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Novel SVPWM switching pattern for high efficiency 15KW current-fed quasi-Z-source inverter in HEV motor drive application

机译:用于高效的新型SVPWM开关图案,用于高效率15kW电流馈电Quasi-Z源逆变器在HEV电机驱动应用中

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The recently proposed current-fed QZSI[1] can buck and boost voltage and provide bidirectional power flow[2–6]. A crucial criterion for the size of three phase PWM converters is the cooling of the power semiconductors and thus determination of power dissipation at certain operating points. In the modified SVPWM control method for this circuit, different PWM sequences can lead to different switching loss, current ripple, total harmonic distortion, and also the voltage spike on the switching devices. In order to select the best PWM sequence to obtain the best performance and efficiency, A complete analysis and calculation for the four mentioned criterions are presented for different sequences. For each criterion, the best sequences are selected to obtain better performance. Finally, the optimized PWM sequence in the modified SVPWM control for this circuit is selected with the optimized hardware design together to achieve the best efficiency at full operation range. The optimized hardware design has been built in the lab, including the optimal design of the coupled inductor, optimal design and selection of Z-source capacitors and output capacitors, the selection of Z-source diode, and the final layout of the hardware. In order to bring the prototype into real application in hybrid electrical vehicle[3], the inverter efficiency is measured according to the motor P-V curve. The estimated efficiency curve and experiment results are plot and compared. The best efficiency at 15kW reaches 97.6% at unity voltage gain.
机译:最近提出的电流馈电QZSI [1]可以降压和升压电压并提供双向动力流[2-6]。三相PWM转换器的尺寸的关键标准是功率半导体的冷却,从而确定在某些操作点处的功率耗散。在该电路的改进的SVPWM控制方法中,不同的PWM序列可以导致不同的开关损耗,电流纹波,总谐波失真,以及开关装置上的电压尖峰。为了选择最佳的PWM序列以获得最佳性能和效率,针对不同的序列呈现了四个上述标准的完全分析和计算。对于每个标准,选择最佳序列以获得更好的性能。最后,使用优化的硬件设计将修改的SVPWM控制中的优化PWM序列选择在一起,在全操作范围内实现最佳效率。该实验室内置了优化的硬件设计,包括耦合电感的最佳设计,最佳设计和Z源电容和输出电容的选择,Z源二极管的选择,以及硬件的最终布局。为了将原型置于混合动力电动车辆的实际应用[3]中,根据电动机P-V曲线测量逆变器效率。估计的效率曲线和实验结果是情节和比较。 15kW的最佳效率在Unity电压增益下达到97.6%。

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