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Engineering
Electrical Engineering
Power Electronics
1. Introduction to Power Electronics
2. Power Semiconductor Devices
3. DC-DC Converters
4. AC-DC Converters
5. DC-AC Converters
6. AC-AC Converters
7. Control of Power Electronic Systems
8. Magnetic Components Design
9. Capacitors in Power Electronics
10. Thermal Management
11. Power Quality and EMI
12. Applications and Systems
Control of Power Electronic Systems
Modeling Techniques
State-Space Averaging
Continuous Conduction Mode
Discontinuous Conduction Mode
Averaged Models
Small-Signal Modeling
Linearization Process
AC Small-Signal Models
Transfer Function Derivation
Large-Signal Modeling
Nonlinear Dynamics
Stability Analysis
Control System Design
Open-Loop Control
Feedforward Control
Advantages and Limitations
Closed-Loop Control
Feedback Control Principles
Error Amplification
Stability Margins
Controller Types
Proportional Control
Proportional-Integral Control
Proportional-Integral-Derivative Control
Lead-Lag Compensation
Frequency Domain Design
Bode Plot Analysis
Gain and Phase Margins
Crossover Frequency Design
Current Mode Control
Peak Current Mode Control
Slope Compensation
Subharmonic Oscillation
Average Current Mode Control
Current Error Amplifier
Improved Line Regulation
Hysteretic Current Control
Variable Switching Frequency
Fast Transient Response
Digital Control
Microcontroller Implementation
ADC Requirements
PWM Generation
Real-Time Constraints
Digital Signal Processor Implementation
High-Speed Computation
Advanced Control Algorithms
FPGA Implementation
Parallel Processing
Custom Hardware Acceleration
Digital PWM Techniques
Resolution Limitations
Dithering Techniques
Sigma-Delta Modulation
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6. AC-AC Converters
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8. Magnetic Components Design