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A Novel Fixed Switching Frequency Control Strategy Applied to an Improved Five-Level Active Rectifier

机译:一种应用于改进型五电平有源整流器的新型固定开关频率控制策略

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A novel fixed switching frequency control strategy applied to an improved five-level active rectifier (iFLAR) is proposed. The operation with fixed switching frequency represents a powerful advantage, since the range of the produced harmonics is well identified, and it is possible to design passive filters to mitigate such harmonics. The experimental validation shows that the control strategy allows attaining an ac-side current with reduced total harmonic distortion and high power factor, which is an attractive influence for grid-connected electrical appliances. This contribution is even more relevant with the new paradigm of smart grids where higher levels of power quality are required. A theoretical analysis of the control strategy and the details of its implementation in a digital signal processor are presented. The control scheme and the developed iFLAR were experimentally confirmed using a Iaboratorial prototype, showing its benefits in terms of accuracy, reduced total harmonic distortion and high power factor.
机译:提出了一种新颖的固定开关频率控制策略,该策略应用于改进的五电平有源整流器(iFLAR)。开关频率固定的操作具有强大的优势,因为可以很好地识别产生的谐波的范围,并且可以设计无源滤波器来减轻此类谐波。实验验证表明,该控制策略可以实现交流侧电流,同时降低总谐波失真和高功率因数,这对于并网电气设备具有诱人的影响。在需要更高级别电能质量的智能电网新范例中,这一贡献更加重要。给出了控制策略的理论分析及其在数字信号处理器中的实现细节。该控制方案和开发的iFLAR使用Iaboratorial原型进行了实验确认,显示了其在准确性,减少的总谐波失真和高功率因数方面的优势。

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