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| Unit 1- Applications on Matrices in MATLAB | |||
| Module 1- Solving One Non Linear Equation in MATLAB Using Fzero Function | |||
| Module 2-Example 1 on Solving Multiple Non Linear Equations in MATLAB Using Fsolve Function | |||
| Module 3- Example 2 on Solving Multiple Non Linear Equations in Matlab Using Fsolve | |||
| Module 4-Application Multi Level Inverter Part 1 | |||
| Module 5- Application Multi Level Inverter Part 2 | |||
| Unit 2-Power Electronics Simulations Using Simulink in MATLAB | |||
| Module 1-Introduction to MATLAB Simulations Using Simulink | |||
| Module 2-Half Wave Uncontrolled Rectifier with R Load Principle of Operation | |||
| Module 3- Half Wave Controlled Rectifier R Load Principle of Operation | |||
| Module 4-Simulation of Half Wave Controlled Rectifier Using Simulink In Matlab | |||
| Module 5- Principle of Operation of Fully Controlled Bridge Rectifier Part 1 | |||
| Module 6- Principle of Operation of Fully Controlled Bridge Rectifier Part 2 | |||
| Module 7-Simulation of Bridge Controlled Rectifier | |||
| Module 8-AC Chopper with R Load Principle of Operation | |||
| Module 9- Simulation of AC Chopper with R and RL Loads in MATLAB | |||
| Module 10- Buck Regulator Principle of Operation Part 1 | |||
| Module 11-Buck Regulator Principle of Operation Part 2 | |||
| Module 12-Simulation of Buck Regulator in MATLAB | |||
| Module 13-Boost Regulator Principle of Operation | |||
| Module 14- Simulation of Boost Regulator in MATLAB | |||
| Module 15-Buck-Boost Regulator Principle of Operation | |||
| Module 16- Simulation of Buck-Boost Regulator | |||
| Module 17- Single Phase Half Bridge R-Load | |||
| Module 18- Single Phase Half Bridge RL-Load | |||
| Module 19-Simulation of Single Phase Half Bridge Inverter | |||
| Module 20-Single Phase Bridge Inverter R-Load | |||
| Module 21-Single Phase Bridge Inverter RL-Load | |||
| Module 22-Simulation of Single Phase Bridge Inverter | |||
| Module 23-Three Phase Inverters and Obtaining The Line Voltages | |||
| Module 24-Three Phase Inverters and Obtaining The Phase Voltages | |||
| Module 25-Simulation of Three Phase Inverter | |||
| Module 26-Simulation of Charging and Discharging Capacitor Using Matlab | |||
| Unit 3- Solar Energy Simulation Using Simulink in MATLAB | |||
| Module 1-Separately Excited DC Machine | |||
| Module 2-DC Motor Modelling without Load Using Simulink in MATLAB | |||
| Module 3-DC Motor Modelling with Load Using Simulink in MALTAB | |||
| Module 4-DC Motor Block Simulation Using Power Library in MATLAB | |||
| Unit 4- DC Motor Simulation Using Simulink in MATLAB | |||
| Module 1-Construction and Principle of Operation of Synchronous Generator | |||
| Module 2-Equivalent Circuit and Phasor Diagram of Non Salient Synchronous Machine | |||
| Module 3-Equivalent Circuit and Phasor Diagram of Salient Synchronous Machine | |||
| Module 4-Simulation of Synchronous Machine Connected to Small Power System | |||
| Unit 5- Induction Motor Simulation Using Simulink in MATLAB | |||
| Module 1-Construction and Theory of Operation of Induction Machines | |||
| Module 2-Equivalent Circuit and Power Flow in Induction Motor | |||
| Module 3-Torque-Speed Characteristics of Induction Motor | |||
| Module 4- Simulation of Induction Motor or Asynchronous Motor Using Simulink | |||
| Unit 6- Synchronous Generator Simulation in Simulink of MATLAB | |||
| Module 1- Importing Data from PSCAD Program for Fault Location Detection to MATLAB Program | |||
| Unit 7- Power System Simulations | |||
| Module 1-How to Implement PID Controller in Simulink of MATLAB | |||
| Module 2-Tuning a PID Controller In MATLAB Simulink | |||