DocumentCode
1467980
Title
Feasibility Study and Performance Analysis of a Gyroless Orientation Tracker
Author
Huyghe, Benoît ; Salvo, Pietro ; Doutreloigne, Jan ; Vanfleteren, Jan
Author_Institution
Dept. of Electrics & Inf. Syst. (ELIS), Ghent Univ., Ghent, Belgium
Volume
61
Issue
8
fYear
2012
Firstpage
2274
Lastpage
2282
Abstract
Inertial orientation tracking systems commonly use three types of sensors: accelerometers, magnetometers, and gyroscopes. The angular rate signal is used to obtain a dead reckoning estimate, whereas the gravitational and local magnetic field measures allow us to apply a correction and to obtain a drift-free result. Considering the present market of inertial MEMS sensors, the current consumption of gyroscopes represents a major part of the power budget of wireless inertial sensor nodes, which should be minimized given the mobility of the application. This paper introduces an orientation tracking algorithm, based on an unscented Kalman filter, that does not require angular rate data for tracking human movements up to 450 °/s , which is a reasonable value for many applications. Since accelerometers measure other accelerations beside gravity and magnetometers are prone to magnetic disturbances, adaptive techniques are applied in order to reduce the influence on the estimations. The performance of the system is quantitatively analyzed and compared to an estimator that includes angular rate information.
Keywords
Kalman filters; acceleration measurement; accelerometers; gyroscopes; inertial navigation; inertial systems; magnetic fields; magnetometers; microsensors; object tracking; acceleration measurement; accelerometers; adaptive technique; dead reckoning estimation; gravitational field; gyroless orientation tracker; gyroscope; inertial MEMS sensor; inertial orientation tracking system; magnetic disturbance; magnetic field; magnetometers; unscented Kalman filter; wireless inertial sensor node; Accelerometers; Equations; Gyroscopes; Magnetic sensors; Magnetometers; Mathematical model; Accelerometer; Kalman filter (KF); magnetometer; orientation tracking; sensor network;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2012.2187248
Filename
6168260
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