Grid-Tied Power Electronics-Introduction to Modeling and Control of Single-Phase Rectifiers and Inverters
Introduction to the Course
Spice and MATLAB Resources
Access MATLAB
Grid-Tied Power Electronics-Grid-Tied Power Electronics
Introduction to Grid-Tied Power Electronics
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Power and Harmonics in Non-sinusoidal Systems
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Grid-Tied Power Electronics-Low-Harmonic Rectifiers
Low-Harmonic Rectifiers
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Boost PFC Rectifier: Introduction
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CCM and DCM Operation of the Boost Low-Harmonic Rectifier
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Control of the PFC Boost Rectifier
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Input Voltage Feedforward Compensation
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Loss-Free Resistor Model
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Control of Power Factor Correction Rectifiers-Input Current Control
Model for the Input Current Control
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Current Control: Design and Simulation Example
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Quasi-Static Approximation
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Input Current Shaping Using DCM Approach
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Control of Power Factor Correction Rectifiers-Energy Storage and Output Voltage Control
Energy Storage
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Output Voltage Control
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Control of Power Factor Correction Rectifiers-Component Stresses, Losses and Efficiency of Low-Harmonic Rectifiers
RMS Values of Rectifier Waveforms
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Design Example: Selection of Ron
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Comparison of Rectifier Topologies
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Control of Power Factor Correction Rectifiers-Low-Harmonic Rectifiers: Conclusions
Conclusions
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Modeling and Control of Single-Phase Inverters-Introduction to Solar PV Inverters
Introduction to Single-Phase Inverters in PV Systems
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PV Cell and PV System Characteristics
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PV Array Simulation Model
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PV Inverter Functions
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Modeling and Control of Single-Phase Inverters-Control of Solar PV Inverters
Control Loops in a Two-Stage PV System Architecture
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Control of MPPT Boost Converter
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Inverter Control-to-Current Dynamic Response
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Average Current Mode Control in the Single-Phase Inverter
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DC Bus Voltage Control
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Topics for Further Study
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Modeling and Control of Single-Phase Inverters-Peer-Graded Quiz: PV System Design
Introduction to Peer-Reviewed Assignment: PV System Design
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Peer-Review Assignment and Grading Rubric