Earth, Planets and Space
Online ISSN : 1880-5981
Print ISSN : 1343-8832
Ranging algebraically with more observations than unknowns
Joseph L. AwangeYoichi FukudaShuzo TakemotoIsmail L. AteyaErik W. Grafarend
Author information
JOURNAL FREE ACCESS

2003 Volume 55 Issue 7 Pages 387-394

Details
Abstract
In the recently developed Spatial Reference System that is designed to check and control the accuracy of the three-dimensional coordinate measuring machines and tooling equipment (Metronom US., Inc., Ann Arbor: http: //www. metronomus. com), the coordinates of the edges of the instrument are computed from distances of the bars. The use of distances in industrial application is fast gaining momentum just as in Geodesy and in Geophysical applications and thus necessitating efficient algorithms to solve the nonlinear distance equations. Whereas the ranging problem with minimum known stations was considered in our previous contribution in the same Journal, the present contribution extends to the case where one is faced with many distance observations than unknowns (overdetermined case) as is usually the case in practise. Using the Gauss-Jacobi Combinatorial approach, we demonstrate how one can proceed to position without reverting to iterative and linearizing procedures such as Newton's or Least Squares approach.
Content from these authors

This article cannot obtain the latest cited-by information.


この記事はクリエイティブ・コモンズ [表示 4.0 国際]ライセンスの下に提供されています。
https://creativecommons.org/licenses/by/4.0/deed.ja
Previous article Next article
feedback
Top