Effects of camber angle control of front suspension on vehicle dynamic behaviors

Author:

Park Seong-Jun,Sohn Jeong-Hyun

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference6 articles.

1. W. J. Bong, Y. K. Kim and H. C. Lee, AWD vehicle simulation with the intelligent torque split control strategy for improving traction and handling performance, Transaction Korean Society of Automotive Engineers, Korea, 6(2) (2007) 841–850.

2. J. H. Song and K. S. Boo, Development and performance evaluation of ESP systems for enhancing the lateral stability during cornering, Transaction Korean Society of Automotive Engineers, Korea, 30(10) (2006) 1278–1283.

3. J. Y. Zhang, J. W. Kim, K. B. Lee and Y. B. Kim, Development of an active front steering system with QFT control, Int. J. Automotive Technology, Korea, 9(6) (2008) 695–702.

4. S. H. Lee, C. S. Ahn, J. Y. Joeng, Y. H. Oh and U. K. Lee, Development of integrated chassis algorithm for improvement of vehicle stability, Fall Conf. Korean Society of Automotive Engineers (2006) 752–757.

5. K. Isao, B, Pernando and F. Cheli, A full vehicle model for the development of a variable camber suspension, Proceedings of the ASME IDETC/CIE 2007 (2007) DETC2007-34679. T. Y. Jeong, J. S. Ha, K. S. Yi, J. T. Kim, Vehicle Dynamics Behavior Analysis for Vehicle Stability Control, Symposium Transaction Korean Society of Automotive Engineers, Korea, 11 (2002) 525–530.

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