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Laboratory exercises and project

Computer exercises

The computer exercises are to be solved using Matlab in groups of two students. Written reports have to be handed in for computer exercises 1 and 3 (see course information page for deadlines). Computer exercises 2 and 4 are reported by filling in a short form (which can be downloaded below). See course information page for deadlines.

A printed version of the computer exercises is sold at STEX. PDF versions of the computer exercises, and associated Matlab-files are found below.

Lab1 - Loop shaping

Exercise text (pdf 91 kB)

Report form (in Swedish) (pdf 122 kB)

Lab2 - Multivariable systems

Exercise text (pdf 97 kB)

Matlab files (zip 6 kB)

Report form doc (doc 30 kB)

Report form pdf (pdf 9 kB)

Matlab files for testing your results - CONTINUOUSLY UPDATED (zip 4 kB)

Additional Instructions for Lab 3 and 4 - CONTINUOUSLY UPDATED (pdf 131 kB)

Lab3 H_inf design

Exercise text (pdf 515 kB)

Matlab files (zip 18 kB)

Lab4 - Decoupling and Glover-McFarlane

Exercise text (pdf 67 kB)

Matlab files (zip 6 kB)

Report form doc (doc 26 kB)

Report form pdf (pdf 10 kB)

Report form tex (zip 2 kB)

Matlab files for testing your results - CONTINUOUSLY UPDATED (zip 4 kB)

Additional Instructions for Lab 3 and 4 - CONTINUOUSLY UPDATED (pdf 131 kB)

Project

The laboratory project considers a multivariable process whose properties can be modified to display a wide range of dynamical properties. The project is performed in groups of 4 students in the control laboratory, A:225, Osquldas väg 10, level 2. Registration for the laboratory is available through the course home page. Those students who have not managed to form a group of four students prior to registration should register for a time and a process that some other group (with less than four students) have registered for. Note that you will need to book the same lab process (e.g., A) on both occasions. A written projects should be handed in to STEX. The report should present the results in a systematic and concise manner.

Project deadline:

Quadruple tank project (pdf 163 kB)

To support your understanding of model predictive control, we suggest that you do the following computer exercise on your own.

Model predictive control (pdf 131 kB) mpc_calc.m (m 1 kB) mpc_setup.m (m 2 kB) mpc_sim.m (m 1 kB)