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Capacitor Voltage Balancing of Three-Phase Neutral-Point-Clamped Rectifier Using Modified Reference Vector

机译:使用修正参考矢量的三相中性点钳位整流器的电容器电压平衡

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This paper presents a control strategy using optimized switching sequences which results in capacitor voltage balancing of a three-phase neutral-point-clamped rectifier. In front end rectifiers, magnitude and lag angle of reference current vector (w.r.t supply voltage vector) varies depending upon amount of reactive power compensation and load current. Accordingly, the effectiveness of small and medium vectors (using SVPWM) for same switching state varies in each sector and its regions. This observation along with detailed analysis of current pattern for both the capacitors and their effect on neutral point voltage forms the basis of the proposed approach, which is to modify the reference vector for changing the number of sampling periods within each sector and its regions. The rectifier exhibits excellent performance in terms of other critical parameters like unity input power factor, low input current THD, minimum possible switching losses, reduced-rippled, and well-regulated dc-bus voltage, particularly, the capacitor voltage balancing. The proposed control algorithm is tested through exhaustive simulations and validated through experimental results obtained from a laboratory prototype of the rectifier.
机译:本文提出了一种使用优化开关序列的控制策略,该控制策略可实现三相中性点钳位整流器的电容器电压平衡。在前端整流器中,参考电流矢量(w.r.t电源电压矢量)的大小和滞后角根据无功功率补偿和负载电流的大小而变化。因此,在每个扇区及其区域中,相同开关状态的中小型矢量(使用SVPWM)的有效性会有所不同。该观察结果以及对电容器的电流模式的详细分析及其对中性点电压的影响构成了所提出方法的基础,该方法是修改参考矢量,以更改每个扇区及其区域内的采样周期数。整流器在其他关键参数方面表现出卓越的性能,例如单位输入功率因数,低输入电流THD,最小可能的开关损耗,降低的纹波和良好调节的直流母线电压,尤其是电容器电压平衡。所提出的控制算法已通过详尽的仿真进行了测试,并通过从整流器实验室原型获得的实验结果进行了验证。

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