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One dimensional feed-forward modulation of a cascaded H-bridge multi-level converter including capacitor balancing with reduced switching frequency

机译:级联H桥多电平转换器的一维前馈调制,包括电容器平衡和降低的开关频率

摘要

Multi-level converters are well suited to medium and high power applications where the priority is for high quality a.c. currents with low harmonic content and for low switching losses. Suitable modulation schemes must find a good compromise between these two conflicting aims. This paper relates one-dimensional feed-forward modulation (1DFFM) to carrier based modulation. 1DFFM can produce high quality currents despite d.c. capacitor voltage ripple by accounting for measured capacitor voltages in the modulation process and can balance capacitor voltages by eliminating states that cause the capacitor voltages to diverge. It is shown in this paper that this method increases the device switching frequency compared to carrier-based modulation with the same sampling rate. An alternative modulation method is presented which balances the capacitor voltages by assigning commutations to bridges during each sampling period. This approach is less likely to cause two bridges to commutate at the same time so produces a lower device switching frequency than 1DFFM. It is shown experimentally that the two methods produce similar a.c. current distortion and both effectively balance the capacitor voltages .
机译:多电平转换器非常适合优先考虑高质量交流电的中高功率应用。谐波含量低且开关损耗低的电流。合适的调制方案必须在这两个相互矛盾的目标之间找到一个好的折衷方案。本文将一维前馈调制(1DFFM)与基于载波的调制相关。尽管有直流电,但1DFFM仍可产生高质量的电流。通过考虑调制过程中测得的电容器电压来确定电容器电压纹波,并且可以通过消除引起电容器电压发散的状态来平衡电容器电压。本文表明,与具有相同采样率的基于载波的调制相比,该方法提高了设备​​的开关频率。提出了另一种调制方法,该方法通过在每个采​​样周期内为桥分配换向来平衡电容器电压。这种方法不太可能导致两个电桥同时换向,因此产生的器件开关频率比1DFFM低。实验表明,两种方法产生相似的交流电。电流失真并有效平衡电容器电压。

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