三电平逆变器的空间矢量PWM算法

Urmila Bandaru, Y. S. I. Priyadarshini, M. Sathyanarayana
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摘要

变频和可变电压越来越多地由三电平电压源逆变器提供变速应用。采用合适的脉宽调制技术,在逆变器的线侧获得合适的输出电压。本章研究了三电平二极管箝位或中性点箝位拓扑,这是一种流行的多层次拓扑。调制波的产生采用两种正弦三角形调制方法和两种空间矢量脉宽调制方法。为了产生三个相位的PWM信号,将这些调制波与三角形载波进行比较。采用旋转参考电压矢量代替SPWM中使用的三相调制波,作为SVPWM方法的电压基准。线侧基本变量的幅值和频率分别由参考矢量的幅值和频率控制。由于空间矢量调制比SPWM具有更高的直流母线利用率和更低的谐波失真,已成为三相电压源逆变器常用的PWM技术。在MATLAB/SIMULINK软件中,对四种PWM方法进行了仿真和比较。使用嵌入式编辑器和Matlab编辑器函数构建程序。仿真结果表明,与正弦PWM相比,空间矢量PWM更好地利用了直流母线电压,产生的THD更小,并改善了电容的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Space Vector PWM Algorithms for Three-level Inverter
Variable frequency and variable voltage are increasingly supplied by a three-level voltage source inverter for variable speed applications. The appropriate output voltage at the line side of the inverter is obtained using a suitable pulse width modulation technique. This chapter investigates the three-level Diode Clamped or Neutral Point Clamped topology, which is a popular multi-level topology. The modulation wave is generated using two Sine-triangle methods and two Space Vector Pulse Width Modulation methods. To produce the PWM signals for the three phases, these modulation waves are compared to a triangular carrier. Instead of the three phase modulating waves used in SPWM, a rotating reference voltage vector is used as a voltage reference in SVPWM methods. The magnitude and frequency of the line side's fundamental variable are controlled by the magnitude and frequency of the reference vector, respectively. Because of its higher dc bus utilization and lower harmonic distortion than SPWM, Space Vector Modulation has become a common PWM technique for three-phase Voltage Source Inverters. In MATLAB/SIMULINK software, the four PWM methods are simulated and compared for THD and Capacitor Balance. Embedded Editor and Matlab Editor Functions are used to build the programs. As compared to Sine PWM, simulation results show that Space vector PWM better utilizes dc bus voltage, produces less THD, and improves capacitor balance.
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