Graduate Certificate in Power Electronic Converter Systems
-- ViewingNowThe Graduate Certificate in Power Electronic Converter Systems is a vital course for engineers seeking to expand their knowledge in power electronics and converter systems. With the increasing demand for energy-efficient solutions in various industries, this certificate program equips learners with essential skills to design and optimize power electronic converters for diverse applications.
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⢠Power Electronics Fundamentals: Introduction to power electronics, semiconductor devices, power electronic converters, and their characteristics.
⢠DC-DC Converters: Analysis and design of DC-DC converter topologies, including buck, boost, buck-boost, and Cuk converters.
⢠AC-DC Converters: Study of single-phase and three-phase AC-DC converters, diode rectifiers, and thyristor-based converters.
⢠DC-AC Converters: Investigation of DC-AC converters, focusing on voltage source inverters, current source inverters, and Z-source inverters.
⢠Control of Power Electronic Converters: Design and implementation of control strategies for power electronic converters, such as hysteresis control, pulse width modulation, and space vector modulation.
⢠Power Electronic Converter Systems for Renewable Energy: Examination of power electronic converters used in renewable energy systems, such as photovoltaic (PV) systems and wind energy conversion systems (WECS).
⢠High-Frequency Magnetic Components: Analysis and design of high-frequency magnetic components, including transformers and inductors, used in power electronic converter systems.
⢠Power Electronic Converter Systems for Electric Vehicles: Study of power electronic converters and their applications in electric vehicle (EV) propulsion and charging systems.
⢠Reliability and Fault Analysis of Power Electronic Converter Systems: Investigation of reliability and fault analysis in power electronic converter systems, including failure modes, diagnostics, and prognostics.
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