Control and Filter Design of Single-Phase Grid-Connected Converters
A state-of-the-art discussion of modern grid inverters
In Control and Filter Design of Single-Phase Grid-Connected Converters, a team of distinguished researchers deliver a robust and authoritative treatment of critical distributed power generation technologies, grid-connected inverter designs, and renewable energy utilization. The book includes detailed explanations of the system structure of distributed generation (DG)-grid interface converters and the methods of controlling DG-grid interface voltage source converters (VSCs) with high-order filters.
The authors also explore the challenges and obstacles associated with modern power electronic grid-connected inverter control technology and introduce some designed systems that meet these challenges, such as the grid impedance canceller.
Readers will discover demonstrations of basic principles, guidelines, examples, and design and simulation programs for grid-connected inverters based on LCL/LLCL technology. They will also find:
Perfect for researchers, postgraduate students, and senior level undergraduate students of electrical engineering, Control and Filter Design of Single-Phase Grid-Connected Converters will also benefit research & development engineers involved with the design and manufacture of power electronic inverters.
"Sinopsis" puede pertenecer a otra edición de este libro.
Weimin Wu is a Professor in the Department of Electrical Engineering at the Shanghai Maritime University in China.
Frede Blaabjerg is a Professor in the Department of Energy at Aalborg University in Denmark.
Henry Chung is Chair Professor of Electrical Engineering at City University of Hong Kong, China.
Yuanbin He is Associate Professor in the School of Automation at Hangzhou Dianzi University in China.
Min Huang is a Lecturer in the Department of Electrical Engineering at the Shanghai Maritime University in China.
A state-of-the-art discussion of modern grid inverters
In Control and Filter Design of Single-Phase Grid-Connected Converters, a team of distinguished researchers deliver a robust and authoritative treatment of critical distributed power generation technologies, grid-connected inverter designs, and renewable energy utilization. The book includes detailed explanations of the system structure of distributed generation (DG)-grid interface converters and the methods of controlling DG-grid interface voltage source converters (VSCs) with high-order filters.
The authors also explore the challenges and obstacles associated with modern power electronic grid-connected inverter control technology and introduce some designed systems that meet these challenges, such as the grid impedance canceller.
Readers will discover demonstrations of basic principles, guidelines, examples, and design and simulation programs for grid-connected inverters based on LCL/LLCL technology. They will also find:
Perfect for researchers, postgraduate students, and senior level undergraduate students of electrical engineering, Control and Filter Design of Single-Phase Grid-Connected Converters will also benefit research & development engineers involved with the design and manufacture of power electronic inverters.
"Sobre este título" puede pertenecer a otra edición de este libro.
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