journal article
Feb 01, 2023
Integrated Pressure Estimation and Control for Electro-hydraulic Brake Systems of Electric Vehicles Considering Actuator Characteristics and Vehicle Longitudinal Dynamics
IEEE/ASME Transactions on Mechatronics
Vol. 28
No. 1
pp. 197-209
·
Institute of Electrical and Electronics Engineers (IEEE)
Topics
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References
42
[1]
Xiong "An integrated electro-hydraulic brake system" (2017)
[10]
[12]
[15]
[20]
Han "Pressure estimation algorithms in decoupled electro-hydraulic brake system considering the friction and pressure-position relation" (2019)
[21]
Hirano "Braking force control system for motor vehicle" (1996)
[22]
Lohner "Method and device for determining the pressure in brake systems" (2002)
[23]
[24]
[26]
Imamura "Brake pressure estimating apparatus and method" (2006)
[30]
[35]
Mitschke (2004) 10.1007/978-3-662-06802-1
[36]
Bitz "Braking system with EBS and prefill function and electronic braking control method" (2010)
[39]
Havard (2010)
[41]
Khalil (2002)
[42]
Metrics
24
Citations
42
References
Details
- Published
- Feb 01, 2023
- Vol/Issue
- 28(1)
- Pages
- 197-209
- License
- View
Authors
Funding
National Key R&D Program of China
Award: 2021YFB2501201
Young Elite Scientists Sponsorship Program by CAST
Award: 2021QNRC001
Science and Technology Innovation Action Plan
Award: 20511104601
Cite This Article
Wei Han, Lu Xiong, Zhiyin Yu, et al. (2023). Integrated Pressure Estimation and Control for Electro-hydraulic Brake Systems of Electric Vehicles Considering Actuator Characteristics and Vehicle Longitudinal Dynamics. IEEE/ASME Transactions on Mechatronics, 28(1), 197-209. https://doi.org/10.1109/tmech.2021.3119414
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