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      IEC 61400-27에 근거한 Type 4 풍력발전 시스템의 전기적 시뮬레이션 모델 개발 = Development of Type 4 Electrical Simulation Model for Wind Power Generation System according to IEC 61400-27

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      https://www.riss.kr/link?id=A105022609

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      To define the generic simulation model for wind power generation system, International Electrotechnical Commission(IEC) is preparing international standards. The generic model speeds up the simulation and decreases the time for the assessment analysis. This paper introduces the new international standard of IEC 61400-27-1. And it is explained the power control of type 4, which is connected through a full size converter. According to the standard, simulation model is developed using Matlab/Simulink. A sample 2 MW turbine parameters are used for simulation results. The validation for simulation model will be executed by comparison of the field test.
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      To define the generic simulation model for wind power generation system, International Electrotechnical Commission(IEC) is preparing international standards. The generic model speeds up the simulation and decreases the time for the assessment analysis...

      To define the generic simulation model for wind power generation system, International Electrotechnical Commission(IEC) is preparing international standards. The generic model speeds up the simulation and decreases the time for the assessment analysis. This paper introduces the new international standard of IEC 61400-27-1. And it is explained the power control of type 4, which is connected through a full size converter. According to the standard, simulation model is developed using Matlab/Simulink. A sample 2 MW turbine parameters are used for simulation results. The validation for simulation model will be executed by comparison of the field test.

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      참고문헌 (Reference)

      1 FGW, "Technical Guidelines for Power Generating Units - Part4 : Demands on Modeling and Validation Simulation Models of the Electrical Characteristics of Power Generating Units and Systems" FGW 2009

      2 FGW, "Technical Guidelines for Power Generating Units - Part3 : Determination of Electrical Characteristics of Power Generating Units Connected to MV, HV and EHV Grids" FGW 2009

      3 Sorensen, P., "Overview, status and outline of the new IEC 61400-27 electrical simulation models for wind power generation" 2011

      4 Chandrasekaran, S., "Modeling and Simulation of Grid Connected Wind Energy Conversion System (WECS) Based on a Doubly Fed Induction Generator (DFIG)" 2011

      5 "IEC 61400-27-1, 2015, Wind turbines -Part 27-1: Electrical simulation models - Wind turbines"

      6 Abildgaard, H., "IEC 61400-27-1 Electrical simulation models for wind power generation" 2010

      7 송승호, "IEC 61400-27 국제규격 제정을 위한 위원회 활동 보고 한국풍력에너지학회 춘계학술" 207-210, 2011

      8 E.ON-Netz, "Grid Code—Highand Extra HighVoltage" E.ON Netz GmbH 2003

      9 Pourbeik, P., "Generic stability models for type 3 & 4 wind turbine generators for WECC" 1-5, 2013

      10 "Generic Models and Model Validation for Wind and Solar PV Generation: Technical Update"

      1 FGW, "Technical Guidelines for Power Generating Units - Part4 : Demands on Modeling and Validation Simulation Models of the Electrical Characteristics of Power Generating Units and Systems" FGW 2009

      2 FGW, "Technical Guidelines for Power Generating Units - Part3 : Determination of Electrical Characteristics of Power Generating Units Connected to MV, HV and EHV Grids" FGW 2009

      3 Sorensen, P., "Overview, status and outline of the new IEC 61400-27 electrical simulation models for wind power generation" 2011

      4 Chandrasekaran, S., "Modeling and Simulation of Grid Connected Wind Energy Conversion System (WECS) Based on a Doubly Fed Induction Generator (DFIG)" 2011

      5 "IEC 61400-27-1, 2015, Wind turbines -Part 27-1: Electrical simulation models - Wind turbines"

      6 Abildgaard, H., "IEC 61400-27-1 Electrical simulation models for wind power generation" 2010

      7 송승호, "IEC 61400-27 국제규격 제정을 위한 위원회 활동 보고 한국풍력에너지학회 춘계학술" 207-210, 2011

      8 E.ON-Netz, "Grid Code—Highand Extra HighVoltage" E.ON Netz GmbH 2003

      9 Pourbeik, P., "Generic stability models for type 3 & 4 wind turbine generators for WECC" 1-5, 2013

      10 "Generic Models and Model Validation for Wind and Solar PV Generation: Technical Update"

      11 Perdana, A., "Dynamic models of wind turbines" Chalmers University of Technology 2009

      12 Ellis, A., "Description and Technical Specifications for Generic WTG Models-a status report" IEEE/PES 1-8, 2011

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      2023 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 선정 (재인증) KCI등재
      2019-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2018-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2016-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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