Course programme | Courses | Master SC (2024)

Programme overview

The programme below is according to the Education and Examination Regulations of the year 2022/2023.

The first year of the programme consists of compulsory courses, profile specific courses and electives. The second year consists of practical work: the internship and the Graduation Project.

Part

Study load (EC)

Core programme

30

Profile specific and elective subjects

30

Internship / Graduation Project

60

Core programme

Students must complete the core programme shown below, totalling 30 credits. The core programs of the 3 universities are interchangeable, in the sense that all credits for core courses obtained in the Systems and Control master program at one university will be accepted when a student transfers to the MSc program in Systems and Control at one of the other universities.

1. Students must complete the courses on the table below, totalling 25EC.

Code

Course

Study load (EC)

Quarter

201900093

Control System Design for Robotics

5

1B

201900007

Perspectives on Engineering Design

2,5

1B

201100137

Philosophy of Engineering: Ethics

2,5

1B

191131700

System Identification with Parameter Estimation and Machine Learning

5

2B

200900012

Integration project*)

5

Year

one of two courses (to be chosen by the student):

191211110

Modelling and Simulation**)

5

2B

202200101

Modelling, Dynamics, and Kinematics

5

1A

*)The Integration Project is a “year course”, which can be taken during any quarter. However it requires prior knowledge of the other compulsory courses, which is a reason to attend it during Q2B.The teacher, will take care that approximately 80% of the project can be carried out during Q2A, so that only some specific topics have to be completed in Q2B. This way, an additional elective can be taken during Q2B.

**) The course Modelling and Simulation requires the course 202200101Modelling, Dynamics, and Kinematics or 191210431 Engineering System Dynamics as prior knowledge. Engineering System Dynamics can be taken during Quarter 1B as a part of the Electrical Engineering bachelor module 201700145 Systems and Control.

2.In addition students must complete one course in the field of control to be chosen from the following courses:

Code

Course

Study load (EC)

Quarter

191561620

Optimal Control

5

1B

202000256

Learning and adaptive control

5

2A

191150480

Human movement control

5

2A

201900085

Nonlinear Control

5

2A

191560671

Robust Control

5

2A

201700173

Control for UAVs

5

2B

191561560

Systems and Control1,2)

6

1A

The Integration Project can only be carried out, if the three technical core courses have been attended. However it is possible to carry it out during quarter 2B, in parallel with Modelling and Simulation.

1) Course of the mastermath Network Utrecht

2) In case this course is chosen, the core programme will contain 31EC.

Specialisations and specialisation-linked subjects

The following specialisations are offered at the University of Twente:

1. Robotics and Mechatronics

2. Control Theory

3. Bio-mechatronics

4. Unmanned Aerial Vehicles

The core programme is complemented with a total of 30 credits of profile specific courses and elective subjects. In consultation with the programme mentor, courses from all three universities can be chosen. Depending on the chair, in which the student will carry out the graduation project, additional requirements can be posed to the courses of the programme (for this, see also the pages of the specializations). Available courses at the University of Twente are listed in the table below. Lists of available courses at the Technical Universities of Delft and Eindhoven are maintained in their Implementation Regulations and are made public at their website. The total course programme of 60 credits has to be approved by the Examination Board.

Courses, not on one of the course lists, can be chosen but should be explicitly approved by the Examination Board.

List of specialisation-linked and Elective courses

Note that some of the courses may have an overlapping content, which may be a reason that they cannot be chosen in the same course list**.

Course code

Course name

EC

RM

CT

BM

UAV

Quarter

191157750

Engineering Acoustics

5

x

1A

202200103

Image Processing and Computer Vision

5

x

x

1A

201600070

Machine Learning I

5

x

x

x

x

1A

191210930

Measurement Systems for Mechatronics

5

x

x

1A

202200101

Modelling, Dynamics & Kinematics

5

x

x

1A

191561560

Systems and Control*)

6

x

1A

202200100

Systems Engineering

5

x

1A

201400427

Transducer Science

5

x

x

x

1A

201700171

Aerodynamics and Flight Dynamics

5

x

x

1B

201800177

Deep Learning - From Theory to Practice

5

x

x

x

x

1B

201500009

Electric Vehicle System Design

5

x

x

x

1B

201900037

Flexible Multibody Dynamics

5

x

x

x

1B

201900120

Learning and adaptive control

5

x

x

2A

201600071

Machine Learning II

5

x

x

x

x

1B

191561620

Optimal Control

5

x

x

1B

202200105

Robot Perception, Cognition, and Navigation

5

x

x

1B

201300004

Robotics for Medical Applications

5

x

1B

202200109

Advanced Software Development for Robotics

5

x

x

2A

202200107

Design Principles for Robotic and Mechatronic Mechanisms

5

x

2A

191150480

Human movement control

5

x

2A

201900097

Machine learning in engineering

5

x

x

x

x

2A

201900085

Nonlinear Control

5

x

x

x

x

2A

202200106

Optimal Estimation for Dynamic Systems

5

x

x

x

2A

201200135

Random Signals and Filtering

5

x

x

2A

201700168

Regulating robotics and drones

2,5

x

x

2A

191560671

Robust Control

5

x

x

x

2A

202200108

Software Development for Robotics

5

x

x

x

2A

202200110

Tele-presence in Robotics

5

x

x

x

2A

202200112

AI for Autonomous Robots: deep learning and reinforcement learning

5

x

x

x

2B

201700170

Airborne Laser Scanning

5

x

x

2B

201200133

Biomechatronics

5

x

2B

201700173

Control for UAVs

5

x

x

2B

201000168

Embedded Systems Laboratory

5

x

x

2B

201700071

Identification of Human Physiological Systems

5

x

2B

202000040

Introduction to Robotics Design

5

x

x

x

2B

191571090

Time Series Analysis

5

x

2B

*) Course of the Mastermath Network Utrecht

** The following combinations are not allowed due to considerable overlap in learning objectives:

1. The combination of:

· 201600070 Machine Learning I

· 202200112 AI for Autonomous Robots: deep learning and reinforcement learning

· 201900097 Machine learning in engineering

Systems and Control students are allowed take either of these courses, but not combine them.

2. Any of the combinations:

· 202200104 Control System Design for Robotics

· 201900089 Control for (B)ME

· 202000255 Advanced Control Engineering

· 191561560 Systems and Control

Control System Design for Robotics is compulsory, which means that Systems and Control students cannot take the other courses unless specifically requested and approved by the Examination Board.

3. The combination of:

· 191571090 Time Series Analysis

· 202200111 System Identification with Parameter Estimation and Machine Learning

System Identification with Parameter Estimation and Machine Learning is compulsory, which means that Systems and Control students cannot take Time Series Analysis unless specifically requested and approved by the Examination Board.

CT:Control Theory

RM: Robotics & Mechatronics

BM: Biomechatronics

UAV: Unmanned Arial Vehicles

Course programme | Courses | Master SC (2024)
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