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A Novel No-Dead-Time Sinusoidal Modulation Method for Three Phase Inverter

机译:三相逆变器的无死时间正弦调制新方法

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Although the dead time in pulse-width modulation (PWM) inverters prevents short circuiting of the dc source, it also causes serious problems such as waveform distortion and voltage decreases. In this paper, a novel modulation method that combines the concepts of a six-step square wave and space vector modulation (SVM) is proposed. Compared with the conventional SVM methods in which the dead time should be set to avoid short circuiting problems, the proposed novel no-dead-time modulation method not only increases the switching frequency potential by enabling one transistor at a time in each phase leg without considering dead time setting but also reduces the switching loss with only three transistors operating in every section in one cycle of rotation. The PWM duty ratio formula of the specified section for each power transistor is derived and verified using software for power electronics simulation (PSIM). The simulation model of this novel modulation method is constructed and tested by using a three-phase inductance-resistance load. The simulation results are presented to confirm the validity of the proposed modulation method.
机译:尽管脉冲宽度调制(PWM)逆变器中的停滞时间可以防止直流电源短路,但也会引起严重的问题,例如波形失真和电压降低。在本文中,提出了一种新颖的调制方法,该方法将六步方波和空间矢量调制(SVM)的概念相结合。与必须设置死区时间以避免短路问题的常规SVM方法相比,所提出的新颖的无死区时间调制方法不仅通过在每个相脚中一次启用一个晶体管来增加开关频率电位,而无需考虑死区时间设置,而且还减少了开关损耗,因为一个周期内每个区段中只有三个晶体管工作。使用功率电子仿真(PSIM)软件推导并验证了每个功率晶体管指定部分的PWM占空比公式。该新型调制方法的仿真模型是通过使用三相电感-电阻负载构建和测试的。仿真结果表明了所提出的调制方法的有效性。

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