06EE841 Power Systems Dynamics and Stability syllabus for EE


Part A
Unit-1 Introduction 2 hours

Basic concepts, Review of classical methods.


Unit-2 & 3 System Modeling and Dynamics of Synchronous Generator 14 hours

Modeling of synchronous machine, Swing equation, Park’s transformation – Park’s voltage equation, Park’s mechanical equation (torque). Applications – (a) Voltage build up in synchronous machine, and (b) Symmetrical short circuit of generator. Solution for transient analysis, Operational impedance, Relationship between Tdo/ and Tdo//, Algebraic constraints.

Unit-4 Excitation and Prime mover controllers 8 hours

Introduction, Types of excitation, AVR with and without ESS, TGR, Amplifier PSS, Static exciters.

Part B
Unit-5 Modeling of Prime Movers 8 hours

Introduction, Three major components, Block diagram, Hydraulic turbine, Steam turbine.

Unit-6 Load Modeling 10 hours

Introduction, Two approaches – Polynomial model and Exponential model. Small Signal Angle Stability: Small signal angle stability with SMIB system, detailed model of SMIB.

Unit-7 & 8 Transient Stability Analysis 10 hours

Simulation for Transient stability Evaluation, Transient stability controllers.

Last Updated: Tuesday, January 24, 2023