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Simulation of Electric Machine and Drive Systems using Matlab and Simulink

  



Simulation of Electric Machine and Drive Systems using Matlab and Simulink

TOC

SIGNALS & CIRCUITS

DC MOTOR DRIVES
1. DC motor transient running operation
2. DC motor ramp start
3. Automatic starter of a DC motor
4. DC motor with unipolar PWM excitation
5. DC motor with bipolar PWM excitation
6. DC motor with controlled ac rectification
7. DC self-excited  generator
8. Cascade speed control of a DC motor drive
9. Cascade position control of a DC motor drive (PI controller)
10. Cascade position control of a DC motor drive (hysteresis controller)

INDUCTION MACHINES
1. Steady-state characteristics of induction machines
2. Steady-state characteristics derived from dynamic model
3. Parametric steady-state characteristics of induction machines
4. Induction motor start :
5. Transient operation of induction machines under 3-phase sinusoidal excitation:
6. Single-phase capacitor induction motors:
7. 6-pulse squarewave excitation of an induction motor
8. Sinusoidal PWM excitation of an induction motor
9. Induction motor characteristics under current excitation
10. Scalar, vector, and direct torque control of induction motors :
11. Doubly fed induction generator driven by a wind turbine:

SYNCHRONOUS MACHINES
1. V- and compounding C-curves of a synchronous machine
2. Synchronous motor start using Simulink
3. Synchronization and loading of a synchronous machine
4. Short circuit of a synchronous machine (S-function model) under load
5. Transient stability with various models of the synchronous machine
6. Transient stability in script format
7. Short circuit of an alternator initially open circuited
8. Sudden application of an R_L load on a synchronous generator
9. Same as above with added voltage regulator
10.  Transient stability of a synchronous machine (swing curves)
11. Open-loop Volt/Hz control of a synchronous motor drive
12. Speed control of a permanent magnet synchronous motor
13. Phase variable model of the synchronous machine:

STEADY-STATE CHARACTERISTICS
1.  Converting induction motor parameters from SI to pu values
2. Steady-state characteristics of  induction machines
3. Rr and V/f control of induction motor characteristics [pu]
4  Volts per Hertz speed control of induction motor [SI]
5. Phasor representation of the induction machine
6. Phasor diagram of the induction machine
7. Phasor analysis and diagram of the (non salient) synchronous machine
8. V- and C-compounding curves of the synchronous motor
9. Compounding curves of the synchronous generator
10. Capability curves of the synchronous machine
11. Steady-state characteristics of the (salient) synchronous machine:
12. Steady-state characteristics of  induction machines (balanced)
13. Power flow and voltage stability in a 3-bus power system
14. Characteristics of induction machines under unbalanced or asymmetrical conditions

ANIMATIONS

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3 Responses to “Simulation of Electric Machine and Drive Systems using Matlab and Simulink”

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  3. awed Badeeb says:

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