This book goes beyond conventional circuit design to discuss the actual use of industrial technology, covering facets of implementation otherwise overlooked by theoretical textbooks. The Second Edition contains many new figures, chapters, and improvements, along with numerous examples of successful home appliance, aviation, naval, automotive electronics, industrial motor drive, and grid interface for renewable energy products. It highlights advancements in packaging technologies, tackles the advent of hybrid circuits able to incorporate control and power stages within the same package, and examines design for reliability.…mehr
This book goes beyond conventional circuit design to discuss the actual use of industrial technology, covering facets of implementation otherwise overlooked by theoretical textbooks. The Second Edition contains many new figures, chapters, and improvements, along with numerous examples of successful home appliance, aviation, naval, automotive electronics, industrial motor drive, and grid interface for renewable energy products. It highlights advancements in packaging technologies, tackles the advent of hybrid circuits able to incorporate control and power stages within the same package, and examines design for reliability.
Author of three US patents, Dorin O. Neacsu is associate professor for, and holds an M.Sc and Ph.D in electronics from, the Technical University of Iasi, Romania. He also holds an M.Sc in engineering management from Tufts Gordon Institute, Medford, Massachusetts, USA. The well-published, senior IEEE member has worked with TAGCM-SUT Iasi, Romania; Universite du Quebec a Trois Rivieres, Canada; General Motors/Delphi, Indianapolis, Indiana, USA; International Rectifier, El Segundo, California, USA; SatCon, Boston, Massachusetts, USA; Azure Dynamics/Solectria, Woburn, Massachusetts, USA; University of New Orleans, Louisiana, USA; Massachusetts Institute of Technology, Cambridge, USA; and United Technologies Research Center, East Hartford, Connecticut, USA.
Inhaltsangabe
Introduction to Medium and High Power Switching Converters. Conventional Power Converters: High Power Semiconductor Devices. Basic Three Phase Inverters. Carrier Based PWM and Operation Limits. Vectorial PWM for Basic Three Phase Inverters. Practical Aspects in Building Three Phase Power Converters. Thermal Management and Reliability. Implementation of PWM Algorithms. Practical Aspects in Closed Loop Control. Intelligent Power Modules. Other Topologies: Resonant Three Phase Power Converters. Component Minimized Three Phase Power Converters. AC/DC Grid Interface Based on Voltage Source Converters. Parallel and Interleaved Power Converters. AC/DC and DC/AC Current Source Converters. AC/AC Matrix Converters as a 9 Switch Topology. Multilevel Converters. Use of IPM Within a "Network Of Switches" Concept.
Introduction to Medium and High Power Switching Converters. Conventional Power Converters: High Power Semiconductor Devices. Basic Three Phase Inverters. Carrier Based PWM and Operation Limits. Vectorial PWM for Basic Three Phase Inverters. Practical Aspects in Building Three Phase Power Converters. Thermal Management and Reliability. Implementation of PWM Algorithms. Practical Aspects in Closed Loop Control. Intelligent Power Modules. Other Topologies: Resonant Three Phase Power Converters. Component Minimized Three Phase Power Converters. AC/DC Grid Interface Based on Voltage Source Converters. Parallel and Interleaved Power Converters. AC/DC and DC/AC Current Source Converters. AC/AC Matrix Converters as a 9 Switch Topology. Multilevel Converters. Use of IPM Within a "Network Of Switches" Concept.
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