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Innovative Electrotechnics Laboratory

Innovatív elektrotechnika laboratórium
A tantárgyleírás hatályossága
Hatályosság kezdete:
2026. March 21.
Hatályosság vége:
Subject name (Hungarian, English)
Innovatív elektrotechnika laboratórium
Innovative Electrotechnics Laboratory
Subject code BMEVIVEAC14
Subject type
Training Level
Course types and hours (weekly/semester)
Course type lecture tutorial laboratory
hours (weekly) 0 0 3
type (linked/independent) autonomous course
Assessment type félévközi érdemjegy
Credits 5
Subject coordinator
Németh Bálint
position: egyetemi docens
Responsible department
Villamos Energetika Tanszék
Faculty Villamosmérnöki és Informatikai Kar
Subject website
Primary curriculum type
Direct prerequisites – Strong prerequisite none
Direct prerequisites – Weak prerequisite none
Direct prerequisites – Parallel prerequisite none
Direct prerequisites – Milestone prerequisite none
Direct prerequisites – Exclusion none

Objectives

Programme

Developing practical application skills, understanding the consistency of physical relationships and computational models, deepening theoretical knowledge. Laboratory investigation of the interactions between switching devices and networks during the operation of switching devices in the electricity network, and of the properties of the electric arc, comparing measurement and calculation results. Students will also learn in practice the diagnostic procedures of different electrical machines. The laboratory provides additional support for the theoretical subjects of the specialization.

Synopsis of lectures

There is no lecture in this subject.

Synopsis of practice and laboratory occasions

1.     Impact of consumers on the network in building energy systems

The aim of the measurement is to point out the effects of different consumers that distort the voltage and current curves, generating harmonics.

2.     Electro-adhesion test

Students will learn about the phenomenon of electro-adhesion in practice. The dependence of the gripping force on electrical parameters and material properties is investigated on an electro-adhesion gripper.

3.     Testing synchronous and asynchronous machines - testing switching transients

During the measurement, students will learn about low-power synchronous and asynchronous drives and motors, which are also used in building services systems. During the measurement, the characteristics of the motors are recorded and compared from a dynamic and application point of view.

4.     Investigation of innovative electromechanical converters

During the laboratory exercise, students will learn about basic piezoelectric phenomena. The electrical and electromechanical characteristics of a piezoelectric converter are investigated, and its characteristics are plotted.

5.     Switching on and off DC and AC circuits

Students will measure various distributed-parameter circuits for on-off and on-off transients. The purpose of the measurement is to make the student aware of the effects of switching overvoltage and the process of their generation.

6.     Investigation of electric arc characteristics and interruption

Students will be introduced to DC and AC arcs. During the measurements, they will take characteristics of the arc-interruption process and compare them with what they have learned in theory.

7.     Testing the operation of fuses and circuit breakers

Students will learn about the different protection systems of low voltage networks, such as circuit breakers and fuses. During the measurement, they will record their characteristics and examine the devices in operation.

8.     Insulating and dissipative materials. Design of an electrostatic workplace.

Students will learn the principles of designing electrostatically protected workplaces. They will verify the electrical properties of the materials used and the effectiveness of protective measures against electrostatic charging by measurements. 

9.     Testing thermoelectric converters  

The aim of this laboratory exercise is to familiarize students with thermoelectric converters. The electrical characteristics of a thermoelectric converter and the efficiency of the conversion are measured.

10.  Insulation testing methods based on partial discharges and reflectometry

Students will perform electrical measurements on a current transformer to detect partial discharges. In the second half of the measurement, reflectometric tests are carried out to determine the fault location in cable systems.

11.  Generation of high voltage

Students will learn and measure methods of generating different voltage levels, both DC and AC.

12.  Physics of induction heating, the forces caused by electric current

In this laboratory occasion, students will study the technique of induction heating, measure the efficiency of the conversion and determine the electrical parameters of the system.

Developing practical application skills, understanding the consistency of physical relationships and computational models, deepening theoretical knowledge. Laboratory investigation of the interactions between switching devices and networks during the operation of switching devices in the electricity network, and of the properties of the electric arc, comparing measurement and calculation results. Students will also learn in practice the diagnostic procedures of different electrical machines. The laboratory provides additional support for the theoretical subjects of the specialization.

Learning outcomes

Ez a tantárgy a KKK rendeletben meghatározott, következő kompetenciák fejlesztését szolgálja:

Knowledge

No learning outcomes recorded.

Skills

No learning outcomes recorded.

Attitudes

No learning outcomes recorded.

Autonomy and responsibility

No learning outcomes recorded.

Oktatási módszertan

The subject consists of 12 laboratory measurements, once a week.

Tanulástámogató anyagok

Online források
For each laboratory exercise, electronic measurement guides are provided and can be downloaded from the course Moodle site.

Recommended preliminary knowledge for completing the subject

Knowledge type competencies
(azon előzetes ismeretek összessége, amelyek megléte nem kötelező, de a tantárgy eredményes teljesítését nagyban elősegíti)
Electrotechnics, theory of electrical networks and systems, measurements techniques
Skill type competencies
(azon előzetes képességek és készségek összessége, amelyek megléte nem kötelező, de a tantárgy eredményes teljesítését nagyban elősegíti)
nincs
Recommended (non-compulsory) preliminary competencies
(azon ajánlott (nem kötelező) előzetesen megszerzendő kompetenciák összessége, amelyek jelentősen hozzájárulnak a tantárgy eredményes teljesítéséhez)
Electrotechnics, theory of electrical networks and systems, measurements techniques
General rules
Requirements: Preparation for the measurement based on the measurement guide. Participate in the measurement at the time and location scheduled by the Course Coordinator. Only those students who have the subject knowledge required for the readiness check can take part in the assessment. Preparation and submission of a common or individual report by the deadline. All assessments are graded (based on answers, performance in the assessment, report). To obtain a semester-end signature, all measurements must be passed with at least a satisfactory level. The mid-semester grade is calculated by rounding the average of the grades given for each assessment exercise. Additional possibilities: Two laboratory measurements can be repeated during the semester. Recap opportunities will be provided during the Week of repeats.
Assessment methods
In-term assessments

No detailed assessments provided.

Weight of in-term assessments

No weights provided.

Exam-period assessments

No detailed assessments provided.

Weight of exam elements

No weights provided.

Grade calculation

No grade thresholds provided.

Attendance requirements

No attendance requirements provided.

Rules for retake and resubmission

Not provided.

Short description

Not provided.

Detailed description
IMSc program: In the assessments, IMSC points may be earned by solving an additional assessment task beyond the normal requirement, if the student has achieved mark 5 without these points. If a student has earned IMSc points in an assessment, it is not possible to increase the IMSc points by re-doing that assessment. IMSc points: The maximum number of IMSc points can be earned is 25. IMSc points can be earned by students in the assessments. A maximum of 2 IMSc points can be earned on each assessment. IMSc points can also be earned by students not participating in the programme.
Recommended courses
Mandatory: - Recommended: Introduction to Electromagnetic Fields Electrical equipment and insulation  
Workload to complete the subject

No workload breakdown provided.

Validity of subject requirements
Requirements valid from:
Requirements valid until:
Curriculum placement

No curriculum placements recorded for this subject version.