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An Optimized Carrier-Based PWM Method and Voltage Balancing Control for Five-Level ANPC Converters

机译:基于载波的PWM方法和五级ANPC转换器的电压平衡控制

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摘要

Five-level active neutral-point clamped (5L-ANPC) converter is an attractive topology, which is suitable for medium-voltage high-power conversions. Both phase-disposition pulsewidth modulation (PDPWM) and phase-shifted PWM (PSPWM) can be used to control this converter. PDPWM has the best harmonic characteristics, but the conduction and switching losses are not uniformly distributed. Although PSPWM has the natural voltage balance ability for flying-capacitor cells, its quality of line voltage is much worse than PDPWM. In order to combine the advantages of these two modulation methods, an optimized carrier-based PWM method for 5L-ANPC converters is proposed in this article, which features the same harmonic performance with PDPWM and the same control characteristics with PSPWM. An optimized neutral-point potential balance method is also proposed, which can make a tradeoff between the neutral-point potential balancing and the harmonic performance. Simulation and experimental results demonstrated the feasibility of this method.
机译:五级主动中性点钳位(5L-ANPC)转换器是一个有吸引力的拓扑,适用于中压高功率转化。相位分析脉冲宽度调制(PDPWM)和相移PWM(PSPWM)可用于控制该转换器。 PDPWM具有最佳的谐波特性,但传导和开关损耗不均匀分布。虽然PSPWM具有对飞电容器电池的自然电压平衡能力,但其线路电压的质量比PDPWM要差。为了结合这两个调制方法的优点,本文提出了一种用于5L-ANPC转换器的基于载波的PWM方法,其具有与PDPWM和PSPWM相同的控制特性相同的谐波性能。还提出了优化的中性点电位平衡方法,其可以在中性点电位平衡和谐波性能之间进行权衡。仿真和实验结果表明了该方法的可行性。

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