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Three-level DCML fed IPMSM using SPWM and CBSVPWM varying modulation index

机译:使用SPWM和CBSVPWM可变调制指数的三级DCML馈送IPMSM

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A voltage source inverter with variable frequency and variable voltage is applied for three-phase interior permanent magnet synchronous motor (IPMSM) drive for variable speed application. To obtain the required output voltage in the line side of the inverter a suitable pulse width modulation technique is used. The most prominent PWM techniques are Sinusoidal pulse width modulation (SPWM) and Space vector pulse width modulation (SVPWM). SPWM is simple and easy method to generate pulses for inverter, whereas SVPWM is an accurate method and generate less harmonic distortion compared to SPWM. However there is a lot of complexity involved in calculation of angle and sector as the level increases with SVPWM. To overcome this a similar and easy method known as unified pulse with modulation also know as carrier based space vector pulse width modulation technique(CBSVPWM is described using the concept of effective time. By using this method the inverter output voltage is directly synthesized by the effective times and the voltage modulation task can be greatly simplified. In this paper an IPMSM drive using CBSVPWM is simulated using MATLAB/SIMULINK software and its performance is compared with SPWM by varying modulation index (MI). The simulation study reveals that CBSVPWM simple and easy method which utilizes dc bus voltage more effectively and generates less THD compared to SPWM.
机译:可变频率和可变电压的电压源逆变器用于三相内部永磁同步电动机(IPMSM)的变速驱动。为了在逆变器的线路侧获得所需的输出电压,使用了合适的脉冲宽度调制技术。最杰出的PWM技术是正弦脉冲宽度调制(SPWM)和空间矢量脉冲宽度调制(SVPWM)。 SPWM是一种为逆变器生成脉冲的简便方法,而SVPWM是一种精确的方法,与SPWM相比,它产生的谐波失真更少。但是,随着电平随着SVPWM的增加,角度和扇形的计算会涉及很多复杂性。为了克服这一问题,采用有效时间的概念描述了一种相似且简便的方法,即统一脉冲调制(又称为基于载波的空间矢量脉冲宽度调制技术)(CBSVPWM),通过这种方法,变频器的输出电压可以通过有效时间直接合成。通过MATLAB / SIMULINK软件对采用CBSVPWM的IPMSM驱动器进行仿真,并通过改变调制指数(MI)将其性能与SPWM进行了比较,仿真研究表明CBSVPWM简单易行与SPWM相比,该方法可以更有效地利用直流母线电压并产生更少的THD。

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