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http://dx.doi.org/10.3795/KSME-A.2008.32.2.170

Anti Roll Bar Force Computation Algorithm for Real Time Multibody Vehicle Dynamics  

Kim, Sung-Soo (충남대학교 BK 21 메카트로닉스 그룹)
Jeong, Wan-Hee (충남대학교 대학원 BK 21 메카트로닉스 그룹)
Ha, Kyoung-Nam (충남대학교 대학원 BK 21 메카트로닉스 그룹)
Publication Information
Transactions of the Korean Society of Mechanical Engineers A / v.32, no.2, 2008 , pp. 170-176 More about this Journal
Abstract
Anti roll bar model for real time multibody vehicle dynamics model has been proposed using kinematic constraint. Anti roll bar have been modeled by kinematic relationship, and mass properties are neglected. Relative angle of torsion bar spring is computed by constraint about drop-link using Newton-Raphson iteration, and then the torque of torsion bar spring can be computed with the angle and torsion spring stiffness. Finally anti roll bar force acting on both knuckle can be calculated. To validate the proposed method, half car simulations of McPherson strut suspension and full car simulations are also carried out comparing with the ADAMS vehicle model with anti roll bar. CPU times are also measured to see the real-time capabilities of the proposed method.
Keywords
Anti Roll Bar; Subsystem Synthesis Method;
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  • Reference
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