Nov 18, 2019   8:10 p.m. Eugen
Academic information system

Summary of topics offered - Faculty of Electrical Engineering and Information Technology

Basic information

Type of work: Dissertation thesis
Topic: Aktívne tlmenie kmitania kompozitných štruktúr
Title of topic in English: Active vibration damping of the composite structures
State of topic: approved (prof. Ing. Justín Murín, DrSc. - Chairperson of Departmental Board)
Thesis supervisor: doc. Ing. Vladimír Goga, PhD.
Faculty: Faculty of Electrical Engineering and Information Technology
Supervising department: Institute of Automotive Mechatronics - FEEIT
Max. no. of students: 1
Academic year:2019/2020
Proposed by: doc. Ing. Vladimír Goga, PhD.
Annotation: Úlohy: 1. Rešerš súčasného stavu metód používaných pre aktívne tlmenie vibrácii konštrukčných prvkov. 2. Možnosti výroby a modifikácia zloženia kompozitných štruktúr. 3. Identifikácia pevnostných a dynamických parametrov kompozitných materiálov. 4. Návrh a realizácia experimentálneho mechatronického systému s možnoťou merania a riadenia vybraných veličín. 5. Tvorba zjednodušeného matematického modelu mechatronického systému za účelom stanovenia riadiacich algoritmov pre aktívne tlmenie kompozitných štruktúr. 6. Overenie a testovanie riadiacich algoritmov na experimentálnom meracom systéme. 7. Aplikácia kompozitných SMART materiálov pri stavbe a ovládaní elektroformuly.
Annotation in English: Tasks: 1. Review of the methods used for active vibration damping of the structural elements. 2. Possibilities of production and modification of the composite structures. 3. Identification of strength and dynamic parameters of the composite materials. 4. Design and realization of experimental mechatronic system with possible measurement and control of selected quantities. 5. Creation of a simplified mathematical model of the mechatronic system in order to determine control algorithms for active damping of the composite structures. 6. Verifying and testing control algorithms on the experimental measurement system. 7. Application of composite SMART materials in the construction and operation of the electrically-driven formula race car.

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Restrictions by study
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D-MS Mechatronic Systems