Subject description - RM35RSA

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RM35RSA Automotive Control Systems
Roles:  Extent of teaching:2P+2S
Department:13135 Language of teaching:CS
Guarantors:Haniš T. Completion:Z,ZK
Lecturers:Efremov D., Haniš T., Vošahlík D. Credits:6
Tutors:Efremov D., Haniš T., Švancar J., Vošahlík D. Semester:

Anotation:

Students will learn basics of automotive control systems, including mathematical models of vehicle dynamics and standard components. The goal of the

Study targets:

Get familiar with vehicle dynamics representation and gain overview of vehicle system level and component level control strategies.

Course outlines:

- Vehicle dynamics models, kinematic and dynamic models - Vehicle battery types, Battery management system and modeling - Vehicle hybrid powertrain modeling and control strategies - Electric vehicles high voltage systems and powertrain - Vehicle software development processes - Longitudinal dynamics low level traction control systems (ABS) - Longitudinal dynamics high level control systems (Cruise Control and Adaptive Cruise Control) - Lateral dynamics and vehicle stability control systems (ESP, Torque Vectoring) - Lateral dynamics high level control systems (Lane Keeping)

Exercises outline:

1. Implementace kinematického a jednostopého modelu + validační experimenty
2. Implementace kinematického a jednostopého modelu + validační experimenty
3. Implementace modelu baterie, identifikace parametru + odhad SOC/SOH
4. Implementace modelu ICE + MGU (účinností mapy)
5. Implementace modelu hybridního pohonného ústrojí
6. ECMS
7. Modelová studie sepsání požadavků na Brake-by-wire
8. Modelová studie analýzy Brake-by-wire
9. Implementace ABS algoritmu
10. Implementace Adaptivního tempomatu (konstantní rychlosti, zachycení a přiblížení)
11. Implementace ESC algoritmu (Lane keeping algoritmů)
12. Implementace Lane keeping algoritmů

Literature:

Recommended literature: •Limebeer, D. J. N., a Matteo Massaro. 2018. Dynamics and Optimal Control of Road Vehicles. Oxford, United Kingdom ; New York, NY: Oxford University Press. •Pacejka, Hans, a I. J. M. Besselink. 2012. Tire and Vehicle Dynamics. 3. vyd. Amsterdam: Butterworth-Heinemann. •Lecture notes Additional reading: •Robert Bosch, GmbH. 2019. Bosch Automotive Handbook. 10. vyd. Wiley. •Schramm, Dieter, Manfred Hiller, a Roberto Bardini. 2018. Vehicle Dynamics: Modeling and Simulation. 2. vyd. Berlin Heidelberg: Springer-Verlag.

Requirements:

Subject is included into these academic programs:

Program Branch Role Recommended semester


Page updated 28.4.2024 17:51:20, semester: Z/2024-5, Z,L/2023-4, Send comments about the content to the Administrators of the Academic Programs Proposal and Realization: I. Halaška (K336), J. Novák (K336)