Online Detection of Toe Angle Misalignment Based on Lateral Tire Force and Tire Aligning Moment

Author:

Lee Hwangjae,Choi Seibum Ben

Publisher

Springer Science and Business Media LLC

Subject

Automotive Engineering

Reference27 articles.

1. Balike, K. P., Rakheja, S. and Stiharu, I. (2011). Development of kineto-dynamic quarter-car model for synthesis of a double wishbone suspension. Vehicle System Dynamics 49, 1–2, 107–128.

2. Cho, W., Yoon, J., Yim, S., Koo, B. and Yi, K. (2009). Estimation of tire forces for application to vehicle stability control. IEEE Trans. Vehicular Technology 59, 2, 638–649.

3. Choi, M. and Choi, S. B. (2014). Model predictive control for vehicle yaw stability with practical concerns. IEEE Trans. Vehicular Technology 63, 8, 3539–3548.

4. Choi, M., Oh, J. J. and Choi, S. B. (2013). Linearized recursive least squares methods for real-time identification of tire-road friction coefficient. IEEE Trans. Vehicular Technology 62, 7, 2906–2918.

5. D’Mello, G., Gomes, R., Mascarenhas, R., Ballal, S., Kamath, V. S. and Lobo, V. J. (2022). Wheel alignment detection with IoT embedded system. Materials Today: Proc., 52, 1924–1929.

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