DocumentCode
924691
Title
Cancellation of Biodynamic Feedthrough in Vehicle Control Tasks
Author
Soveyni, S. ; Gillespie, R. Brent
Author_Institution
Michigan Univ., Ann Arbor
Volume
15
Issue
6
fYear
2007
Firstpage
1018
Lastpage
1029
Abstract
A driver´s body functions as a pathway that transmits vehicle motion and inertia forces to the vehicle´s manual control interface, producing unintended commands and degrading driver/vehicle performance. In this paper, we apply a model-based cancellation controller to mitigate this effect, called biodynamic feedthrough. Using measurements of vehicle acceleration and hand/interface interaction force, we first construct a model of the body transmittance. In operation, the controller processes vehicle acceleration measurements through a regression model of the biodynamic transmittance and a motor imposes the result as a torque on the manual interface. We tested individually fit cancellation controllers by quantifying the tracking performance of 12 human subjects using a joystick to control displacements of a single-axis motion platform. The addition of the cancellation controller reduced the root mean square tracking error by 45%, significantly reduced spectral energy in the 1-7 Hz band, and had a marked effect on the ability of the driver to reject exogenous disturbances.
Keywords
acceleration control; haptic interfaces; regression analysis; vehicles; biodynamic feedthrough; hand-interface interaction force; model-based cancellation controller; regression model; vehicle acceleration; vehicle control; Acceleration; Accelerometers; Biological system modeling; Degradation; Displacement control; Force measurement; Human factors; Motion control; Torque control; Vehicle driving; Biodynamic feedthrough; McRuer´s crossover model; feedthrough cancellation; haptic interface; roll-ratchet;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2007.899679
Filename
4343977
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