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Measurement and control technologyLaajuus (5 cr)

Code: EN00BH52

Credits

5 op

Teaching language

  • English

Responsible person

  • Merja Mäkelä

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Materials

Modelling and simulation of process systems
Process control systems and communication networks

Enrollment

04.11.2024 - 17.11.2024

Timing

13.01.2025 - 25.04.2025

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Seats

20 - 39

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Kirsi Hovikorpi

Groups
  • ENKT23SP
    Energy engineering, full-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Opiskelumateriaali

1. Lecture slides and other materials in Learn, and links to www.knowpulp.com ja www.knowpap.com

Other
2. Harju, T., Marttinen, A., Säätöpiirin virityksen perusteet, Control CAD, Espoo 2001, 166 s. Vastaava teksti on saatavissa Suomen Automaatioseuran sivuilta.
3. Bolton, W. Instrumentation and control systems, Elsevier, UK, 2004, 339 p.
4. Learning Environment for Papermaking and Automation, KnowPap, AEL and Prowledge, 2015, Finland.
5. Learning Environment for Chemical Pulping and Automation, KnowPulp, AEL and Prowledge, 2015, Finland.
6. Sell, N. J., Process Control Fundamentals for the Pulp and Paper Industry, Tappi Press, 1995, Atlanta, USA, 612 p., ISBN 0-89852-294-3
7. http://en.wikipedia.org/wiki/Programmable_logic_controller Programmable logic controller
8. S7-200 Programmable Controller, System Manual, Siemens, 2008
9. Getting started with S7-200, Manual, Siemens, 2007
10. Getting started with S7-1200, Manual, Siemens, 2009
11. http://www.automation.siemens.com/mcms/programmable-logic-controller/en/simatic-s7-controller/s7-1200/Pages/Default.aspx
12. Automaatiosovellusten ohjelmistokehitys. Suunnittelun työtavat, välineet ja sovellusarkkitehtuurit. Suomen Automaatioseura ry. 2005. 152 s.

Yksilölliset oppimisväylät

Scheduled track:
After completing this course, you will be able to
- explain main operating principles in measuring and controlling levels, temperatures, pressures and flows
- implement PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- implement and commission basic instrumentation and motor loops in programmable logic controllers (PLC).
How are you able to control automatically the level of a tank, the temperature of a fluid, the flow in a
pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How are you able to make program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

TKI ja työelämäyhteistyö

Ei sisällä TKI- ja työelämäyhteistyötä

Opiskelijan työmäärä

Lectures
Lab projects
Self-study

Further information

Prerequisite courses are
1. Energiatekniikan insinöörimatematiikka 2 - Energy Engineering Mathematics 2
2. Instrumentointi ja sähköistys - Instrumentation and Electrification.

Evaluation scale

1-5

Assessment methods and criteria

Exam (60 %) and laboratory projects (40 %), with grades 0-5, both are expected to be accepted.

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Enrollment

08.04.2024 - 21.04.2024

Timing

19.08.2024 - 20.12.2024

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • English
  • Finnish
Seats

20 - 40

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Kirsi Hovikorpi

Groups
  • ENKT23KM
    Energy engineering, part-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Opiskelumateriaali

Material in the Learn base.

Yksilölliset oppimisväylät

The course is carried out on a working week basis.

Independent track:
Exam and working life project.

Blended track:
Exam and RDI project

TKI ja työelämäyhteistyö

Possible excursions to companies.

Tentit ja muut määräajat

Learn exam from the theory part.

Making and returning a report on laboratory exercises.

Toteutuksen osien kuvaus

Theory sections as web-based distance education.

Practical laboratory work at the Kotka campus on the days of the near-term study.

Evaluation scale

1-5

Assessment methods and criteria

From theory part an exam in Learn base.

Laboratory exercise.

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Enrollment

06.11.2023 - 17.11.2023

Timing

08.01.2024 - 26.04.2024

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • English
Seats

0 - 50

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Kirsi Hovikorpi

Groups
  • ENKT22SP
    Energy engineering, full-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Opiskelumateriaali

1. Lecture slides and other materials in Moodle.
2. Harju, T., Marttinen, A., Säätöpiirin virityksen perusteet, Control CAD, Espoo 2001, 166 s. Vastaava teksti on saatavissa Suomen Automaatioseuran sivuilta.
3. Bolton, W. Instrumentation and control systems, Elsevier, UK, 2004, 339 p.
4. Learning Environment for Papermaking and Automation, KnowPap, AEL and Prowledge, 2015, Finland.
5. Learning Environment for Chemical Pulping and Automation, KnowPulp, AEL and Prowledge, 2015, Finland.
6. Sell, N. J., Process Control Fundamentals for the Pulp and Paper Industry, Tappi Press, 1995, Atlanta, USA, 612 p., ISBN 0-89852-294-3
7. http://en.wikipedia.org/wiki/Programmable_logic_controller Programmable logic controller
8. S7-200 Programmable Controller, System Manual, Siemens, 2008
9. Getting started with S7-200, Manual, Siemens, 2007
10. Getting started with S7-1200, Manual, Siemens, 2009
11. http://www.automation.siemens.com/mcms/programmable-logic-controller/en/simatic-s7-controller/s7-1200/Pages/Default.aspx
12. Automaatiosovellusten ohjelmistokehitys. Suunnittelun työtavat, välineet ja sovellusarkkitehtuurit. Suomen Automaatioseura ry. 2005. 152 s.

Yksilölliset oppimisväylät

Scheduled track:
After completing this course, you will be able to
- explain main operating principles in measuring and controlling levels, temperatures, pressures and flows
- implement PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- implement and commission basic instrumentation and motor loops in programmable logic controllers (PLC).
How are you able to control automatically the level of a tank, the temperature of a fluid, the flow in a
pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How are you able to make program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Independent track:
Exam and working life project.

Blended track:
Exam and RDI project

TKI ja työelämäyhteistyö

RDI work is not included in the course.

Evaluation scale

1-5

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Enrollment

07.11.2022 - 18.11.2022

Timing

09.01.2023 - 28.04.2023

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • English
Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Kirsi Hovikorpi

Groups
  • ENKT21SP
    Energy engineering, full-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Evaluation scale

1-5

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Enrollment

06.04.2022 - 22.04.2022

Timing

26.08.2022 - 16.12.2022

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • English
Seats

10 - 50

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Vesa Kankkunen

Groups
  • VOKTEN22S
    Energiatekniikka, vaihto-opiskelijat
  • ENKT21KM
    Energy engineering, part-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Opiskelumateriaali

1. Lecture slides and other materials in Learn.
2. Harju, T., Marttinen, A., Säätöpiirin virityksen perusteet, Control CAD, Espoo 2001, 166 s. Vastaava teksti on saatavissa Suomen Automaatioseuran sivuilta.
3. Bolton, W. Instrumentation and control systems, Elsevier, UK, 2004, 339 p.
4. Learning Environment for Papermaking and Automation, KnowPap, AEL and Prowledge, 2015, Finland.
5. Learning Environment for Chemical Pulping and Automation, KnowPulp, AEL and Prowledge, 2015, Finland.
6. Sell, N. J., Process Control Fundamentals for the Pulp and Paper Industry, Tappi Press, 1995, Atlanta, USA, 612 p., ISBN 0-89852-294-3
7. http://en.wikipedia.org/wiki/Programmable_logic_controller Programmable logic controller
8. S7-200 Programmable Controller, System Manual, Siemens, 2008
9. Getting started with S7-200, Manual, Siemens, 2007
10. Getting started with S7-1200, Manual, Siemens, 2009
11. http://www.automation.siemens.com/mcms/programmable-logic-controller/en/simatic-s7-controller/s7-1200/Pages/Default.aspx
12. Automaatiosovellusten ohjelmistokehitys. Suunnittelun työtavat, välineet ja sovellusarkkitehtuurit. Suomen Automaatioseura ry. 2005. 152 s.

Yksilölliset oppimisväylät

Scheduled track:
After completing this course, you will be able to
- explain main operating principles in measuring and controlling levels, temperatures, pressures and flows
- implement PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- implement and commission basic instrumentation and motor loops in programmable logic controllers (PLC).
How are you able to control automatically the level of a tank, the temperature of a fluid, the flow in a
pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How are you able to make program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Independent track:
Exam and working life project.

Blended track:
Exam and RDI project

TKI ja työelämäyhteistyö

Ei sisällä TKI- ja työelämäyhteistyötä

Opiskelijan työmäärä

Lectures
Lab projects
Self-study

Further information

Prerequisite courses are
1. Energiatekniikan insinöörimatematiikka 2 - Energy Engineering Mathematics 2
2. Instrumentointi ja sähköistys - Instrumentation and Electrification.

Evaluation scale

1-5

Assessment methods and criteria

Exam (60 %) and laboratory projects (40 %), with grades 0-5, both are expected to be accepted.

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification

Enrollment

08.11.2021 - 21.11.2021

Timing

10.01.2022 - 29.04.2022

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • English
Seats

10 - 60

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Vesa Kankkunen
  • Kirsi Hovikorpi
Teacher in charge

Vesa Kankkunen

Groups
  • ENKT20SP
    Energy engineering, full-time studies

Objective

After completing this course, you will be able to
- explain the main operating principles in measuring and controlling levels, temperatures, pressures and flows
- realize PID controllers
- analyze the relationship of process dynamics and PID controller tuning
- realize and commission basic instrumentation and motor loops in programmable logic controllers (PLC).

Content

How to control automatically the level of a tank, the temperature of a fluid, the flow in a pipeline or the pressure of steam, and thus improve the energy efficiency of a process?
How does a PID controller compute the control signal to an actuator in a feedback control loop, and how are the tuning parameters specified?
How do differential equations and Laplace transfer function models describe process dynamics, and how are these models applied to Matlab Simulink for simulations?
How to make a program for a measurement, feedback control or pump control in a programmable logic controller (PLC)?

Evaluation scale

1-5

Qualifications

Prerequisite courses are:
Energy engineering mathematics 2
Instrumentation and electrification