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Reliability of power electronic converter systems

✍ Scribed by Blaabjerg, Frede; Chung, Henry Shu-hung; Pecht, Michael; Wang, Huai


Publisher
The Institution of Engineering and Technology
Year
2015
Tongue
English
Leaves
502
Series
IET power and energy series 80
Category
Library

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✦ Synopsis


The main aims of power electronic converter systems (PECs) are to control, convert, and condition electrical power flow, from one form to another, through the use of solid-state electronics. This book outlines R&D into the scientific modelling, experimentation and remedial measures for advancing the reliability, availability, system robustness, and maintainability of PECs at different levels of complexity.

Drawing on the experience of an international team of experts, this book covers an introduction to reliability engineering and the reliability of PECs; lifetime prognosis; and robustness validation. It also covers applications including low- and high-power motor drives, wind turbine systems, photovoltaic systems, uninterruptible power supply systems, energy harvesting, power supplies for computers, high-power converters, and automotive applications.

Reliability of Power Electronic Converter Systems will be of particular interest to professionals in power electronics, and the application sectors, and practicing engineers specializing in the development and application to power electronic converters and systems

✦ Table of Contents


Content: Reliability engineering in power electronic converter systems --
Anomaly detection and remaining life prediction for power electronics --
Reliability of DC-link capacitors in power electronic converters --
Reliability of power electronic packaging --
Modelling for the lifetime prediction of power semiconductor modules --
Minimization of DC-link capacitance in power electronic converter systems --
Wind turbine systems --
Active thermal control for improved reliability of power electronics systems --
Lifetime modeling and prediction of power devices --
Power module lifetime test and state monitoring --
Stochastic hybrid systems models for performance and reliability analysis of power electronic systems --
Fault-tolerant adjustable speed drive systems --
Mission profile-oriented reliability design in wind turbine and photovoltaic systems --
Reliability of power conversion systems in photovoltaic applications --
Reliability of power supplies for computers --
High-power converters.


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