중형 풍력터빈의 출력 및 타워 하중저감제어기 설계

Design of Power and Load Reduction Controller for a Medium-Capacity Wind Turbine

초록

A control algorithm for a 100 kW wind turbine is designed in this study. The wind turbine is operating as a variable speed variable pitch (VSVP) status. Also, this wind turbine is a permanent magnet synchronous generator (PMSG) Type. For the medium capacity wind turbine considered in this study, it was found that the optimum tip speed ratios to achieve the maximum power coefficients varied with wind speeds. Therefore a commercial blade element momentum theory and multi-body dynamics based program was implemented to consider the variation of aerodynamic coefficients with respect to Reynolds numbers and to find out the power and thrust coefficients with respect tip speed ratio and blade pitch angles. In the end a basic power controller was designed for below rated, transition and above rated regions, and a load reduction algorithm was designed to reduce tower vibration by the nacelle motion. As a result, damage equivalent Load (DEL) of tower fore-aft has been reduced by 32%. From dynamic simulations in the commercial program, the controller was found to work properly as designed. Experimental validation of the control algorithm will be done in the future.

키워드

중형 풍력터빈(Midium-capacity wind turbine)출력제어(Power control)타워댐퍼(Tower damper)하중저감(Loads reduction)최대출력추종제어(Maximum Power Point Tracking Control)
제목
중형 풍력터빈의 출력 및 타워 하중저감제어기 설계
제목 (타언어)
Design of Power and Load Reduction Controller for a Medium-Capacity Wind Turbine
저자
김관수백인수김철진김현규김형길
발행일
2016-12
유형
Y
저널명
한국태양에너지학회 논문집
36
6
페이지
1 ~ 12