Electric Energy Systems (I)
- - Concepts and models of basic elements (sources, resistors, ...)
- - Analysis of electrical circuits (KCL, KVL, node method, loop method, ...)
- - Basic circuit theorems (Thevenin-Norton, maximum power transfer, ...) and dynamic components (inductance, capacitance, ideal transformer, ... )
- .Dynamic elements (cont.), nonlinear states, power and energy, interconnection of resistors and dynamic elements
- Steady state response of circuits to constant inputs and operational amplifiers (OpAmp)
- - First order circuits (RL, RC, time constant, transient response, permanent response, ...)
- .Step response, Impulse response, constant input response, etc.
- .Second order circuits, response to arbitrary input (convolution integral), ...
- .state-space representation, dual circuits, etc.
- .- phasor, impedance, admittance, power factor, ... and maximum power transmission, ...
- .- Three-phase systems (introduction, symmetric balanced systems, ...) and mutual inductance
- .Mutual inductors (cont.), three-phase systems and ideal transformers
- .- Single-phase transformer (model, analysis, voltage regulation, ...)
- .- Reminders of the basics of electromagnetism (magnetic flux, field strength, flux density, magnetic induction, ...)
- .- Basic concepts in magnetic circuits (reluctance, energy, co-energy, energy conversion ...)
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