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Invoice data

Company ID: 00397610, VAT: SK2020486710

Address

Letná 1/9, 042 00 Košice, Slovakia

Phone

+421 55 602 2287

LaboratoriesBSH Laboratory of Drive ControlLaboratory of Electric Drives ApplicationsLaboratory of Automotive Electrical EngineeringLaboratory of Electric Devices and Applied ElectronicsLaboratory of Electric Machines and Electric DrivesLaboratory of Industrial AutomationLaboratory of Controlled Electric Drives
Laboratory of Simulation Systems
Laboratory of Power Electronics
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Laboratory of Simulation Systems/

Laboratory of Simulation Systems

Location

Letná 9/1, B-wing, 2nd floor, room no. L9-B228

Laboratory supervisor

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doc. Ing. Peter Girovský, PhD.

docent

About laboratory

The laboratory is equipped with computers for 20 students with installed CAD software packages (EPLAN, CREO), ARENA software for the analysis, simulation, and optimization of production processes, RobotStudio software for simulation and offline programming of robotic workstations, and MATLAB software together with its toolboxes (Control Toolbox, SimMechanics, Simscape, Fuzzy Logic Toolbox, Neural Network Toolbox, and others) for modeling and simulation of physical systems. This laboratory provides the software resources required not only for teaching relevant specialized courses, but also for the completion of semester projects and final theses.

Subjects and learning outcomes

Bachelor’s Studies:

  • Fundamentals of Robotics (robot design, kinematic analysis of robots, design of robot arm motion control algorithms, fundamentals of robot programming using ABB RobotStudio).
  • Computer Applications (numerical and graphical methods and techniques in MATLAB and Excel for various scientific and application areas; methods and procedures applicable to mathematics, physics, and automatic control theory, and their use in modeling and control of industrial processes).
  • Modeling and Simulation in Electrical Engineering (fundamental knowledge and advanced practices in mathematical modeling, modeling and simulation of electrical circuits, analysis of results obtained in the time and frequency domains, assessment of the influence of electrical circuit component parameters on dynamic properties, and application of MATLAB tools to the analysis of dynamic systems).
  • Simulation of Production Systems (development of computer models of discrete stochastic systems, their verification, simulation experiments, analysis of results, and formulation of conclusions that can be confirmed with sufficient accuracy after implementation in practice).

Master’s Studies:

  • Design of Electrical Engineering Equipment 2 (tools of the EPLAN software package, one of the most widely used software tools for preparing electrical engineering documentation in industrial practice).
  • 3D Modeling and Simulation (modeling in the professional CAD software Creo, creation of part models, assemblies, drawings, and animations).
  • Artificial Intelligence in the Control of Electromechanical Systems (fuzzy systems, neural networks, hybrid systems, and their application to the control of electromechanical systems).

Doctoral Studies:

  • Electromechanical Systems (dynamic models of electromechanical systems as a whole and of their individual subsystems; methods and properties of control techniques for both linear and nonlinear electromechanical systems; design and dynamic models of selected electrical machines; design and characteristics of static power converters related to the doctoral candidate’s research work).
  • Scientific Research Activity 1–5 (ability to independently conceptualize, design, implement, and modify a substantial part of research with scientific integrity, contributing original research that expands the boundaries of scientific knowledge through the realization of a comprehensive body of work, some of which is worthy of peer-reviewed publication. Achievement of original scientific results acceptable at the international level. Based on the conducted scientific research, the graduate is regarded as an expert in their field.)