Pressure-tracking control of a novel electro-hydraulic braking system considering friction compensation
This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake (EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consisting of actuator and hydraulic sub-systems, is derived for describing the fundamen...
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| Published in | Journal of Central South University Vol. 24; no. 8; pp. 1909 - 1921 |
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| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
Changsha
Central South University
01.08.2017
Springer Nature B.V |
| Subjects | |
| Online Access | Get full text |
| ISSN | 2095-2899 2227-5223 |
| DOI | 10.1007/s11771-017-3598-2 |
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| Abstract | This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake (EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consisting of actuator and hydraulic sub-systems, is derived for describing the fundamental dynamics of the system and designing the controller. Due to sensor inaccuracy and measurement noise, a Kalman filter is constructed to estimate push rod stroke for generating desired master cylinder pressure. To improve pressure-tracking accuracy, a linear friction model is generated by linearizing the nonlinear Tustin friction model, and the unmodeled friction disturbances are assumed unknown but bounded. A sliding mode controller is designed for compensating friction disturbances, and the stability of the controller is investigated using the Lyapunov method. The performance of the proposed integrated controller is evaluated with a hardware-in-the-loop (HIL) test platform equipped with the EHB prototype. The test results demonstrate that the EHB system with the proposed integrated controller not only achieves good pressure-tracking performance, but also maintains robustness to friction disturbances. |
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| AbstractList | This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake (EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consisting of actuator and hydraulic sub-systems, is derived for describing the fundamental dynamics of the system and designing the controller. Due to sensor inaccuracy and measurement noise, a Kalman filter is constructed to estimate push rod stroke for generating desired master cylinder pressure. To improve pressure-tracking accuracy, a linear friction model is generated by linearizing the nonlinear Tustin friction model, and the unmodeled friction disturbances are assumed unknown but bounded. A sliding mode controller is designed for compensating friction disturbances, and the stability of the controller is investigated using the Lyapunov method. The performance of the proposed integrated controller is evaluated with a hardware-in-the-loop (HIL) test platform equipped with the EHB prototype. The test results demonstrate that the EHB system with the proposed integrated controller not only achieves good pressure-tracking performance, but also maintains robustness to friction disturbances. |
| Author | Ding, Neng-gen Gao, Feng He, Yu-ping Yong, Jia-wang |
| Author_xml | – sequence: 1 givenname: Jia-wang surname: Yong fullname: Yong, Jia-wang organization: School of Transportation Science and Engineering, Beihang University, Beijing Key Laboratory for High-efficient Power Transmission and System Control of New Energy Resource Vehicle – sequence: 2 givenname: Feng surname: Gao fullname: Gao, Feng organization: School of Transportation Science and Engineering, Beihang University – sequence: 3 givenname: Neng-gen surname: Ding fullname: Ding, Neng-gen email: dingng@buaa.edu.cn organization: School of Transportation Science and Engineering, Beihang University – sequence: 4 givenname: Yu-ping surname: He fullname: He, Yu-ping organization: Department of Automotive, Mechanical and Manufacturing Engineering, University of Ontario Institute of Technology |
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| Cites_doi | 10.1007/s11771-011-0876-2 10.1016/0005-1098(94)90209-7 10.1080/00423114.2014.938663 10.1007/s11771-013-1744-z 10.1016/j.mechatronics.2010.08.010 10.1007/s00170-008-1450-4 10.1002/0471224197 10.1016/j.sysconle.2008.09.003 10.1007/s12206-015-0709-6 10.1007/s12239-014-0026-6 10.1016/S0957-4158(98)00043-9 10.1007/s11771-014-2354-0 10.1109/9.376053 10.1504/IJVP.2015.074123 10.1016/j.expthermflusci.2014.03.017 10.1007/s11771-013-1872-5 10.1080/00140139.2013.803160 |
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| Keywords | brake-by-wire pressure-tracking sliding mode control friction compensation Kalman filter electro-hydraulic brake |
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| StartPage | 1909 |
| SubjectTerms | Braking Braking systems Control stability Cylinders Disturbances Engineering Friction Hydraulics Kalman filters Metallic Materials Noise measurement Robustness (mathematics) Sliding mode control Tracking control |
| Title | Pressure-tracking control of a novel electro-hydraulic braking system considering friction compensation |
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