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Driver perception of steering feel

Driver perception of steering feel
Driver perception of steering feel
Steering feel is optimized at a late stage of vehicle development, using prototype vehicles and expert opinion. An understanding of human perception may assist the development of a good â-˜feelâ-™ earlier in the design process. Three psychophysical experiments have been conducted to advance understanding of factors contributing to the feel of steering systems. The first experiment, which investigated the frames of reference for describing the feel (i.e. haptic properties) of a steering wheel, indicated that subjects focused on the steady state force that they applied to the wheel rather than the steady state torque, and on the angle that they turned the wheel rather than the displacement of their hands. In a second experiment, thresholds for detecting changes in both steady state steering-wheel force and steady state steering-wheel angle were determined as about 15 per cent. The rate of growth in the perception of steady state steering-wheel force and steady state steering-wheel angle were determined using magnitude estimation and magnitude production. It was found that, according to Stevens' power law, the sensation of steady state steering-wheel force increases with a power of 1.39 with increased force, whereas the perception of steady state steering-wheel angle increases with a power of 0.93 with increased steering-wheel angle. The implications for steering systems are discussed.
steering feel, proprioceptive, haptic feedback
0954-4070
405-415
Newberry, A.C.
8997b727-030d-4b3c-82b1-0572af11d8d2
Griffin, M.J.
24112494-9774-40cb-91b7-5b4afe3c41b8
Dowson, M.
1f49a493-407f-4378-b261-be9836a87e27
Newberry, A.C.
8997b727-030d-4b3c-82b1-0572af11d8d2
Griffin, M.J.
24112494-9774-40cb-91b7-5b4afe3c41b8
Dowson, M.
1f49a493-407f-4378-b261-be9836a87e27

Newberry, A.C., Griffin, M.J. and Dowson, M. (2007) Driver perception of steering feel. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 221 (4), 405-415. (doi:10.1243/09544070JAUTO415).

Record type: Article

Abstract

Steering feel is optimized at a late stage of vehicle development, using prototype vehicles and expert opinion. An understanding of human perception may assist the development of a good â-˜feelâ-™ earlier in the design process. Three psychophysical experiments have been conducted to advance understanding of factors contributing to the feel of steering systems. The first experiment, which investigated the frames of reference for describing the feel (i.e. haptic properties) of a steering wheel, indicated that subjects focused on the steady state force that they applied to the wheel rather than the steady state torque, and on the angle that they turned the wheel rather than the displacement of their hands. In a second experiment, thresholds for detecting changes in both steady state steering-wheel force and steady state steering-wheel angle were determined as about 15 per cent. The rate of growth in the perception of steady state steering-wheel force and steady state steering-wheel angle were determined using magnitude estimation and magnitude production. It was found that, according to Stevens' power law, the sensation of steady state steering-wheel force increases with a power of 1.39 with increased force, whereas the perception of steady state steering-wheel angle increases with a power of 0.93 with increased steering-wheel angle. The implications for steering systems are discussed.

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More information

Published date: 2007
Keywords: steering feel, proprioceptive, haptic feedback
Organisations: Human Sciences Group

Identifiers

Local EPrints ID: 46563
URI: http://eprints.soton.ac.uk/id/eprint/46563
ISSN: 0954-4070
PURE UUID: 809b36fa-1f61-4b66-abf7-ea1be6aea743
ORCID for M.J. Griffin: ORCID iD orcid.org/0000-0003-0743-9502

Catalogue record

Date deposited: 11 Jul 2007
Last modified: 15 Mar 2024 09:25

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Contributors

Author: A.C. Newberry
Author: M.J. Griffin ORCID iD
Author: M. Dowson

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