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Comparative Study of Minimum Ripple Switching Loss PWM Hybrid Sequences for Two-level VSI Drives

机译:两级VSI驱动器的最小纹波开关损耗PWM混合序列的比较研究

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Voltage source inverters (VSIs) are widely used to drive induction motors in industry applications. The quality of output waveforms depends on the switching sequences used in pulse width modulation (PWM). In this work, all existing optimal space vector pulse width modulation (SVPWM) switching strategies are studied. The performance of existing SVPWM switching strategies is optimized to realize a tradeoff between quality of output waveforms and switching losses. This study generalizes the existing optimal switching sequences for total harmonic distortions (THDs) and switching losses for different modulation indexes and reference angles with a parameter called quality factor. This factor provides a common platform in which the THDs and switching losses of different SVPWM techniques can be compared. The optimal spatial distribution of each sequence is derived on the basis of the quality factor to minimize harmonic current distortions and switching losses in a sector; the result is the minimum ripple loss SVPWM (MRSLPWM). By employing the sequences from optimized switching maps, the proposed method can simultaneously reduce THDs and switching losses. Two hybrid SVPWM techniques are proposed to reduce line current distortions and switching losses in motor drives. The proposed hybrid SVPWM strategies are MRSLPWM 30 and MRSLPWM 90. With a low-cost PIC microcontroller (PIC18F452), the proposed hybrid SVPWM techniques and the quality of output waveforms are experimentally validated on a 2 kVA VSI based on a three-phase two-level insulated gate bipolar transistor.
机译:电压源逆变器(VSI)被广泛用于驱动工业应用中的感应电动机。输出波形的质量取决于脉宽调制(PWM)中使用的开关序列。在这项工作中,研究了所有现有的最佳空间矢量脉冲宽度调制(SVPWM)切换策略。优化了现有SVPWM开关策略的性能,以实现输出波形质量与开关损耗之间的折衷。这项研究概括了针对总谐波失真(THD)和不同调制指标和参考角度的开关损耗的现有最佳开关序列,并使用一个称为品质因数的参数。该因素提供了一个通用平台,可以在其中比较不同SVPWM技术的THD和开关损耗。每个序列的最佳空间分布是根据品质因数得出的,以最大程度地减小谐波电流失真和扇区中的开关损耗。结果是最小纹波损耗SVPWM(MRSLPWM)。通过使用来自优化开关图的序列,所提出的方法可以同时降低THD和开关损耗。提出了两种混合SVPWM技术,以减少电动机驱动器中的线路电流失真和开关损耗。提出的混合SVPWM策略为MRSLPWM 30和MRSLPWM90。采用低成本PIC微控制器(PIC18F452),在基于三相两相2VVA VSI的2 kVA VSI上通过实验验证了提出的混合SVPWM技术和输出波形的质量。电平绝缘栅双极晶体管。

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