Accuracy analysis of the airborne vector gravimetry algorithm based on two-dimensional random fields for gravity modeling

Y. Bolotin, V. Vyazmin
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引用次数: 1

Abstract

The airborne vector gravimetry is a technique to determine the gravity disturbance vector (GDV). In the paper, an accuracy analysis of a new approach to the direct GDV estimation given measurements along parallel flight lines is performed. The approach is based on modeling of the gravity field as a random field formed by two autoregressive models. One of the models is defined along a line and the other one across the lines. The GDV estimation problem is posed and solved by Kalman filtering and smoothing algorithms. The accuracy analysis of the presented approach is performed using the spectral analysis technique.
基于二维随机场的航空矢量重力建模算法精度分析
航空矢量重力测量是一种确定重力扰动矢量(GDV)的技术。本文给出了一种基于平行航线测量值的直接GDV估计新方法的精度分析。该方法基于将重力场建模为由两个自回归模型形成的随机场。其中一个模型是沿直线定义的,另一个是跨直线定义的。利用卡尔曼滤波和平滑算法提出并解决了GDV估计问题。利用光谱分析技术对该方法进行了精度分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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