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Avionics Systems Engineering

Language of instruction

lithuanian

Qualification degree and (or) qualification to be awarded

Professional Bachelor of Engineering Sciences

Place of delivery

Kaunas, Tvirtovės al. 35, LT-50155

Institution that has carried out assessment

Studijų kokybės vertinimo centras

Institution that has performed accreditation, accreditation term

Studijų kokybės vertinimo centras, 5/30/2026

Data provided or updated (date)

6/3/2021

Order on accreditation

SV6-27
More about programme

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Summary of the Profile

General Description:
Objective(s) of a study programme:
to train specialists in the field of aeronautical engineering who are able to solve the tasks of integration, debugging, testing and operation of avionics systems software, applying various methods and tools, theoretical knowledge and technological progress in a constantly changing environment and seeking improvement related to professional change.
Learning outcomes:
• Know the general laws of natural sciences and mathematics and the laws needed to understand the fundamentals of avionics and electrical engineering.
• Know the most important concepts of avionics systems engineering and understand their content.
• To have the basic knowledge of the avionics and electrical engineering study program, which is important for the practical operation of avionics systems.
• Be able to apply their knowledge and understanding to analyze and solve problems in avionics systems engineering, creatively applying analytical and modeling methods.
• To be able to analyze and solve engineering problems of avionics systems and to select appropriate methods, experimental and production equipment.
• Be able to apply engineering knowledge and understanding in formulating tasks for the design and execution of debugging and testing processes. according to defined requirements.
• Understand operational process design methodologies and be able to apply them.
• Be able to find the necessary professional information using databases and other sources of scientific and engineering information.
• To be able to perform the necessary experiments to solve engineering problems of avionics systems, to process their results and to present practical conclusions of these results.
• To be able to combine theoretical and applied knowledge in solving avionics systems engineering problems related to the selection of engineering solutions, tools and equipment.
• Understand the ethical, environmental, and commercial contexts of avionics systems engineering.
• Understand the principles of organization of engineering activities in avionics systems engineering, know the basic requirements of work and fire safety.
• To be able to solve engineering tasks of avionics systems independently and in a team.
• Be able to communicate with the engineering community in the international space.
• Understand the impact of engineering decisions on society and the environment, adhere to the norms of professional ethics and engineering activities, understand the responsibility for the results of engineering activities.
• Understand the importance of individual lifelong learning and prepare for it.
Activities of teaching and learning:
Student - oriented teaching applying innovative teaching and learning methods.
Methods of assessment of learning achievements:
Learning achievements assessment is carried out during the semester and examination session. Cumulative assessment system is applied and learning achievements are assessed by interim assessments. Examination or course paper presentation is applied during examination session. Ten grade scale system is applied. Final grade consists of interim and examination grades. Final grade is calculated according the proportions foreseen in the subject description.
Framework:
Study subjects (modules), practical training:
Scope of general collegial subjects – 15 credits.
Foreign Language 1 (English Language)/ Foreign Language 1 (German Language); Foreign Language 2 (English Language) Foreign Language 2 (German Language); Aviation Law; Philosophy/ Sociology; Situation Management Psychology/ Project Management.

Scope of core and compulsory subjects – 141 credits.
Mathematics 1; Mathematics 2; Physics; Information Technologies; Aviation Materials; The evolution of aviation; Engineering Graphics and Computer-Aided Drawing; Avionics Systems; Fundamentals of Electrical Engineering and Electronics; Electromagnetism and Electromechanics; Digital Electronics; Microprocessors; Measurements and Fundamentals of Metrology; Environment and Human Safety; Fundamentals of Aerodynamics; Signals and Their Processing; Aircraft Structural Components; Aircraft Functional Systems; Aircraft Gas Turbine Engines and Fuel Systems; Navigation and Communication; Human factor in aviation engineering; Aircraft Computer Systems; Business Economy and Management; Semester Work; Graduation Thesis.

Scope of subjects for deeper specialization – 15 credits.
Images, Image Processing and Rendering/ Basics of autonomous flight; Wireless Communication and Antennas/ Unmanned aircrafts.

Practical training:
raining Practice; Aircraft Technological Practice; Final Practice.
Specialisations:
-
Optional courses:
Possibility to choose subjects (modules) of different area
Distinctive features of a study programme:
Study programme is oriented towards both - the development of professional special competences and general skills and values.
Access to professional activity or further study:
Access to professional activity:
Graduates who are awarded Aeronautical Engineering Professional Bachelor Degree can work in Lithuanian and foreign civil aviation companies, the military air force and internal affairs system, airline companies as continuing airworthiness maintenance specialists, as well as ensuring flight safety in public institutions, airports and their departments and other companies where aeronautical/mechanical engineers and technicians are needed.
Access to further study:
Graduates of the study programme have an access to Master‘s Degree.