anomalies are well suited to visualize the effects of the higher degree harmonics. In contrast to the base functions of the harmonic coefficients with global support, the density anomalies are expressed by a B-spline surface with local support. Multi-scale representations were applied and the hypotheses tested that the wavelet coefficients are equal to zero. Accepting the hypotheses means that nonsignificant wavelet coefficients were determined which lead to nonsignificant density anomalies. By comparing these anomalies for different reg-ularizations, the degree where to start the regularization is determined. It turns out that beginning the regularization at degree 180, as was done for GOCO02S, is a correct choice.
机译:GOCO02S是一个组合的仅卫星的地球电势模型,其正规化范围从180度到250度扩展为球形谐波。为了研究正则化的开始,已使用GOCO02S的正规方程通过以度160,200,220开始且没有正则化的正则化来计算其他地势模型。应用了三种不同的方法来确定从哪里开始正则化。最简单的方法是考虑不正规化解的度方差的减小。第二个测试对于相同的解决方案的假设是,度方差的平方根等于估计的谐波系数计算出的值。如果必须在一定程度上拒绝该假设,则误差程度方差太大,以致估计的谐波系数不再可信赖,因此正则化必须从该程度开始。第三种方法使用密度异常,通过该密度异常可引起地势模型。密度异常非常适合可视化高次谐波的影响。与具有全局支持的谐波系数的基本函数相反,密度异常由具有局部支持的B样条曲面表示。应用了多尺度表示法,并检验了小波系数等于零的假设。接受假设意味着确定了不重要的小波系数,从而导致不明显的密度异常。通过比较这些异常以进行不同的正则化,可以确定开始正则化的程度。事实证明,像对GOCO02S一样,在180度开始进行正则化是正确的选择。

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