大地形变分析中全局一致性检验的一种严格且用户友好的算法

K. Nowel
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引用次数: 3

摘要

稳定参考点的识别是大地测控网变形分析的关键环节。今天,已经开发了两种基本不同的方法来完成这项任务:采用最小二乘估计的全局一致性测试和采用稳健m估计的稳健方法。整体一致性测试被广泛接受。然而,全局一致性检验的严格算法并不容易使用,在实践中通常采用简化形式。当然,这种简化的算法并不严谨,也不能给出最优的结果。本文提出了一种严格的、用户友好的算法。该算法背后的思想来自广义似然比检验理论,该理论目前在数理统计中得到广泛应用。在一个简单的模拟大地网上验证了该算法的严谨性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Rigorous and User-Friendly Algorithm for Global Congruency Test in Geodetic Deformation Analysis
Identification of stable reference points is the most critical stage in deformation analysis of geodetic control networks. Today, two basically different approaches have been developed to this task: a global congruency test which employs least squares estimation and a robust approach which employs robust M-estimation. The global congruency test is more widely accepted. However, a rigorous algorithm of global congruency test is not easy to use and its simplified form is often used in practice. Of course, such simplified algorithm is not rigorous and does not give optimal results. This paper presents a rigorous and, at the same time, a user-friendly algorithm. The idea behind this algorithm comes from the theory of generalized likelihood ratio testing which is today widely used in mathematical statistics. The rigorousness of the presented algorithm was proved on a simple simulated geodetic network.
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