在电网综合DFIG中实施多级逆变技术以降低总谐波畸变

Sarika Shrivastava, A. Tripathi, K. S. Verma
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引用次数: 1

摘要

多电平逆变器技术正被整合到各种基于可再生能源的发电技术中,如风能和太阳能,用于更高的电压和功率应用。基于双馈感应发电机(DFIG)的风能转换系统是风力发电市场的领先技术,因为它提供了变速,经济可行和高效的替代化石燃料。本文采用两电平脉宽调制(PWM)变换器和三电平PWM变换器对风能转换系统进行了仿真。比较了两种技术在正常工况和故障工况下的性能。观察到,多级逆变器产生更纯净的正弦电压,总谐波失真降低,从而提高了DFIG产生的电力质量。
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Reduction in total harmonic distortion by implementing multi-level inverter technology in grid integrated DFIG
Multi level inverter technology is being incorporated in various renewable energy based power generation technologies like wind and solar for higher voltage and power applications. Doubly fed induction generator (DFIG) based wind energy conversion systems is the leading technology in wind power market as they tender a variable speed, economically feasible and efficient substitute to the fossil fuel. The present paper comprises of a wind energy conversion system which is simulated using two-level pulse width modulation (PWM) converter as well as three level PWM converter. The performance of DFIG is compared using these technologies under normal and fault conditions. It is observed that multi-level inverters generate purer sinusoidal voltage with reduced total harmonic distortion thus bringing an upgrading in the quality of power produced by DFIG.
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