多电平逆变器并网DFIG的最大功率提取

R. Sankar, R. Rajarajan, P. Aravindan, S. Shobana
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引用次数: 2

摘要

在所有可再生能源中,风能是最有前途的可再生能源,因此成功地将风能并入电网肯定是一个更好的选择。双馈感应发电机(DFIG)技术允许从风中提取最大的能量,同时在狭窄的速度范围内运行。它具有电力电子变流器产生和吸收无功功率的能力。系统中使用的三电平背靠背AC-DC-AC变换器。这种分析是基于降低转子侧变流器的最大共模电压水平,这在DFIG的轴电压产生中起着关键作用。该方法具有直流链路电容电压平衡和风力发电机输出有功、无功控制等优点。采用多电平逆变器的DFIG旨在整合风力发电场,即使在较弱的电网中,也能提高最大功率注入,减少谐波问题,减少对WTG的影响。该方法将从谐波角度改善输电网电能质量,向电网注入最大功率,改善电压分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum power extraction in grid connected DFIG using multilevel inverter
Wind energy is the most promising renewable among all other renewable and hence successful integration of wind to the grid will certainly a better option. Double fed induction generator (DFIG) technology allows extracting maximum energy from the wind, while operating in narrow speed ranges. It has the ability for power electronic converters to generate and absorb reactive power. A three-level back-to-back AC-DC-AC converter used in the system. This analysis is based on reduction of the maximum common mode voltage levels of the rotor side converter which plays the key role in shaft voltage generation of the DFIG. The advantages of proposed method are: voltage balancing of DC link capacitors and controlling of the active and reactive power delivered by the wind generator. The proposed DFIG with multilevel inverter aims at integrating winds farms even in weaker grid with improved Maximum power injection, Minimum harmonic issues with reduced impact on WTG. The proposed method, will improve the power quality which is delivered to the grid in terms of harmonic, inject the maximum power to the grid and improve the voltage profile.
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