Zhou / Preindl Software-Defined Power Electronics
1. Auflage 2024
ISBN: 978-3-031-59401-4
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark
Converter Configuration, Control, and Optimization
E-Book, Englisch, 244 Seiten
Reihe: Power Electronics and Power Systems
ISBN: 978-3-031-59401-4
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark
Power electronic devices and systems are attracting growing attention due to the electrification of energy conversion systems being a key factor in efforts to reduce fuel combustion and achieve carbon neutrality. This book provides a concept of software-defined power electronics architecture to generalize the power converter design and control procedures with various interfaced applications. The ultimate objective is to construct a reconfigurable software-defined power electronics architecture with standardized atomic power modules that can be leveraged for different electrified energy resources, such as electric vehicle charging, electric motor traction, solar power, and wind power. Several advanced control and design techniques are introduced in detail to achieve the proposed concept with a high-performance energy conversion system, including optimization-based control and estimation, variable frequency soft switching, and passive component design and optimization. The proposed generalized architecture also contributes to avoiding redundant hardware and algorithms design procedures.
is a guide for engineers and academic researchers to the highly specialized skills required for working in the fields of power converter design and development.
Zielgruppe
Research
Autoren/Hrsg.
Weitere Infos & Material
High-Performance Control and Estimation Strategies for Modular Power Converters.- Soft-Switching Techniques for Modular Power Converters Based on Variable Frequency.- Passive Components Optimization Enabling Soft-Switching.- Hierarchical Software-Defined Architecture for Power Electronics System.- Practical Demonstration of Software-Defined Concept for High-Performance Grid-Tied Inverter Design.