Category | Scientific-professional |
Scientific or art field | Electroenergetics |
ECTS | 6 |
Acquiring basic knowledge about the three-phase power systems, which are necessary for basic steady-state calculations – power flow. This knowledge consists of basic elements (loads, AC machines, transformers, lines, capacitors, and inductors), and electrical circuits theory aimed at representing of power system elements and power systems themselves. This will provide the ability of students for solving the power flow issue.
Comprehensive knowledge of sequence domain mathematical models of three-phase power systems elements in steady-states. The student’s ability to model and calculate the states of power system three-phase elements. Qualifying the students to continue with modeling and calculation complex balanced large-scale power systems.
Mathematical tools necessary for basic calculations of three-phase power systems (sinusoidal functions, complex numbers and operations, matrices, linear equations, nonlinear equations, and differential equations). Power system circuits include basic laws for modeling and calculation of electrical circuits typical for power systems in steady-states. Sequence and and per unit system are specially stressed. The power system elements consist of sequence circuits of three-phase loads, AC machines, transformers, lines, capacitor banks and inductors. Power flow and its solution.
Lectures; Auditory Practice; Consultations.
Authors | Title | Year | Publisher | Language |
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Course activity | Pre-examination | Obligations | Number of points |
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Written part of the exam - tasks and theory | No | Yes | 70.00 |
Test | Yes | Yes | 20.00 |
Exercise attendance | Yes | Yes | 5.00 |
Lecture attendance | Yes | Yes | 5.00 |
Associate Professor
Associate Professor
Assistant with PhD
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© 2024. Faculty of Technical Sciences.