Mechatronics Systems Modeling and Control
BASIC DATA
course listing
A - main register
course code
EEM0090
course title in Estonian
Mehhatroonikasüsteemide modelleerimine ja juhtimine
course title in English
Mechatronics Systems Modeling and Control
course volume CP
-
ECTS credits
6.00
to be declared
yes
fully online course
not
assessment form
Graded assessment
teaching semester
autumn
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
AAAM02/22
no
EAMM23/25
no
IVEM11/22
yes
MAHM02/22
yes
display more
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
Kursuse eesmärgid on:
anda teadmised mehhatroonikasüsteemi ja selle juhtimissüteemi ülesehitusest.
anda oskused mehhatroonikasüsteemi põhiliste elementide matemaatiliseks modelleerimiseks, mudeli kontrolliks ja süsteemi kavandamiseks
anda teadmised ja oskused liikumissüsteemi modelleerimiseks ja juhtimiseks.
anda teadmised mehhatroonikasüsteemi metoodiliseks kavandamiseks.
course aims in English
The aims of the course are:
to give a thorough understanding of a computer controlled Mechatronics Systems.
to give skills for mathematical modelling of Mechatronic Systems, model validation and respective design
to give knowledge and skills for modeling and control of motion systems.
to give knowledge in using a methodical way of developing a motion control of a mechatronic system.
learning outcomes in the course in Est.
Kursuse läbinu omab ülevaadet ja teadmisi kaasaegse mehhatroonikasüsteemi toimimisest ja selle süsteemi modelleereimisest. Üliõpilane teab ja tunneb põhilisi seoseid staatiliste ja dünaamiliste mehhatroonika elementide modelleerimiseks.
Üliõpilane oskab neid seoseid kombineerida suletud või avatud tagasisidega süsteemi mudelitesse.
learning outcomes in the course in Eng.
The learning outcome of the course is an overview and knowledge of the state-of-the-art within modelling of mechatronic systems. The successful student will know the governing equations for steady-state and dynamic modelling of the basic electronic, electrical, hydraulic, pneumatic and mechanical sub-systems of a mechatronic system. Also, the successful candidate will be capable of combining these equations into models of closed-loop controlled mechatronic systems.
brief description of the course in Estonian
Kursus käsitleb järgmiste mehhatroonika põhielemente ja nende funktsioone ning mudeleid: füüsikaliste süsteemide modelleerimine, andurid ja täiturid, signaalid ja süsteemid, arvutid ja loogikasüsteemid, tarkvara ja andmehõive.
Mehhatroonikasüsteemide modelleerimisel ja simuleerimisel käsitletakse staatilise ja dünaamilise modelleerimise probleeme elektroonikaskeemide, jõuelektroonika, hüdraulikasüsteemide, pneumaatikasüsteemide, mehaaniliste süsteemide ja juhtsüsteemide näitel. Käsitletakse samuti matemaatilisi lineariseerimise ja numbrilise lahendamise seoseid ja tehnikaid. Mitmete praktiliste näidete baasil käsitletakse niisuguste mudelite kombineerimist hübriidmudeliteks, avatud või suletud tagasisidega või libiseva reziimi mudeliteks. Käsitletakse samuti kehade süsteemi dünaamika probleeme, pööratud dünaamika ja detsentraliseeritud juhtimist ja samuti toimeid keskkonnaga. Harjutustundides võetakse läbi põhilised simulatsiooni ja modelleerimise tehnikad mida kasutavad paljud mehhatroonika inseneri töövaldkonnad.
brief description of the course in English
The following key elements of mechatronics are presented in the course: physical systems modelling, sensors and actuators, signals and systems, computers and logic systems, software and data acquisition.
Modelling and Simulation of Mechatronic Systems discusses the basic steady-state and dynamic modelling of electronic circuits, power electronics, hydraulic systems, pneumatic systems, mechanical systems and control systems. The governing equations as well as techniques for linearization and numerical solutions are discussed. Techniques for combining these fundamental models into models of closed-loop and open-loop and sliding mode control mechatronic systems are presented and introduced via a number of applications derived from practical examples from industry. Motion control of multi-body systems, Inverse dynamics control and decentralized control are discussed as well as interaction control with the environment. In Modelling and simulation the basic tools for systematic modelling from physics and/or experiments and simulation of those are learnt. These skills are used in many branches of mechatronics engineering.
type of assessment in Estonian
Kursuse hindamine baseerub:
- esitatud koduülesannete lahendustel
- kirjalikul testil semestri lõpus
type of assessment in English
Examination is based on:
- compulsory problem solving sessions and exercises
- written test
independent study in Estonian
Kodutööde ülesannete lahendamine ja aruannete koostamine
independent study in English
Solving homework exercises and composing reports
study literature
1. Lecture materials
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
0.0
lectures
-
practices
2.0
practices
-
exercises
2.0
exercises
-
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus or link to Moodle or to home page
2025/2026 autumn
Even Sekhri, EE - Department of Electrical Power Engineering and Mechatronics
English
    EEM0090 hindamine_ingl.pdf 
    display more
    2024/2025 autumn
    Even Sekhri, EE - Department of Electrical Power Engineering and Mechatronics
    English, Estonian
      Even Sekhri, EE - Department of Electrical Power Engineering and Mechatronics
      English
        EEM0090 hindamine_ingl.pdf 
        2023/2024 autumn
        Viktor Rjabtšikov, EV - Virumaa College
        English, Estonian
          2022/2023 autumn
          Kristjan Pütsep, EE - Department of Electrical Power Engineering and Mechatronics
          English, Estonian
            EEM0090 hindamine_ingl.pdf 
            2021/2022 autumn
            Kristjan Pütsep, EE - Department of Electrical Power Engineering and Mechatronics
            English, Estonian
              EEM0090 hindamine_ingl.pdf 
              2020/2021 autumn
              Kristjan Pütsep, EE - Department of Electrical Power Engineering and Mechatronics
              English, Estonian
                EEM0090 hindamine_ingl.pdf 
                2019/2020 autumn
                Kristjan Pütsep, EE - Department of Electrical Power Engineering and Mechatronics
                English
                  EEM0090 hindamine_ingl.pdf 
                  2018/2019 autumn
                  Mart Tamre, EE - Department of Electrical Power Engineering and Mechatronics
                  English, Estonian
                    EEM0090 hindamine_ingl.pdf 
                    Course description in Estonian
                    Course description in English