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Single-phase power decoupling technique utilizing Hybrid method with passive and active power decoupling

机译:利用混合方法的无源和有源功率去耦的单相功率去耦技术

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This paper proposes a power decoupling method utilizing active and passive method to improve the power density. The active power decoupling techniques compensate the double-line frequency power ripple with a small capacitor. However, when whole power ripple is compensated by the active power decoupling circuit, the total volume becomes large due to the additional component in comparison with the passive method with large electrolytic capacitor. The proposed method limits the power ripple compensation value of the power decoupling circuit in order to reduce the buffer capacitance or peak capacitor voltage. Instead, the small electrolytic capacitor is installed on DC-link for the power decoupling capability. In this method, the DC-link capacitor is smaller than that in the passive power decoupling circuit owing to the small buffer power and the low ripple current. From the experimental result, the second order harmonics is reduced by 76.8% by the DC active filter with the small capacitor of 60 μF. Finally, the power density of the DC active filter with the hybrid method is improved by 38% in comparison with the whole active power decoupling operation.
机译:提出了一种采用主动和被动方法的功率去耦方法,以提高功率密度。有功功率去耦技术用一个小电容器补偿了双线频率功率纹波。但是,当通过有功功率去耦电路补偿整个功率纹波时,与具有较大电解电容器的无源方法相比,由于增加了额外的分量,总体积会变大。所提出的方法限制了电源去耦电路的电源纹波补偿值,以减小缓冲电容或峰值电容器电压。取而代之的是,将小型电解电容器安装在直流母线上以实现电源去耦能力。在这种方法中,由于缓冲功率小和纹波电流小,直流链路电容器比无源功率去耦电路中的电容器小。从实验结果来看,采用60μF小电容的DC有源滤波器可将二阶谐波降低76.8%。最后,与整个有功功率去耦操作相比,采用混合方法的直流有源滤波器的功率密度提高了38%。

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