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Design of Neutral-Point Voltage Controller of a Three-Level NPC Inverter With Small DC-Link Capacitors

机译:具有小型直流环节电容器的三电平NPC逆变器中性点电压控制器的设计

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摘要

A neutral-point-clamped three-level inverter with small dc-link capacitors is presented in this paper. The inverter requires zero average neutral-point current for stable neutral-point voltage. The small dc-link capacitors may not maintain capacitor voltage balance, even with zero neutral-point current. This may happen due to nonlinearities present in the circuit. This requires a fast control of the neutral-point voltage. A simple carrier-based modulation strategy which allows modeling of the neutral-point voltage dynamics as a continuous function of power drawn from the inverter is proposed. This continuous model shows that the neutral-point current is proportional to the power drawn from the inverter, and it enables the use of a well-established classical control theory for the neutral-point voltage controller design. A simple proportional integral controller is designed for the neutral-point voltage control on the basis of the continuous model. The design method for optimum performance is discussed. The implementation of the proposed modulation strategy and the controller is very simple. The controller is implemented in a 7.5-kW induction machine-based drive with only 14 $mu hbox{F}$ dc-link capacitors. Also, the experimental results show that fast and stable performance of the neutral-point voltage controller are achieved and thus verify the validity of the proposed control approach.
机译:本文提出了一种带有小型直流环节电容器的中性点钳位三电平逆变器。逆变器需要零个平均中性点电流才能保持稳定的中性点电压。小型直流链路电容器即使中性点电流为零,也可能无法保持电容器电压平衡。这可能是由于电路中存在非线性而发生的。这需要快速控制中性点电压。提出了一种简单的基于载波的调制策略,该策略允许将中性点电压动态建模为从逆变器获取的功率的连续函数。该连续模型表明,中性点电流与逆变器汲取的功率成正比,并且可以将公认的经典控制理论用于中性点电压控制器设计。在连续模型的基础上,为中性点电压控制设计了一个简单的比例积分控制器。讨论了最佳性能的设计方法。所提出的调制策略和控制器的实现非常简单。该控制器是在基于7.5 kW感应电机的驱动器中实现的,只有14个 $ mu hbox {F} $ dc-链接电容器。实验结果还表明,中性点电压控制器具有快速稳定的性能,从而验证了所提出控制方法的有效性。

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