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Suntio T., Messo T., Puukko J. Power Electronic Converters: Dynamics and Control in Conventional and Renewable Energy Applications

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Suntio T., Messo T., Puukko J. Power Electronic Converters: Dynamics and Control in Conventional and Renewable Energy Applications
Wiley-VCH, 2018. — 707 p. — ISBN: 978-3-527-34022-4.
Filling the need for a reference that explains the behavior of power electronic converters, this book provides information currently unavailable in similar texts on power electronics.
Clearly organized into four parts, the first treats the dynamics and control of conventional converters, while the second part covers the dynamics and control of DC-DC converters in renewable energy applications, including an introduction to the sources as well as the design of current-fed converters applying duality-transformation methods. The third part treats the dynamics and control of three-phase rectifiers in voltage-sourced applications, and the final part looks at the dynamics and control of three-phase inverters in renewable-energy applications.
With its future-oriented perspective and advanced, first-hand knowledge, this is a prime resource for researchers and practicing engineers needing a ready reference on the design and control of power electronic converters.
Dynamic Analysis and Control Design Preliminaries
Voltage-Fed DC–DC Converters
Dynamic Modeling of Direct-on-Time Control
Dynamic Modeling of Current-Mode Control
Dynamic Modeling of Current-Output Converters
Control Design Issues in Voltage-Fed DC–DC Converters
Current-Fed Converters
Introduction to Current-Fed Converters
Dynamic Modeling of DDR-Controlled CF Converters
Dynamic Modeling of PCM/PVM-Controlled CF Converters
Introduction to Photovoltaic Generator
Photovoltaic Generator Interfacing Issues
Three-Phase Grid-Connected Converters
Dynamic Modeling of Three-Phase Inverters
Control Design of Grid-Connected Three-Phase Inverters
Reduced-Order Closed-Loop Modeling of Inverters
Multivariable Closed-Loop Modeling of Inverters
Impedance-Based Stability Assessment
Dynamic Modeling of Three-Phase Active Rectifiers
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