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An Improved Capacitor Voltage-Balancing Method for Five-Level Diode-Clamped Converters With High Modulation Index and High Power Factor

机译:高调制指数和高功率因数的五电平二极管钳位转换器的一种改进的电容器电压平衡方法

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摘要

The capacitor voltage imbalance is a critical issue of five-level diode-clamped converters (5L-DCC). To address this issue, an inner-hexagon-vector-decomposition-based space-vector modulation (VDSVM-H1) approach is provided in the literature, which obtains the capacitor voltage balancing with high modulation index and high power factor, but renders some drawbacks. To overcome these shortcomings, a novel capacitor voltage balancing method is proposed here. First, the previous VDSVM-H1 approach is modified by introducing six new vector sequences to each triangle and applying a new vector selection rule such that the converter will not violate the 5L-DCC switching mechanism in all operating conditions. Second, the variation of the line-to-line voltage output in one sampling period is restricted to one- or two-level in the optimized region, instead of the three-level in the previous VDSVM-H1 approach, which means less harmonics generating in the ac-side outputs. Finally, the simulation and experimental results show that the proposed method can improve the VDSVM-H1 with convincing results.
机译:电容器电压不平衡是五电平二极管钳位转换器(5L-DCC)的关键问题。为了解决这个问题,文献中提供了一种基于内部六边形矢量分解的空间矢量调制(VDSVM-H1)方法,该方法获得了具有高调制指数和高功率因数的电容器电压平衡,但存在一些缺点。 。为了克服这些缺点,这里提出了一种新颖的电容器电压平衡方法。首先,通过向每个三角形引入六个新的矢量序列并应用新的矢量选择规则来修改以前的VDSVM-H1方法,以使转换器在所有工作条件下都不会违反5L-DCC切换机制。其次,在一个采样周期内,线到线电压输出的变化在优化区域内被限制为一或两级,而不是以前的VDSVM-H1方法中的三级,这意味着产生的谐波更少在交流侧输出中。最后,仿真和实验结果表明,所提方法可以对VDSVM-H1进行改进,具有令人信服的效果。

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