DocumentCode :
1141769
Title :
Gyro Misalignment and Encoder Quantization Effects During Multi-Axis Evaluation of Strapdown Gyros
Author :
Scheiman, Gerald E.
Author_Institution :
Army Inertial Guidance and Control Laboratory U. S. Army Missile Command Redstone Arsenal, Ala. 35809
Issue :
6
fYear :
1969
Firstpage :
891
Lastpage :
897
Abstract :
This paper presents a quantitative discussion of two error sources which affect the accuracy of data comparison between instrument outputs and reference angle computations during multi-axis evaluation of strapdown gyros. The error due to misalignment of gyro input axes is formulated in terms of closed-form solutions for typical relationships between the three table gimbal rotation histories. If the angular positions of the table gimbal axes are measured by shaft encoders, then any measurement has an uncertainty in the range from plus to minus one-half of the quantization level. It is shown that the effect of encoder quantization error on the computer transformed angles in the bodyfixed coordinate system can be divided into two parts: the initial uncertainty of the zero positions of the gimbals before table motion is begun, and all subsequent error contributions during table test. Typical data for gyro misalignment and encoder quantization error effects are presented.
Keywords :
Computer errors; Coordinate measuring machines; Geometry; History; Laboratories; Measurement uncertainty; Position measurement; Quantization; Shafts; Testing;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.1969.309963
Filename :
4103419
Link To Document :
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