Title
Identification Method Of Sensor Directions And Sensitivities In Multi-Axis Accelerometer (Actual Measurement Of Direction Tensor And Sensitivity Tensor)
Abstract
An accelerometer generally has direction gaps between the package and the actual sensors. Conventional accelerometer calibration methods, e.g., ISO standard, do not consider this direction gap. This study proposes a new calibration method. The method uses a new examination system with a parallel linkage exciter mechanism. The exciter rotates a target accelerometer in a uniform circular motion, and the posture of the accelerometer is kept constant against external coordinates. The required torque for the rotation is small and constant because the rotation components are balanced with counterweights. Therefore, the exciter applies a stable sine wave acceleration to the accelerometer. This method contributes not only to the accuracy of input acceleration but also to the removal of offset noise. In addition, the input acceleration is calculated only by one differential computation, whereas an ordinary mechanism requires a second order differential. From the accelerometer output, a plane including the actual sensor direction is detected by the sine curve profile. The direction of the actual sensor is the line of intersection of two measured planes. For a 3-axis accelerometer, measurement 2 times is enough to determine all actual sensor directions and sensitivities with this method (measurement one time is enough for a 2-axis accelerometer). Actual sensor directions and sensitivities are experimentally examined. The result is consistent with the data sheet of the test accelerometer.
Year
DOI
Venue
2013
10.20965/jrm.2013.p0408
JOURNAL OF ROBOTICS AND MECHATRONICS
Keywords
Field
DocType
accelerometer, sensor direction, sensitivity correction, coordinate conversion, multi-axis examination
Tensor,Accelerometer,Control theory,Computer science,Acoustics,Geographic coordinate conversion
Journal
Volume
Issue
ISSN
25
2
0915-3942
Citations 
PageRank 
References 
0
0.34
0
Authors
5
Name
Order
Citations
PageRank
Hitoshi Kimura1609.18
M. Nakamura214930.71
Norio Inou3265.45
Masayuki Matsudaira400.34
Minoru Yoshida500.68