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SCADA systems - course description

General information
Course name SCADA systems
Course ID 06.5-WE-AutP-SSCADA-Er
Faculty Faculty of Computer Science, Electrical Engineering and Automatics
Field of study WIEiA - oferta ERASMUS / Automatic Control and Robotics
Education profile -
Level of studies First-cycle Erasmus programme
Beginning semester winter term 2018/2019
Course information
Semester 4
ECTS credits to win 4
Course type obligatory
Teaching language english
Author of syllabus
  • prof. dr hab. inż. Marcin Witczak
Classes forms
The class form Hours per semester (full-time) Hours per week (full-time) Hours per semester (part-time) Hours per week (part-time) Form of assignment
Lecture 30 2 - - Credit with grade
Laboratory 30 2 - - Credit with grade

Aim of the course

-  Introduction to SCADA (Supervisory Control and Data Acquisition) systems

- Shaping skills in understanding the necessity of implementing process  visualization

- Shaping essential skills in designing process visualization with WonderWare InTouch

Prerequisites

Techniques of control eng., dynamic systems and signals, modelling and simmulation, linear algebra, PLC

Scope

Introduction to HMI (ang. Human Machine Interface) and SCADA. Essentials rules concerning (ang. Supervisory Control and Data Acquisition). Essential elements of SCADA systems and their role. Review of most popular SCADA systems - drawback and advantages. History of SCADA.

Installation and configuration of InTouch SCADA. Project and HMI design with InTouch. Variables in communication inside and outside programmes. Historical variables and their processing. If and loop commands. Scripts: application, window, key, touch, data change, conditional.

Typical communication protocols used in InTouch SCADA: DDE i Suitelink. Examples of recipies. Alarms and groups of alarms: alarms tree design and implementation.

Integration of PLC, actuators and sensors in SCADA. An example of  the system integration with PLC and a pump feeding a tank.

Designing a diagnostic system, control and visualization - practical example. Diagnostics and visualization of processes with InTouch SCADA.

Teaching methods

Lecture: problem-based lecture
Lab: lab excercises

Learning outcomes and methods of theirs verification

Outcome description Outcome symbols Methods of verification The class form

Assignment conditions

Lecture - positive scores concerning a written test

Lab - positive scores concerning all laboratory exercises

Recommended reading

1. Witczak M., Sterowanie i wizualizacja systemów, Państwowa Wyższa Szkoła Zawodowa (Zeszyty Naukowe Automatyki i Robotyki; 1), Głogów, 2011

2. Wonderware: InTouch - Pierwsze krok, http://www.astor.com.pl, 2006

3. McCrady, S.G., Designing SCADA Application Software : A Practical Approach, Elsevier, London, 2013

4. Korbicz J., Kościelny M., Kowalczuk Z. i Cholewa W. (Ed.): Diagnostyka Procesów. Modele. Metody Sztucznej Inteligencji. Zastosowania, WNT, Warszawa, 2002

Further reading

Notes


Modified by dr hab. inż. Wojciech Paszke, prof. UZ (last modification: 29-04-2020 14:21)