Evaluation and Design Tools for the Reliability of Wind Power Converter System

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' Evaluation and Design Tools for the Reliability of Wind Power Converter System' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 전기공학, 전자공학
  • lifetime
  • power electronics
  • reliability
  • tools
  • wind power
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' Evaluation and Design Tools for the Reliability of Wind Power Converter System' 의 참고문헌

  • Wind turbines – part I: design requirements
    IEC 61400-1, 3rd edition
  • Transient modelling of loss and thermal dynamics in power semiconductor devices
    K. Ma Proc. of ECCE 2014 [2014]
  • Thermal profile analysis of doubly-fed induction generator based wind power converter with air and liquid cooling methods
    D. Zhou Proc. of EPE 13 : 1 ~ 10 [2013]
  • Thermal loading and lifetime estimation for power device considering mission profiles in wind power converter
    K. Ma IEEE Trans. Power Electron. 30 (2) : 590 ~ 602 [2015]
  • Thermal cycling overview of multi-megawatt two-level wind power converter at full grid code operation
    D. Zhou IEEJ J. Ind. Appl. 2 (4) : 173 ~ 182 [2013]
  • Semikron Application Manual
    A. Wintrich [2011]
  • Selected failure mechanisms of modern power modules
    M. Ciappa Microelectronics Reliability 42 (4-5) : 653 ~ 667 [2002]
  • Report on wind turbine reliability profiles – field data reliability analysis
    Reliawind [2011]
  • Reliability of wind turbines – Experience of 15 years with 1500 WTs
    B. Hahn Spinger [2007]
  • Reliability of offshore turbines–identifying the risk by onshore experience
    S. Faulstich Proc. of European Offshore Wind [2009]
  • Power electronics converters for wind turbine systems
    F. Blaabjerg IEEE Trans. Ind. Appl. 48 (2) : 708 ~ 719 [2012]
  • Online Vce measurement method for wear-out monitoring of high power IGBT modules
    S. Beczkowski Proc. EPE 2013 : 1 ~ 7 [2013]
  • Load-Cycling Capability of HiPaks
  • Lifetime investigation of high power IGBT modules
    J. Due Proc. of EPE’2011 – Birmingham [2011]
  • Inverter design for hybrid electrical vehicles considering mission profiles
    D. Hirschmann IEEE Conference on Vehicle Power and Propulsion 7-9 : 1 ~ 6 [2005]
  • Future on power electronics for wind turbine systems
    F. Blaabjerg IEEE J. Emerg. Sel. Topics Power Electron. 1 (3) : 139 ~ 152 [2013]
  • Fundamental frequency and mission profile wearout of IGBT in DFIG converters for windpower
    D. Weiss Proc. of EPE 13 : 1 ~ 6 [2013]
  • Five years of operating experience at a large, utility-scale photovoltaic generating plant
    L. M. Moore Journal of Prog. Photovolt: Res. Appl 16 (3) : 249 ~ 259 [2008]
  • Examples for failures in power electronics systems
    E. Wolfgang [2007]
  • Doubly Fed Induction Machine-Modeling and Control for Wind Energy Generation
    G. Abad IEEE Press [2011]
  • Determination of Fragments of Multiaxial Service Loading Strongly Influencing the Fatigue of Machine Components
    A. Niesłony Mechanical Systems and Signal Processing 23 (8) : 2712 ~ 2721 [2009]
  • Cumulative damage in fatigue
    M. A. Miner Journal of Applied Mechanics (12) : A159 ~ A164 [1945]
  • Building-in reliability into power electronics systems
    E. Wolfgang The World of Electronic Packaging and System Integration : 246 ~ 252 [2005]
  • An overview of the reliability prediction related aspects of high power IGBTs in wind power applications
    C. Busca Microelectronics Reliability 51 (9-11) : 1903 ~ 1907 [2011]
  • An industry-based survey of reliability in power electronic converters
    S. Yang IEEE Trans. Ind. Appl. 47 (3) : 1441 ~ 1451 [2011]
  • A new lifetime model for advanced power modules with sintered chips and optimized Al wire bonds
    U. Scheuermann in Proc. of PCIM 2013, pp : 810 ~ 813 [2013]
  • A Review of the state of the art of power electronics for wind turbines
    Z. Chen IEEE Trans. Power Electron. 24 (8) : 1859 ~ 1875 [2009]