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Analysis and Design of Electrical Power Systems

This course, you will be able to develop understanding as well as analytical skills in relation to the design of electrical power systems. It presents fundamental strategies to be used in designing, analyzing, and optimizing power systems for distribution and generation purposes to enhance the operational efficiency and reliability and safety in the supply of electricity.

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Amman

Fees: 4950 $
From: 13-10-2025
To: 17-10-2025

Cairo

Fees: 4950 $
From: 20-10-2025
To: 24-10-2025

Amsterdam

Fees: 6200 $
From: 03-11-2025
To: 07-11-2025

London

Fees: 6200 $
From: 10-11-2025
To: 14-11-2025

Casablanca

Fees: 4950 $
From: 24-11-2025
To: 28-11-2025

London

Fees: 6200 $
From: 01-12-2025
To: 05-12-2025

Kuala Lumpur

Fees: 4950 $
From: 15-12-2025
To: 19-12-2025

Singapore

Fees: 6200 $
From: 22-12-2025
To: 26-12-2025

Amsterdam

Fees: 6200 $
From: 29-12-2025
To: 02-01-2026

Singapore

Fees: 6200 $
From: 05-01-2026
To: 09-01-2026

Amsterdam

Fees: 6200 $
From: 12-01-2026
To: 16-01-2026

Zurich

Fees: 6900 $
From: 19-01-2026
To: 23-01-2026

Kuala Lumpur

Fees: 4950 $
From: 26-01-2026
To: 30-01-2026

Vienna

Fees: 6200 $
From: 02-02-2026
To: 06-02-2026

Kuala Lumpur

Fees: 4950 $
From: 09-02-2026
To: 13-02-2026

Madrid

Fees: 6200 $
From: 16-02-2026
To: 20-02-2026

London

Fees: 6200 $
From: 23-02-2026
To: 27-02-2026

London

Fees: 6200 $
From: 02-03-2026
To: 06-03-2026

Krakow

Fees: 6200 $
From: 09-03-2026
To: 13-03-2026

Vienna

Fees: 6200 $
From: 16-03-2026
To: 20-03-2026

Prague

Fees: 6200 $
From: 23-03-2026
To: 27-03-2026

Dubai

Fees: 4950 $
From: 30-03-2026
To: 03-04-2026

Vienna

Fees: 6200 $
From: 06-04-2026
To: 10-04-2026

Amsterdam

Fees: 6200 $
From: 13-04-2026
To: 17-04-2026

Cairo

Fees: 4950 $
From: 20-04-2026
To: 24-04-2026

Kuala Lumpur

Fees: 4950 $
From: 27-04-2026
To: 01-05-2026

Madrid

Fees: 6200 $
From: 04-05-2026
To: 08-05-2026

Dubai

Fees: 4950 $
From: 11-05-2026
To: 15-05-2026

Sharm El Sheikh

Fees: 4950 $
From: 18-05-2026
To: 22-05-2026

Vienna

Fees: 6200 $
From: 25-05-2026
To: 29-05-2026

Manama

Fees: 4950 $
From: 01-06-2026
To: 05-06-2026

Barcelona

Fees: 6200 $
From: 08-06-2026
To: 12-06-2026

Cairo

Fees: 4950 $
From: 15-06-2026
To: 19-06-2026

Jakarta

Fees: 6200 $
From: 22-06-2026
To: 26-06-2026

Analysis and Design of Electrical Power Systems Course

Introduction:

This all-inclusive course in Analysis and Design of Electrical Power Systems offers systematic learning of power system analysis with exposure to theory as well as the skills required in practice. Complex concepts such as phasors, per-unit systems, and symmetrical components are simplified for better understanding. The course emphasizes realistic analysis and modeling rather than a step-by-step procedure in design analysis.

The course helps participants gain an understanding and appreciation of the function of power systems, along with the methods and skills to study their behavior under normal and contingency conditions, thus enhancing their knowledge in electrical power systems engineering and design.

 

Objectives:

At the end of this Analysis and Design of Electrical Power Systems course, participants will be able to:

  • Apply the phasor diagram method to analyze three-phase power systems and perform per-unit system calculations
  • Statistically model key power system components, including transmission lines, transformers, generators, and loads
  • Describe power flow methods and the basics of power system operation
  • Examine fault problems such as short circuits, using sequence circuits and symmetrical analysis
  • Apply the equal area rule for the analysis of transient stability

 

Training Methodology:

  • Lectures
  • Case studies
  • Group discussions
  • Problem-solving sessions
  • Real-world examples

 

Course Outline:

Unit 1: Math Review and System Modeling

  • Time domain and phasor domain
  • Phasor math
  • Per-unit calculations
  • Primary 3-phase power system calculations
  • Determining transmission line components
  • Simulation of transformers, generators, and loads

 

Unit 2: Power System Load Flow Studies

  • AC power system facets
  • Ybus and Zbus matrix formation
  • Flow of power equations
  • Methods of solutions
  • Computer analysis
  • Power flow analysis and its outcome

 

Unit 3: Generation Control, Economic Dispatching, and Unbalanced System Analysis

  • Load, generation, and Area Control Error (ACE)
  • Frequency bias
  • Economic generation dispatch
  • Network operation and abnormal situations
  • Studies of unbalanced systems
  • The use of symmetrical components

 

Unit 4: Symmetrical Components and Sequence Networks

  • The evolution of symmetrical components
  • Sequence current effects
  • Delta-wye transformer detailed analysis
  • Representation of sequence impedances
  • Steps for building sequence networks
  • Sequence currents: Harmonics

 

Unit 5: Short Circuit Expectations including Short-Circuit Studies and Transient Stability

  • Using sequence networks to represent faults
  • Series system short-circuit current computation
  • Open circuit system current computation
  • Fault/current incident energy – arc flash potential
  • The dynamics of a power system
  • Conditions for transient stability using the equal area method
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