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An Active Filter Method to Eliminate DC-Side Low-Frequency Power for a Single-Phase Quasi-Z-Source Inverter

机译:有源滤波器方法消除单相准Z源逆变器的直流侧低频功率

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摘要

The second harmonic pulsating power flows through the dc side of a single-phase quasi-Z-source inverter (qZSI), which requires bulky capacitor banks and inductors to suppress low-frequency ripple of dc-link voltage and inductor currents in the passive ripple reduction way. However, the resultant huge qZS network seriously deteriorates the system reliability, efficiency, volume, weight, and cost. This paper proposes an active-filter-integrated single-phase qZSI to transfer low-frequency power ripple directly from ac load to active filter's ac capacitor, so that low-frequency power ripple does not present in dc side anymore and constant inductor currents and constant capacitor voltages are ensured. Thus, much small qZS impedance is employed to only smooth high-frequency ripple and active filter's capacitor supports ac voltage (large ripple allowed) with small capacitance. The operation principle, parameter design method, and modeling and control strategy of the proposed topology are investigated. Comparative evaluation, simulation, and experimental results verify the proposed new topology system.
机译:二次谐波脉动功率流过单相准Z源逆变器(qZSI)的dc侧,这需要笨重的电容器组和电感器来抑制直流链路电压的低频纹波和无源纹波中的电感器电流还原方式。但是,由此产生的庞大的qZS网络严重降低了系统的可靠性,效率,体积,重量和成本。本文提出了一种集成了有源滤波器的单相qZSI,可将低频功率纹波直接从交流负载转移到有源滤波器的交流电容器,从而使低频功率纹波不再出现在dc侧,并且电感电流和常数保持恒定。确保电容器电压。因此,采用很小的qZS阻抗仅能平滑高频纹波,有源滤波器的电容器以小电容支持交流电压(允许大纹波)。研究了所提出的拓扑结构的工作原理,参数设计方法以及建模和控制策略。对比评估,仿真和实验结果验证了提出的新拓扑系统。

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