TELE2001

Control Engineering

Last taught 2020

Autumn

Trondheim

Norwegian

Overview

28 candidates

Average grade

C

2.71

0.35

Pass rate

100%

14 points

Grade distribution
Average over time
Pass rate over time

About this course

Content

Introduction to practical control engineering. Representation of dynamic systems with ordinary differential equations. Linearization. Laplace transform and transfer functions. Block diagrams. Frequency analysis. Experimental and mathematical modelling of physical processes. Stability theory and stability investigation. Tuning of PID-controllers based on analyses both in the time and frequency domain. Practical limitations and alternative control structures.

Learning outcomes

Knowledge: The candidate can explain
- the purpose of introducing control loops.
- functioning and purpose with each component in a control loop.
- correspondence between the presented representational forms for dynamic systems.
- the notion of stability.
- how the choice of controller influences steady-state deviation, response time and stability.

Skills: The candidate can
- carry out experimental and mathematical modelling of simple processes.
- draw block diagrams of simple processes.
- reduce block diagrams.
- tune controllers using the lectured methods.
- calculate how disturbances influence both the controlled and uncontrolled system.

General competence: The candidate wields a combination of theoretical and practical skills within the subject area, providing a base for solving practical problems in a professional setting - and for further education within the subject area.

Teaching methods

Lectures, assignments and laboratory exercises