首页> 外文期刊>IEEE Transactions on Power Electronics >Feedforward Modulation for the Neutral-Point-Clamped Converter With Confined Capacitor Voltage Ripples and Reduced Switching Power Losses
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Feedforward Modulation for the Neutral-Point-Clamped Converter With Confined Capacitor Voltage Ripples and Reduced Switching Power Losses

机译:具有受限电容器电压纹波并降低开关功率损耗的中性点钳位转换器的前馈调制

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This article presents a new modulation technique with feedforward compensation for the three-phase three-level neutral-point-clamped converter. With the proposed technique, the capacitor voltage ripples are allowed to vary within certain limits. This enables an optimized design of the converter since the maximum capacitor voltages are predefined. Furthermore, the proposed modulation technique is able to reduce switching power losses compared to modulation techniques that eliminate capacitor voltage ripples completely. The proposed technique is therefore a tradeoff solution between aforementioned techniques and traditional modulation techniques where the capacitor voltage ripples are not limited. In the proposed technique, if the capacitor voltages are within the tolerable specified range, all the phases switch in two consecutive voltage levels in steady state. When the capacitor voltages go beyond the specified limits, one of the three phases is chosen to switch in three levels to inject an appropriate neutral point current for capacitor voltage balance. As the capacitor voltages are allowed to oscillate, the modulation technique is provided with feedforward compensation to avoid producing low-frequency distortion on the output voltages of the converter. Experimental results are presented operating under different loading conditions.
机译:本文提出了一种用于三相三电平中性点钳位转换器的具有前馈补偿的新调制技术。利用所提出的技术,电容器的电压纹波允许在一定范围内变化。由于最大电容器电压是预先定义的,因此可以实现转换器的优化设计。此外,与完全消除电容器电压纹波的调制技术相比,提出的调制技术能够减少开关功率损耗。因此,所提出的技术是前述技术与电容器电压纹波不受限制的传统调制技术之间的权衡解决方案。在所提出的技术中,如果电容器电压在容许的指定范围内,则所有相都在稳态下以两个连续的电压电平切换。当电容器电压超过规定的极限时,选择三相之一来切换三个电平,以注入适当的中性点电流以实现电容器电压平衡。由于允许电容器电压振荡,因此调制技术提供了前馈补偿,以避免在转换器的输出电压上产生低频失真。给出了在不同负载条件下运行的实验结果。

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