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Comparative study of SPWM And SVPWM cascaded h-bridge multilevel inverter

机译:SPWM和SVPWM级联h桥多电平逆变器的比较研究

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Large electric drives and utility applications require modern power electronics converter like cascaded H-bridge multilevel inverter (CHB) with separated DC sources is clearly the most practical topology for use as a power converter for medium & high power applications due to their modularization and extensibility. The H-bridge inverter eliminates the large number of bulky transformers, clamping diodes and flying capacitors. Cascaded multilevel inverter (MLI) is contemplated to be suitable for medium & high power applications. There are many pulse-width modulation (PWM) techniques developed for controlling multilevel inverter, among these, SVM is the most popular one due to its simplicity both in hardware and software. But the SVM becomes very difficult to achieve when the levels increases. To simplify the SVM at high level, several improved methods have been proposed in many literatures. In this report, SPWM and SVPWM controlled cascaded H-bridge multilevel inverter for large motor drives is designed, analysed and compared with conventional inverter, by simulating in MATLAB simulink software.
机译:大型电力驱动器和公用事业应用需要现代电力电子转换器,例如具有分离的直流电源的级联H桥多电平逆变器(CHB),由于其模块化和可扩展性,显然是最适合用作中高功率应用功率转换器的拓扑。 H桥逆变器省去了大量笨重的变压器,钳位二极管和飞跨电容器。级联多电平逆变器(MLI)被认为适用于中功率和高功率应用。开发了许多用于控制多电平逆变器的脉冲宽度调制(PWM)技术,其中,SVM由于其在硬件和软件方面的简单性而成为最受欢迎的技术。但是,当级别增加时,SVM很难实现。为了从高层简化SVM,许多文献中提出了几种改进的方法。在本报告中,通过在MATLAB simulink软件中进行仿真,设计,分析和比较了用于大型电机驱动器的SPWM和SVPWM控制的级联H桥多电平逆变器。

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