Politechnika Częstochowska - Centralny System Uwierzytelniania
Strona główna

Introduction to automation of production processes WZ-QPM-D1-IAP-05
Wykład (WYK) Semestr letni 2024/2025

Informacje o zajęciach (wspólne dla wszystkich grup)

Liczba godzin: 15
Limit miejsc: (brak limitu)
Zaliczenie: Zaliczenie na ocenę
Literatura: (tylko po angielsku)

BASIC AND SUPPLEMENTARY RESOURCE MATERIALS

Basic resources

1. Panasiuk J., Kaczmarek W., Robotization of production processes, Wydawnictwo Naukowe PWN, Warszawa 2019.

2. Surdak Ch., The Care and Feeding of Bots: an Owner's Manual for Robotic Process Automation, Ouray Mills Publishing, Redlands 2020.

3. Bolton W., Programmable Logic Controllers, Elsevier Science & Technology, 2015.

Supplementary resources

1. Manesis S., Nikolakopoulos G., Introduction to Industrial Automation, Taylor & Francis Inc, 2018.

2. Zachary W., A Guide to Robotic Process Automation for the Average Worker: RPA Use Cases, and How to Keep Your Job Safe from Bots, 2019.

3. Krylov V.I., Skobla N.S., Skoblya N.S., A Handbook of Methods of Approximate Fourier Transformation and Inversion of the Laplace Transformation, Mir, Moskow 1977.

Efekty uczenia się: (tylko po angielsku)

EU1. Student is able to describe phenomena in the field of automation using the Laplace transforms.

EU2. Student is able to present and describe basic problems in the areas of automation. He is able to adapt their principles and justify the reasons for their adaptation in diversified areas of technical sciences.

EU3. Student is able to create models of basic automation terms. He can describe them by determining their time and frequency characteristics.

EU4. Student is able to design and model control systems based on combinational logic circuits.

Metody i kryteria oceniania: (tylko po angielsku)

P1. Passing the lecture with a grade.

EU1:

2,0 -Student cannot describe phenomena of automation fields using the Laplace transforms.

3,0 -Student is able to describe only chosen phenomena in the field of automation using few Laplace transforms.

4,0 -Student is able to describe a few phenomena in the field of automation using the Laplace transforms.

5,0 -Student is able to describe most phenomena in the field of automation using the Laplace transforms.

EU2:

2,0 -Student cannot present and describe basic problems in the areas of automation. He isn’t able to adapt their principles and justify the reasons for their adaptation in diversified areas of technical sciences.

3,0 -Student is able to present and describe few basic problems in the areas of automation. He isn’t able to adapt their principles and justify the reasons for their adaptation in diversified areas of technical sciences.

4,0 -Student is able to present and describe few basic problems in the areas of automation. He is able to adapt their principles and justify the reasons for their adaptation in few areas of technical sciences.

5,0 -Student is able to present and describe most of the basic problems in the areas of automation. He is able to adapt their principles and justify the reasons for their adaptation in diversified areas of technical sciences.

EU4:

2,0 -Student cannot design and model elementary control systems based on combinational logic circuits.

3,0 -Student is able to design elementary control systems based on combinational logic circuits.

4,0 -Student is able to design and model elementary control systems based on combinational logic circuits.

5,0 -Student is able to design and model advanced control systems based on combinational logic circuits.

Zakres tematów: (tylko po angielsku)

W1. Introduction to the subject. Presentation of basic concepts and terms related to the automation of production processes-1h

W2. Laplace transform. Inverse transform. Properties of Laplace transforms-1h

W3. Determination of Laplace transforms. Tables of Laplace transforms-1h

W4/5. Transfer function of automation basic terms (proportional term - P, integral term - I, derivative term - D, PI term, PD term, PID term)-2h

W6. The response determination of the automation basic terms to the given signals-1h

W7/8. Block Diagrams and Transfer Functions. Interconnections of systems: (a) series, (b) parallel and (c) feedback connections-2h

W9/10. Relay control systems-2h

W11/12. Digital control systems-2h

W13/14. Programmable Logic Controllers - construction and programming-2h

W15. PLC languages: Ladder Diagram (LD), Instruction List (IL)-1h

Total: 15h

Metody dydaktyczne: (tylko po angielsku)

1. Books and monographs.

2. Audiovisual presentation.

3. Laboratory devices.

4. E-learning platform.

Grupy zajęciowe

zobacz na planie zajęć

Grupa Termin(y) Prowadzący Miejsca Liczba osób w grupie / limit miejsc Akcje
1 (brak danych), (sala nieznana)
Waldemar Jędrzejczyk 0/ szczegóły
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