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A Novel SVPWM Algorithm for Five-Level Active Neutral-Point-Clamped Converter

机译:五电平有源中性点钳位转换器的新型SVPWM算法

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摘要

The five-level active neutral-point-clamped (5L-ANPC) converter is becoming an attractive topology of multilevel converter family. A novel SVPWM algorithm based on line voltage coordinate was studied in this paper to overcome shortcomings of the traditional algorithm. Through coordinate transformation, steps of determining the basic vectors and the solution about the basic vector corresponding action time are simplified. Combining with the characteristics of 5L-ANPC converter and the new control algorithm, a method of controlling the voltage balancing of dc-link capacitors and floating-capacitors is proposed. According to the voltage of dc-link capacitors, the suitable switching sequence which can balance the voltage of dc-link capacitors is chosen. The high common-mode voltage will affect the service life of motor and reduce the reliability of the system especially in high-voltage converter. The common-mode voltage is also reduced by choosing the right switching state in this paper. The validity of the proposed method was proved by the experimental results.
机译:五电平有源中性点钳位(5L-ANPC)转换器正成为多电平转换器系列的诱人拓扑。为了克服传统算法的缺点,研究了一种基于线电压坐标的SVPWM算法。通过坐标变换,简化了确定基本矢量的步骤以及有关基本矢量对应动作时间的解。结合5L-ANPC变换器的特点和新的控制算法,提出了一种控制直流环节电容器和浮置电容器电压平衡的方法。根据直流母线电容器的电压,选择可以平衡直流母线电容器电压的合适开关顺序。高共模电压会影响电动机的使用寿命,并降低系统的可靠性,特别是在高压变频器中。通过选择正确的开关状态,还可降低共模电压。实验结果证明了该方法的有效性。

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