Electric Vehicle Modeling
BASIC DATA
course listing
A - main register
course code
EEV5160
course title in Estonian
Elektrisõiduki modelleerimine
course title in English
Electric Vehicle Modeling
course volume CP
-
ECTS credits
3.00
to be declared
yes
fully online course
not
assessment form
Pass/fail assessment
teaching semester
autumn 1
language of instruction
Estonian
English
The course is a prerequisite
Electric Vehicle Simulation (EEV5170)
Study programmes that contain the course
code of the study programme version
course compulsory
EAMM23/25
no
Structural units teaching the course
EE - Department of Electrical Power Engineering and Mechatronics
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Aine eesmärk on anda üliõpilastele arusaam elektrisõidukite eri komponentide modelleerimisest, kasutades mitmesuguseid tehnikaid. Kursusel rõhutatakse täpsete füüsikapõhiste mudelite väljatöötamist kõigi peamiste elektrisõidukite süsteemide jaoks, sh mehaanilised (šassii, raam, rattad ja jõuülekanne), elektrilised ja termilised alamsüsteemid, ning käsitletakse ka muid edasijõudnud modelleerimistehnikaid.
course aims in English
The aim of this course is to provide students with a comprehensive understanding of modeling various components of electric vehicles (EVs) using different techniques. The course emphasizes the development of accurate, physics-based models for all key EV systems, including mechanical (chassis, frame, wheels, and transmission), electrical, and thermal subsystems, alongside exploring other advanced modeling techniques.
learning outcomes in the course in Est.
Õppeaine läbinud üliõpilane:
- töötab välja matemaatilised mudelid elektrisõidukite komponentide jaoks, sealhulgas mootorid, akud, šassii, käigukast, rattad ja raam;
- rakendab keerukaid modelleerimistehnikaid, mis põhinevad füüsikaseadustel ja esmastel põhimõtetel;
- uurib ja rakendab alternatiivseid modelleerimismeetodeid, nagu andmepõhised ja hübriidtehnikad;
- integreerib komponentide mudelid kõikehõlmavaks süsteemitasemel elektrisõiduki mudeliks;
- simuleerib eri konfiguratsioonide toimivust ja kinnitab mudeleid empiiriliste andmete abil.
learning outcomes in the course in Eng.
After completing this course, the student:
- develops mathematical models for EV components, including motors, batteries, chassis, transmission, wheels, and the frame;
- applies hard modeling techniques based on physical laws and first principles;
- explores and implement alternative modeling techniques, such as data-driven and hybrid approaches;
- integrates component models into a comprehensive system-level EV model;
- simulates the performance of various configurations and validates models against empirical data.
brief description of the course in Estonian
See kursus hõlmab elektrisõidukite matemaatiliste ja simulatsioonipõhiste mudelite väljatöötamist. Kursus keskendub kõigi kriitiliste elektrisõidukite komponentide, nagu mootor, aku, šassii, käigukast, rattad ja raam, modelleerimisele. Õpilased õpivad rakendama erinevaid modelleerimistehnikaid, sealhulgas põhinevaid esmaseid põhimõtteid (kõvad mudelid), andmepõhiseid ja hübriidseid lähenemisviise, et luua ja analüüsida neid mudeleid. Kursusel on integreeritud süsteemitasandi analüüs, parameetrite hindamine ja valideerimine, kasutades reaalmaailma andmeid.
brief description of the course in English
This course covers the development of mathematical and simulation-based models for electric vehicles. It delves into the modeling of all critical EV components, such as the motor, battery, chassis, transmission, wheels, and frame. Students will learn to apply various modeling techniques, including first-principles (hard models), data-driven, and hybrid approaches, to create and analyze these models. The course integrates system-level analysis, parameter estimation, and validation against real-world data.
type of assessment in Estonian
-
type of assessment in English
-
independent study in Estonian
-
independent study in English
-
study literature
1. Husain, I. "Electric and Hybrid Vehicles: Design Fundamentals.", 2021
2. "Perform transformation from three-phase (abc) signal to dq0 rotating reference frame or the inverse". Simulink. 2018-09-27. Retrieved 2019-01-11.
3. Seref S. “Electric Vehicles – Modelling and Simulations“.2011
4. Farag O. et al. “Mathematical modeling of gearbox including defects with experimental verification“. 2012
study forms and load
daytime study: weekly hours
2.0
session-based study work load (in a semester):
lectures
0.0
lectures
-
practices
2.0
practices
-
exercises
0.0
exercises
-
lecturer in charge
Mahmoud Ibrahim Hassanin Mohamed, teadur (EE - elektroenergeetika ja mehhatroonika instituut)
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
Course-teacher pairs of the corresponding version are missing!
Course description in Estonian
Course description in English