Integrated Stability Control Strategy of In-Wheel Motor Driven Electric Bus
Author:
Publisher
Springer Science and Business Media LLC
Subject
Automotive Engineering
Link
http://link.springer.com/content/pdf/10.1007/s12239-020-0088-6.pdf
Reference13 articles.
1. Chen, B.-C. and Peng, H. (2001). Differential-braking-based rollover prevention for sport utility vehicles with human-in-the-loop evaluations. Vehicle System Dynamics: Int. J. Vehicle Mechanics and Mobility36, 4-5, 359–389.
2. Chen, Y. and Wang, J. (2014). Adaptive energy-efficient control allocation for planar motion control of over-actuated electric ground vehicles. IEEE Trans. Control Systems Technology22, 4, 1362–1373.
3. Chen, Y., Hedrick, J. K. and Guo, K. (2013). A novel direct yaw moment controller for in-wheel motor electric vehicles. Vehicle System Dynamics: Int. J. Vehicle Mechanics and Mobility51, 6, 925–942.
4. Ding, H., Guo, K., Fei, L. and Zhang, J. (2010). Arbitrary path and speed following driver model based on vehicle acceleration feedback. J. Mechanical Engineering46, 10, 116–120.
5. Geng, C., Mostefai, L., Denai, M. and Hori, Y. (2009). Direct yaw-moment control of an in-wheel-motored electric vehicle based on body sideslip angle fuzzy observer. IEEE Trans. Industrial Electronics56, 5, 1411–1419.
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