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Selective Harmonic Mitigation Technique for Cascaded H-Bridge Converters With Nonequal DC Link Voltages

机译:具有不相等直流母线电压的级联H桥转换器的选择性谐波抑制技术

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摘要

Multilevel converters have received increased interest recently as a result of their ability to generate high quality output waveforms with a low switching frequency. This makes them very attractive for high-power applications. A cascaded H-bridge converter (CHB) is a multilevel topology which is formed from the series connection of H-bridge cells. Optimized pulse width modulation techniques such as selective harmonic elimination or selective harmonic mitigation (SHM-PWM) are capable of preprogramming the harmonic profile of the output waveform over a range of modulation indices. Such modulation methods may, however, not perform optimally if the dc links of the CHB are not balanced. This paper presents a new SHM-PWM control strategy which is capable of meeting grid codes even under nonequal dc link voltages. The method is based on the interpolation of different sets of angles obtained for specific situations of imbalance. Both simulation and experimental results are presented to validate the proposed control method.
机译:由于多电平转换器能够产生具有低开关频率的高质量输出波形,因此近年来引起了越来越多的关注。这使它们对于大功率应用非常有吸引力。级联H桥转换器(CHB)是由H桥单元的串联连接形成的多级拓扑。优化的脉冲宽度调制技术,例如选择性谐波消除或选择性谐波抑制(SHM-PWM),能够在一系列调制指标上对输出波形的谐波轮廓进行预编程。但是,如果CHB的dc链路不平衡,则此类调制方法可能无法达到最佳性能。本文提出了一种新的SHM-PWM控制策略,该策略即使在不相等的直流母线电压下也能够满足电网规范。该方法基于针对特定不平衡情况获得的不同角度集的插值。仿真和实验结果都被提出来验证所提出的控制方法。

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