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Generalized PWM-based method for multiphase neutral-point-clamped converters with capacitor voltage balance capability

机译:基于广义pWm的多相中性点钳位变换器,具有电容电压平衡能力

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摘要

This paper presents a generalized pulse width modulation (PWM)-based control algorithm for multiphase neutral-point-clamped (NPC) converters. The proposed algorithm provides a zero sequence to be added to the reference voltages that contributes to improve the performance of the converter by: 1) Regulating the neutral-point (NP) current to eliminate/attenuate the low-frequency NP voltage ripples; 2) reducing the switching losses of the power semiconductors; and 3) maximizing the range of modulation indices for linear operation mode. The control method is formulated following a carrier-based PWM approach. Hence, dealing with complex space-vector diagrams to solve the modulation problem for multiphase converters is avoided. The recursive approach means that it can be easily extended to n-phase converters without increasing the complexity and computational burden, making it especially attractive for digital implementation. The proposed method allows regulating the NP voltage without the need for external controllers; therefore, no parameter tuning is required. The algorithm has been tested in a four-leg NPC converter prototype performing as a three- and four-phase system and operating with balanced and unbalanced loads.
机译:本文提出了一种针对多相中性点钳位(NPC)转换器的基于广义脉宽调制(PWM)的控制算法。所提出的算法提供了一个要添加到参考电压的零序列,该零序列有助于通过以下方式改善转换器的性能:1)调节中性点(NP)电流以消除/减弱低频NP电压纹波; 2)降低功率半导体的开关损耗; 3)最大化线性工作模式下的调制指标范围。遵循基于载波的PWM方法来制定控制方法。因此,避免了处理复杂的空间矢量图来解决多相转换器的调制问题。递归方法意味着可以轻松地将其扩展到n相转换器,而不会增加复杂性和计算负担,这使其特别适合数字实现。该方法无需外部控制器即可调节NP电压。因此,不需要参数调整。该算法已在四腿NPC转换器原型中进行了测试,该原型可作为三相和四相系统运行,并在平衡和不平衡负载下运行。

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