Your input will help us improve your experience.You can close this popup to continue using the website or choose an option below to register in or log in.
The Process Automation Engineering program is one of the most important and promising fields in modern industrial and technological engineering. This program trains specialists who manage, control, and optimize automated processes in industries such as manufacturing, energy, chemical, oil and gas, food, logistics, and many others. In today’s world, the implementation of automation systems is essential for the efficient operation of industrial enterprises, improving product quality, and ensuring safety.
The main goal of the program is to prepare professionals who design, implement, and operate systems that minimize human intervention and enable automatic control of complex technological processes. Process automation engineers increase the efficiency of production processes using various sensors, control devices, software, and information technologies.
Students first acquire foundational knowledge in subjects such as mathematics, physics, and the basics of electrical and electronics engineering. They then study professional courses including automation and control theory, industrial automation systems, programming, microprocessor technology, PLC (Programmable Logic Controller) systems, SCADA (Supervisory Control and Data Acquisition) systems, and sensor and measurement technologies. This knowledge equips students with practical skills applicable in real industrial environments.
A key aspect of the program is the development of control algorithms, which automatically regulate parameters such as temperature, pressure, and flow rate in industrial systems. Students learn not only classical control methods but also modern intelligent control techniques, including artificial intelligence, reinforcement learning, fuzzy logic, and neural networks.
Programme overview
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
The Process Automation Engineering program is one of the most important and promising fields in modern industrial and technological engineering. This program trains specialists who manage, control, and optimize automated processes in industries such as manufacturing, energy, chemical, oil and gas, food, logistics, and many others. In today’s world, the implementation of automation systems is essential for the efficient operation of industrial enterprises, improving product quality, and ensuring safety.
The main goal of the program is to prepare professionals who design, implement, and operate systems that minimize human intervention and enable automatic control of complex technological processes. Process automation engineers increase the efficiency of production processes using various sensors, control devices, software, and information technologies.
Students first acquire foundational knowledge in subjects such as mathematics, physics, and the basics of electrical and electronics engineering. They then study professional courses including automation and control theory, industrial automation systems, programming, microprocessor technology, PLC (Programmable Logic Controller) systems, SCADA (Supervisory Control and Data Acquisition) systems, and sensor and measurement technologies. This knowledge equips students with practical skills applicable in real industrial environments.
A key aspect of the program is the development of control algorithms, which automatically regulate parameters such as temperature, pressure, and flow rate in industrial systems. Students learn not only classical control methods but also modern intelligent control techniques, including artificial intelligence, reinforcement learning, fuzzy logic, and neural networks.
Tuition fees
Domestic
1,353
International
1,800
Scholarships
Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.
To help students navigate this challenging process, we recommend the following articles:
The curriculum includes courses in automation and control theory, PLC and SCADA systems, industrial electronics, programming, sensor and measurement technologies, as well as laboratory and project work.
In the 4th year, students undertake practical training at industrial enterprises, factories, and energy companies, working with real automation systems.
Process Automation is a highly demanded field in modern industry, and graduates have wide employment opportunities in oil and gas, energy, manufacturing, and technology companies.
Students learn languages such as C/C++, Python, MATLAB, Ladder Logic, as well as PLC platforms like Siemens, Schneider, and others.
Yes, technical seminars, startup projects, and international exchange programs are offered.
Process Automation Engineering
1,800 Tuition Fee/year
Programme overview
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
The Process Automation Engineering program is one of the most important and promising fields in modern industrial and technological engineering. This program trains specialists who manage, control, and optimize automated processes in industries such as manufacturing, energy, chemical, oil and gas, food, logistics, and many others. In today’s world, the implementation of automation systems is essential for the efficient operation of industrial enterprises, improving product quality, and ensuring safety.
The main goal of the program is to prepare professionals who design, implement, and operate systems that minimize human intervention and enable automatic control of complex technological processes. Process automation engineers increase the efficiency of production processes using various sensors, control devices, software, and information technologies.
Students first acquire foundational knowledge in subjects such as mathematics, physics, and the basics of electrical and electronics engineering. They then study professional courses including automation and control theory, industrial automation systems, programming, microprocessor technology, PLC (Programmable Logic Controller) systems, SCADA (Supervisory Control and Data Acquisition) systems, and sensor and measurement technologies. This knowledge equips students with practical skills applicable in real industrial environments.
A key aspect of the program is the development of control algorithms, which automatically regulate parameters such as temperature, pressure, and flow rate in industrial systems. Students learn not only classical control methods but also modern intelligent control techniques, including artificial intelligence, reinforcement learning, fuzzy logic, and neural networks.
Programme overview
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
The Process Automation Engineering program is one of the most important and promising fields in modern industrial and technological engineering. This program trains specialists who manage, control, and optimize automated processes in industries such as manufacturing, energy, chemical, oil and gas, food, logistics, and many others. In today’s world, the implementation of automation systems is essential for the efficient operation of industrial enterprises, improving product quality, and ensuring safety.
The main goal of the program is to prepare professionals who design, implement, and operate systems that minimize human intervention and enable automatic control of complex technological processes. Process automation engineers increase the efficiency of production processes using various sensors, control devices, software, and information technologies.
Students first acquire foundational knowledge in subjects such as mathematics, physics, and the basics of electrical and electronics engineering. They then study professional courses including automation and control theory, industrial automation systems, programming, microprocessor technology, PLC (Programmable Logic Controller) systems, SCADA (Supervisory Control and Data Acquisition) systems, and sensor and measurement technologies. This knowledge equips students with practical skills applicable in real industrial environments.
A key aspect of the program is the development of control algorithms, which automatically regulate parameters such as temperature, pressure, and flow rate in industrial systems. Students learn not only classical control methods but also modern intelligent control techniques, including artificial intelligence, reinforcement learning, fuzzy logic, and neural networks.
Tuition fees
Domestic
International
Scholarships
Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.
To help students navigate this challenging process, we recommend the following articles:
How to get a full scholarship
Looking for a fully-funded scholarship to see you into university? Find out how to boost your chances of getting one.
Scholarships to study abroad
Find scholarships to study abroad with our lists of international scholarships – categorized by country, by subject, and by type of student.
Scholarship Applications: Frequently Asked Questions
Get answers to all your questions about scholarship applications, including tips on how to find scholarships and chances of success.
More programmes from the university
Arts and Humanities (4)
Architecture
Architecture
Design
Design
Business and Management (4)
Business management
Business management
Economics
Economics
Management
Management
Marketing
Marketing
Sustainable Development
Sustainable Development
Engineering and Technology (4)
Civil engineering
Civil engineering
Communication Systems Engineering
Communication Systems Engineering
Ecological Engineering
Ecological Engineering
Electrical and electronics engineering
Electrical and electronics engineering
Geodesy and cartographic engineering
Geodesy and cartographic engineering
Industrial Engineering
Industrial Engineering
Information Security
Information Security
Information Technology
Information Technology
Land management and real estate cadastre
Land management and real estate cadastre
Life safety engineering
Life safety engineering
Logistics and transport technology engineering
Logistics and transport technology engineering
Machine engineering
Machine engineering
Materials Engineering
Materials Engineering
Mechanical Engineering
Mechanical Engineering
Melioration Engineering
Melioration Engineering
Oil and gas engineering
Oil and gas engineering
Process Automation Engineering
Process Automation Engineering
Transportation Construction Engineering
Transportation Construction Engineering
Transportation engineering
Transportation engineering
Others (4)
Urban planning
Urban planning
Arts and Humanities (3)
Architecture
Architecture
Design
Design
Urban Planning
Urban Planning
Business and Management (3)
Business Administration
Business Administration
Economics
Economics
Management
Management
Marketing
Marketing
Master of Business Administration (MBA)
Master of Business Administration (MBA)
Engineering and Technology (3)
Civil Engineering
Civil Engineering
Electrical and Electronics Engineering
Electrical and Electronics Engineering
Engineering of Communication Systems
Engineering of Communication Systems
Environmental Engineering
Environmental Engineering
Geomatics and Geodesy Engineering
Geomatics and Geodesy Engineering
Industrial Engineering
Industrial Engineering
Information Security
Information Security
Information Technology
Information Technology
Land Management and Real Estate Cadastre
Land Management and Real Estate Cadastre
Life Safety Engineering
Life Safety Engineering
Logistics and Transportation Technologies Engineering
Logistics and Transportation Technologies Engineering
Machine engineering
Machine engineering
Materials Engineering
Materials Engineering
Mechanical Engineering
Mechanical Engineering
Melioration Engineering
Melioration Engineering
Oil and Gas Facilities Engineering
Oil and Gas Facilities Engineering
Process Automation Engineering
Process Automation Engineering
Transportation Construction Engineering
Transportation Construction Engineering
Transportation Engineering
Transportation Engineering
Frequently Asked Questions