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Impedance Source Inverter for Wind Turbine Driven Permanent Magnet Generator

机译:风力发电机用永磁式阻抗源逆变器

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This paper presents a Z-source inverter for Wind Energy Conversion System. The main thrust in Wind Energy Conversion System (WECS) is to maintain a constant voltage at the output in spite of variation in wind velocity. The Z-source inverter has been identified to exhibit in steady-state, both voltage buck-and boost-capabilities. It employs a unique impedance network included between the dc power source and converter circuit. The power conversion efficiency of Z-source inverter is appreciably improved because of the traditional three-stage conversion system, consist of rectifier, boost chopper and inverter, replaced by a two stage conversion systems comprising of rectifier and Z-source inverter. All the traditional pulse width-modulation (PWM) schemes can be used to control the Z-source inverter. When the dc voltage is high enough to generate the desired ac output voltage, normal PWM is used. While the dc voltage is not enough to directly generate a desired output voltage, a modified PWM with shoot-through zero states is employed to boost the voltage. The proposed Z-source inverter with PMG and wind turbine is modeled and simulated using MATLAB/SIMULINK.
机译:本文提出了一种用于风能转换系统的Z源逆变器。尽管风速变化,但风能转换系统(WECS)的主要目的是保持输出端的恒定电压。 Z源逆变器已被确定具有稳定的状态,既具有降压功能,又具有升压功能。它在直流电源和转换器电路之间采用了独特的阻抗网络。传统的由整流器,升压斩波器和逆变器组成的三级转换系统取代了由整流器和Z源逆变器组成的两级转换系统,Z源逆变器的功率转换效率得到了显着提高。所有传统的脉冲宽度调制(PWM)方案均可用于控制Z源逆变器。当直流电压足够高以产生所需的交流输出电压时,将使用常规PWM。尽管直流电压不足以直接产生所需的输出电压,但采用具有直通零状态的改进型PWM来提高电压。拟议的带有PMG和风力涡轮机的Z源逆变器使用MATLAB / SIMULINK进行建模和仿真。

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