DocumentCode
3559021
Title
Extension of a two-step calibration methodology to include nonorthogonal sensor axes
Author
Foster, C.C. ; Elkaim, G.H.
Author_Institution
UC, Santa Cruz, CA
Volume
44
Issue
3
fYear
2008
fDate
7/1/2008 12:00:00 AM
Firstpage
1070
Lastpage
1078
Abstract
We present an extension of the nonlinear two-step estimation algorithm originally developed for the calibration of solid-state strapdown magnetometers. We expand the algorithm to include nonorthogonality within a sensor set for both two- and three-axis sensors. Nonorthogonality can result from manufacturing issues, installation geometry, and in the case of magnetometers, from soft iron bias errors. Simulation studies for both two- and three-axis sensors show convergence of the improved algorithm to the true values, even in the presence of realistic measurement noise. Finally the algorithm is experimentally validated on a low-cost solid-state three-axis magnetometer set, which shows definite improvement postcalibration. We note that the algorithm is general and can be applied to any two- or three-axis sensor set (such as accelerometers) with an error model consisting of scale, offset, and nonorthogonality errors.
Keywords
calibration; convergence of numerical methods; error analysis; magnetic sensors; magnetometers; error model; installation geometry; measurement noise; nonlinear two-step estimation algorithm; nonorthogonal sensor axes; solid-state strapdown magnetometer; three-axis sensors; two-axis sensors; two-step calibration methodology; Accelerometers; Calibration; Convergence; Geometry; Iron; Magnetic sensors; Magnetometers; Manufacturing; Noise measurement; Solid state circuits;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
Conference_Location
7/1/2008 12:00:00 AM
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.2008.4655364
Filename
4655364
Link To Document