Electrical Machines – II | Syllabus | College Platform - NITH
Electrical EngineeringEE-312
EE-312core Course
Electrical Machines – II
4 Credits
4 Modules
Updated 12/31/2024
01
Polyphase Induction Machines:
10 Lectures
Theory of three phase induction motors Principle of operation
slip phasor diagram equivalent circuits expression for torque maximum torque starting torque and
output power torque-slip and power-slip characteristics Circle diagram
Predetermination of
characteristics from the circuit diagram
Drawing circle diagram from design parameters and no load
and blocked rotor test data
power factor control of three phase induction motor
Starting of Induction
motors
Speed control of induction motor
Cogging & Crawling
applications of poly-phase induction
motors.
02
Single Phase Induction Motors:
9 Lectures
Principle of operation on the basis of double revolving field theory
Equivalent circuit performance calculations and characteristics Starting methods Maximum starting
torque conditions in single phase induction motors Hysteresis motor Reluctance motor and stepper
motor.
03
Synchronous Machines:
10 Lectures
Types of Exciters for synchronous machines flux and MMF phasor
diagrams for cylindrical rotor synchronous machines Armature reaction open and short circuit
characteristics Leakage reactances Synchronous reactance Phasor diagram under loaded
conditions operating characteristics of alternators and their ratings Predetermination of regulation by
EMF and Potier triangle methods for non-salient pole alternators Steady state power flow equations
Power angle characteristics Constant excitation and constant power output Circle diagram for
synchronous machines. Two reaction theory for salient pole alternators and pre-determination for
regulation slip test V curves Hunting and its suppression Starting of synchronous motor
Synchronous condenser.
04
Parallel Operation of Alternators:
7 Lectures
Synchronization of alternators by dark lamp method Parallel
operation of alternators Alternator on infinite bus bar Effect of change of excitation and prime mover
inputs.
Open Source
Transparency at Core.
This platform is built by students, for students. We believe in open collaboration to make academic resources accessible to everyone.