DocumentCode
1122812
Title
Iterative Optimal Orthogonalization of the Strapdown Matrix
Author
Bar-Itzhack, Itzhack Y.
Author_Institution
Technion-Israel Institute of Technology Haifa, Israel
Issue
1
fYear
1975
Firstpage
30
Lastpage
37
Abstract
This paper treats the problem of finding an orthogonal matrix which is the closest, in the Forbenius norm, to a given nonorthogonal matrix. This nonorthogonal matrix is the result of a fast but rather inaccurate computation of the well-known direction cosine matrix (DCM) of a strapdown inertial navigation system. The known closed-form solution to this problem is rederived using the directional derivative method, and the conditions for minimum distance are derived and discussed. A new iterative technique for solving this problem is derived as a result of the application of the gradient projection technique and the directional derivative method. The practical computational problems involved in this technique are discussed. The new technique is demonstrated by three examples. Although particular attention is given to the 3 X 3 direction cosine matrix, the conclusions are nonetheless valid higher order matries.
Keywords
Aerospace control; Aerospace simulation; Closed-form solution; Computational modeling; Euclidean distance; Inertial navigation; Iterative methods; Lagrangian functions; Pollution measurement; Symmetric matrices;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.1975.308025
Filename
4101353
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