风电系统二电平和三电平变流器设计及功率分析

Yunus Çitak
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摘要

今天,日益增长的能源需求促使各国采用可再生能源生产的能源。本文对双馈异步发电机(DFIG)风力发电系统进行了研究和仿真,该系统适用于大功率风力发电机组。该水轮机系统向120kv电网发电,6台1.5 MW机组,总功率9MW,并入25kv配电系统,线路长度30公里,配一台25kv变压器。由于基于DFIG的风力机系统适合于能量的双向流动,所以它由两个依次连接的变流器组成。采用Matlab/ Simulink编程设计了三相两电平变换器和三相三电平变换器,采用正弦脉宽调制技术产生开关信号。在设计的基于dfig的风力机建模中,利用这些变流器与15 m/sn风速下的系统总功率、无功功率和输出电压值进行了比较。对于仿真系统,采用三电平变换器得到了更加稳定的结果。
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Two and Three Level Converter Design and Power Analysis in Wind Turbine System
Today, the increasing need for energy has led countries to energies produced from renewable energy sources. In this study, doubly fed asynchronous generator (DFIG) based wind turbine system suitable for wind turbines with a high power requirement has been examined and simulated. This turbine system generates power to the 120 kV grid with 6 units of 1.5 MW, a total of 9MW power, integrated into the 25 kV distribution system, with a line length of 30 km, and a 25 kV transformer. Due to the fact that the DFIG based wind turbine system is suitable for bidirectional energy flow, it consists of two converters connected one after the other. Three-phase two-level converter and three-phase three-level converter were designed in Matlab/ Simulink program and switching signals were produced with sinusoidal pulse width modulation technique. Total power, reactive power and output voltages of the system values were compared by using these converters and on 15 m/sn wind speed in the DFIG-based wind turbine modeling we designed. For the simulated system, more stable and stable results were obtained with the three-level converter.
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