Description

Single line diagram of power system - The per unit system - Bus admittance matrix - Bus impedance matrix - Power flow equations - Gauss-Seidel power flow solution (1) - Gauss-Seidel power flow solution (2) - Newton Raphson power flow solution (1) - Newton Raphson power flow solution (2) - Synchronous generator for power control - Tap changing transformers - Introduction to economic dispatch problem - Economic dispatch neglecting losses and no generator limits - Economic dispatch neglecting losses and including generator limits -Economic dispatch including losses.

Program

Bachelor Degree in Electrical and Control Engineering (144)

Objectives

  • Single line diagram of power system - The per unit system - Bus admittance matrix - Bus impedance matrix - Power flow equations - Gauss-Seidel power flow solution (1) - Gauss-Seidel power flow solution (2) - Newton Raphson power flow solution (1) - Newton Raphson power flow solution (2) - Synchronous generator for power control - Tap changing transformers - Introduction to economic dispatch problem - Economic dispatch neglecting losses and no generator limits - Economic dispatch neglecting losses and including generator limits -Economic dispatch including losses.

Textbook

Data will be available soon!

Course Content

content serial Description

Markets and Career

  • Generation, transmission, distribution and utilization of electrical power for public and private sectors to secure both continuous and emergency demands.
  • Electrical power feeding for civil and military marine and aviation utilities.
  • Electrical works in construction engineering.

Start your application

Start The your journey to your new career.