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Electromagnetic Transients of Power Electronics Systems / Zhengming Zhao [y otros tres]

Contributor(s): SpringerLink (Online service) | Zhao, Zhengming, autor
Series: (Engineering (Springer-11647)).Publisher: Singapore : Springer Singapore : Imprint: Springer, 2019Description: 1 recurso en línea (XIV, 469 páginas) : 432 ilustraciones.ISBN: 9789811088124.Subject: Electrónica de potencia | Electromagnetismo | ElectrónicaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- Electromagnetic Transients and Modelling -- Transient Characteristics of Power Switches -- Transient Commutation Topology and Its Stray Parameters -- System Safe Operating Area Based on the Switch Characteristics -- Measurement and Observation of Electromagnetic Transients -- Electromagnetic Pulses and Pulse Sequences in the Main-power Circuit -- High-performance Closed-loop Control and Its Constraints -- Electromagnetic Energy Balance in Transient Process -- Application of Electromagnetic Transient Analysis in Converter Systems.
Abstract: This book discusses topics related to power electronics, especially electromagnetic transient analysis and control of high-power electronics conversion. It focuses on the re-evaluation of power electronics, transient analysis and modeling, device-based system-safe operating area, and energy balance-based control methods, and presenting, for the first time, numerous experimental results for the transient process of various real-world converters. The book systematically presents both theoretical analysis and practical applications. The first chapter discusses the structure and attributes of power electronics systems, highlighting the analysis and synthesis, while the second chapter explores the transient process and modeling for power electronics systems. The transient features of power devices at switching-on/off, transient conversion circuit with stray parameters and device-based system-safe operating area are described in the subsequent three chapters. The book also examines the measurement of transient processes, electromagnetic pulses and their series, as well as high-performance, closed-loop control, and expounds the basic principles and method of the energy-balanced control strategy. Lastly, it introduces the applications of transient analysis of typical power electronics systems. The book is valuable as a textbook for college students, and as a reference resource for electrical engineers as well as anyone working in the field of high-power electronics system.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TK7881.15 2019 EB (Browse shelf(Opens below)) Acceso electrónico eBooks24062446
Total holds: 0

Introduction -- Electromagnetic Transients and Modelling -- Transient Characteristics of Power Switches -- Transient Commutation Topology and Its Stray Parameters -- System Safe Operating Area Based on the Switch Characteristics -- Measurement and Observation of Electromagnetic Transients -- Electromagnetic Pulses and Pulse Sequences in the Main-power Circuit -- High-performance Closed-loop Control and Its Constraints -- Electromagnetic Energy Balance in Transient Process -- Application of Electromagnetic Transient Analysis in Converter Systems.

This book discusses topics related to power electronics, especially electromagnetic transient analysis and control of high-power electronics conversion. It focuses on the re-evaluation of power electronics, transient analysis and modeling, device-based system-safe operating area, and energy balance-based control methods, and presenting, for the first time, numerous experimental results for the transient process of various real-world converters. The book systematically presents both theoretical analysis and practical applications. The first chapter discusses the structure and attributes of power electronics systems, highlighting the analysis and synthesis, while the second chapter explores the transient process and modeling for power electronics systems. The transient features of power devices at switching-on/off, transient conversion circuit with stray parameters and device-based system-safe operating area are described in the subsequent three chapters. The book also examines the measurement of transient processes, electromagnetic pulses and their series, as well as high-performance, closed-loop control, and expounds the basic principles and method of the energy-balanced control strategy. Lastly, it introduces the applications of transient analysis of typical power electronics systems. The book is valuable as a textbook for college students, and as a reference resource for electrical engineers as well as anyone working in the field of high-power electronics system.

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