@inproceedings{949eec6417ed486da4464f5434b967a8,
title = "A study on motion control of 6WD/6WS vehicle using optimum tire force distribution method",
abstract = "This paper presents a motion control method of 6WD/6WS (6-wheel-drive and 6-wheel-steering) vehicle using optimum tire force distribution method. When we make used of independent driving and steering system, the motion control performance of the 6WD/6WS vehicle can be improved. For example, vehicle's maneuverability is more improved at low speed and vehicle's stability is also improved at high speed. Therefore, it needs to find a control strategy using optimum tire forces. A control strategy must satisfy the driver's command and minimize the energy consumption. When the driver commands vehicle (input steering angle and acceleration/brake pedal stroke), we can obtain the desired yaw moment, the desired lateral force and the desired longitudinal force. Those values are used in the optimum tire force distribution method. The optimum tire force distribution method can find the longitudinal tire force and lateral tire force. That force minimizes the cost function. The cost function is the sum of normalized tire force. The longitudinal tire forces and lateral tire force of each wheel are converted to the reference torque inputs and steering wheel angle inputs. The method was tested on the simulation and effectiveness was verified.",
keywords = "6WD/6WS, 6x6 vehicle, Motion control, Optimum tire force distribution method",
author = "Kim, {Sang Ho} and Kim, {Dong Hyung} and Kim, {Chang Jun} and Kim, {Young Ryul} and Choi, {Joo Young} and Han, {Chang Soo}",
year = "2010",
language = "English",
isbn = "9781424474530",
series = "ICCAS 2010 - International Conference on Control, Automation and Systems",
pages = "1502--1507",
booktitle = "ICCAS 2010 - International Conference on Control, Automation and Systems",
note = "International Conference on Control, Automation and Systems, ICCAS 2010 ; Conference date: 27-10-2010 Through 30-10-2010",
}