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EE8003 POWER SYSTEM STABILITY Lecture Notes Download EE8003 POWER SYSTEM STABILITY Lecture Notes Download
Department  Electrical and Electronics Engineering
Year 3rd Year
Semester 6th Semester
University Anna University
Regulation  R2017
Subject Code EE8003
Subject Name POWER SYSTEM STABILITY
Download File EE8003 POWER SYSTEM STABILITY Lecture Notes, Books, Important 2 Marks Question and Answers, 16 Mark Question with Answers, Syllabus & Question Bank

 

 

EE8003 POWER SYSTEM STABILITY Syllabus

UNIT I INTRODUCTION TO STABILITY
Fundamental concepts – Stability and energy of a system – Power System Stability: Definition, Causes, Nature and Effects of disturbances, Classification of stability, Modelling of electrical components – Basic assumptions made in stability studies- Modelling of Synchronous machine for stability studies(classical model) – Rotor dynamics and the swing equation.

UNIT II SMALL -SIGNAL STABILITY
Basic concepts and definitions – State space representation, Physical Interpretation of small–signal stability, Eigen properties of the state matrix: Eigenvalues and eigenvectors, modal matrices, eigenvalue and stability, mode shape and participation factor. Small– signal stability analysis of a Single-Machine Infinite Bus (SMIB) Configuration with numerical example.

UNIT III TRANSIENT STABILITY
Review of numerical integration methods: modified Euler and Fourth Order Runge-Kutta methods, Numerical stability,. Interfacing of Synchronous machine (classical machine) model to the transient stability algorithm (TSA) with partitioned – explicit approaches- Application of TSA to SMIB system.

UNIT IV VOLTAGE STABILITY
Factors affecting voltage stability- Classification of Voltage stability-Transmission system characteristics- Generator characteristics- Load characteristics- Characteristics of reactive power compensating Devices- Voltage collapse.

UNIT V ENHANCEMENT OF SMALL -SIGNAL STABILITY AND TRANSIENT STABILITY
Power System Stabilizer –. Principle behind transient stability enhancement methods: high-speed fault clearing, regulated shunt compensation, dynamic braking, reactor switching, independent pole-operation of circuit-breakers, single-pole switching, fast- valving, high-speed excitation systems.

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POWER SYSTEM STABILITY Lecture Notes Download

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