Electrical Power Systems Analysis and Design – Indian Institute of Technology

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About Course

Overview

This course is mainly for  Electrical Engineering students and professionals who are interested in gaining in-depth knowledge in this field. This course will introduce and explain the fundamental concepts in the field of electrical power system engineering. The basic and advanced concepts of per-unit system will be introduced along with their applications in circuit applications. Transmission line parameters, their calculations, and the modeling will be introduced. Basic load flow algorithms will be covered in detail along with short-circuit analysis and the method of symmetrical components. Unbalanced fault analysis and power system stability analysis will also be covered in these lecture series. By the end of the course, the learners should be able to gather high-quality knowledge of electrical power system components, its operation strategies, and stability analysis.
INTENDED AUDIENCE: B.Eng/B.Tech. in Electrical Engineering

Certification

Upon completing this course, learners will receive a valuable certificate to boost their careers. ( See sample certificate below)

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Course Content

Electrical Power Systems Analysis and Design – Indian Institute of Technology

  • Introduction
  • Single Line Diagram
  • Transmission Line Parameters
  • Inductance Calculation -Three Phase
  • Transmission Line Capacitance – I
  • Transmission Line Capacitance – II
  • Transmission Line Modeling
  • Transmission Line Modeling Long Line
  • Transmission Line Steady State Operation
  • Transmission Line Steady State Control Voltage
  • Transmission System A Review
  • Transformer Model
  • Synchronous Machine Model – I
  • Synchronous Machine Model – II
  • Load Model
  • Power Flow – I
  • Power Flow – II
  • Power Flow – III
  • Power Flow – IV
  • Power Flow – V
  • Power Flow – VI
  • Power Flow – VII
  • Review of Power System Component Models
  • Review of Power Flow Study
  • Short Circuit Analysis
  • Symmetrical Component Analysis
  • Sequence Networks
  • Unbalanced Fault Analysis – I
  • Unbalanced Fault Analysis – II
  • Fault Analysis for Large power Systems
  • Bus Impedance Matrix
  • Asymmetrical Fault Analysis Using Z – Bus
  • Power System Stability – I
  • Power System Stability – II
  • Power System Stability – III
  • Power System Stability – IV
  • Power System Stability – V
  • Power System Stability – VI
  • Power System Stability – VII
  • Power System Stability – VIII

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