Reliability of Power Electronic Converter Systems
Herausgeber: Chung, Henry Shu-Hung; Pecht, Michael; Blaabjerg, Frede; Wang, Huai
Reliability of Power Electronic Converter Systems
Herausgeber: Chung, Henry Shu-Hung; Pecht, Michael; Blaabjerg, Frede; Wang, Huai
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This book outlines current research into the scientific modeling, experimentation, and remedial measures for advancing the reliability, availability, system robustness, and maintainability of Power Electronic Converter Systems (PECS) at different levels of complexity.
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This book outlines current research into the scientific modeling, experimentation, and remedial measures for advancing the reliability, availability, system robustness, and maintainability of Power Electronic Converter Systems (PECS) at different levels of complexity.
Produktdetails
- Produktdetails
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 504
- Erscheinungstermin: 7. Dezember 2015
- Englisch
- Abmessung: 241mm x 159mm x 35mm
- Gewicht: 907g
- ISBN-13: 9781849199018
- ISBN-10: 1849199019
- Artikelnr.: 42561271
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 504
- Erscheinungstermin: 7. Dezember 2015
- Englisch
- Abmessung: 241mm x 159mm x 35mm
- Gewicht: 907g
- ISBN-13: 9781849199018
- ISBN-10: 1849199019
- Artikelnr.: 42561271
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
* Chapter 1: Reliability engineering in power electronic converter
systems
* Chapter 2: Anomaly detection and remaining life prediction for power
electronics
* Chapter 3: Reliability of DC-link capacitors in power electronic
converters
* Chapter 4: Reliability of power electronic packaging
* Chapter 5: Modelling for the lifetime prediction of power
semiconductor modules
* Chapter 6: Minimization of DC-link capacitance in power electronic
converter systems
* Chapter 7: Wind turbine systems
* Chapter 8: Active thermal control for improved reliability of power
electronics systems
* Chapter 9: Lifetime modeling and prediction of power devices
* Chapter 10: Power module lifetime test and state monitoring
* Chapter 11: Stochastic hybrid systems models for performance and
reliability analysis of power electronic systems
* Chapter 12: Fault-tolerant adjustable speed drive systems
* Chapter 13: Mission profile-oriented reliability design in wind
turbine and photovoltaic systems
* Chapter 14: Reliability of power conversion systems in photovoltaic
applications
* Chapter 15: Reliability of power supplies for computers
* Chapter 16: High-power converters
systems
* Chapter 2: Anomaly detection and remaining life prediction for power
electronics
* Chapter 3: Reliability of DC-link capacitors in power electronic
converters
* Chapter 4: Reliability of power electronic packaging
* Chapter 5: Modelling for the lifetime prediction of power
semiconductor modules
* Chapter 6: Minimization of DC-link capacitance in power electronic
converter systems
* Chapter 7: Wind turbine systems
* Chapter 8: Active thermal control for improved reliability of power
electronics systems
* Chapter 9: Lifetime modeling and prediction of power devices
* Chapter 10: Power module lifetime test and state monitoring
* Chapter 11: Stochastic hybrid systems models for performance and
reliability analysis of power electronic systems
* Chapter 12: Fault-tolerant adjustable speed drive systems
* Chapter 13: Mission profile-oriented reliability design in wind
turbine and photovoltaic systems
* Chapter 14: Reliability of power conversion systems in photovoltaic
applications
* Chapter 15: Reliability of power supplies for computers
* Chapter 16: High-power converters
* Chapter 1: Reliability engineering in power electronic converter
systems
* Chapter 2: Anomaly detection and remaining life prediction for power
electronics
* Chapter 3: Reliability of DC-link capacitors in power electronic
converters
* Chapter 4: Reliability of power electronic packaging
* Chapter 5: Modelling for the lifetime prediction of power
semiconductor modules
* Chapter 6: Minimization of DC-link capacitance in power electronic
converter systems
* Chapter 7: Wind turbine systems
* Chapter 8: Active thermal control for improved reliability of power
electronics systems
* Chapter 9: Lifetime modeling and prediction of power devices
* Chapter 10: Power module lifetime test and state monitoring
* Chapter 11: Stochastic hybrid systems models for performance and
reliability analysis of power electronic systems
* Chapter 12: Fault-tolerant adjustable speed drive systems
* Chapter 13: Mission profile-oriented reliability design in wind
turbine and photovoltaic systems
* Chapter 14: Reliability of power conversion systems in photovoltaic
applications
* Chapter 15: Reliability of power supplies for computers
* Chapter 16: High-power converters
systems
* Chapter 2: Anomaly detection and remaining life prediction for power
electronics
* Chapter 3: Reliability of DC-link capacitors in power electronic
converters
* Chapter 4: Reliability of power electronic packaging
* Chapter 5: Modelling for the lifetime prediction of power
semiconductor modules
* Chapter 6: Minimization of DC-link capacitance in power electronic
converter systems
* Chapter 7: Wind turbine systems
* Chapter 8: Active thermal control for improved reliability of power
electronics systems
* Chapter 9: Lifetime modeling and prediction of power devices
* Chapter 10: Power module lifetime test and state monitoring
* Chapter 11: Stochastic hybrid systems models for performance and
reliability analysis of power electronic systems
* Chapter 12: Fault-tolerant adjustable speed drive systems
* Chapter 13: Mission profile-oriented reliability design in wind
turbine and photovoltaic systems
* Chapter 14: Reliability of power conversion systems in photovoltaic
applications
* Chapter 15: Reliability of power supplies for computers
* Chapter 16: High-power converters