
Power system simulation helps engineers understand how an electrical network behaves during normal operation, faults, switching events, and system disturbances.
This beginner-level course introduces the fundamentals of power systems, power system analysis, and simulation studies.
You will first understand the complete electrical energy chain:
Generation
Transmission
Distribution
Utilisation
The course explains how different forms of energy are converted into electrical energy, transmitted over long distances, distributed to consumers, and converted into useful outputs such as heat, light, and mechanical energy.
You will then learn why power system analysis is required.
Power system engineers perform studies to improve:
System reliability
Equipment availability
Power quality
Operational safety
System stability
Project economy
The course classifies power system studies into steady-state and transient studies.
Steady-State Studies
Load flow or power flow analysis
Short circuit analysis
Harmonic analysis
Protection coordination
Arc flash analysis
Electromechanical Transient Studies
Motor acceleration
Generator stability
Fault ride-through behaviour
Critical clearing time
Transient stability
Electromagnetic Transient Studies
Temporary overvoltage
Switching overvoltage
Lightning overvoltage
Very fast-front overvoltage
Ferroresonance
Transient recovery voltage
Subsynchronous resonance
By the end of this course, you will understand the purpose of major power system studies and how they are applied in industrial, utility, renewable energy, and grid projects.