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Single-Phase AC Grid-Tied Inverter with Buck-Type Active Power Decoupling Circuit Operated in Discontinuous Current Mode

机译:单相交流电网栓逆变器,带降压型有功功率去耦电路,以不连续电流模式操作

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摘要

This study presents a novel circuit topology for a single-phase inverter using an active power decoupling circuit operated in discontinuous current mode (DCM). In a conventional single-phase grid-tied inverter, bulky capacitors are used in a DC-link to absorb a power ripple with twice the grid frequency. However, electrolytic capacitors limit a converter's lifetime. In contrast, ceramic capacitors are used in the proposed circuit since the required capacitance is reduced. Furthermore, the active power decoupling circuit in DCM has no inductor inside by utilizing the current zero cross featured in DCM for power ripple compensation modes. An experimental verification using a 1-kW prototype shows a 90.2% current ripple reduction caused by the power ripple with twice the grid frequency. The efficiency exceeds 94% in the 20% region of the rated power to 1-kW through 96.0% of the 650W maximum. According to a theoretical evaluation using a Pareto-front optimization assumed as a 3-kW system, the proposed circuit reaches the maximum power density at 20kHz which is 115% higher than that of the passive power decoupling method. The inductor volume in the proposed circuit is reduced by 30.4% compared to a conventional buck-type active power decoupling circuit.
机译:本研究介绍了使用在不连续电流模式(DCM)中操作的有功功率去耦电路的单相逆变器的新型电路拓扑。在传统的单相网连接逆变器中,庞大的电容器用于DC链路以吸收具有两倍电网频率的功率纹波。但是,电解电容器限制了转换器的寿命。相反,由于所需的电容降低,所以陶瓷电容器用于所提出的电路。此外,通过利用DCM中的电流零十字,DCM中的有功功率去耦电路没有内部的电感器,用于功率纹波补偿模式。使用1-kW原型的实验验证显示电源纹波引起的90.2%电流纹波减少,电网频率是两倍。额定功率的20%区域的效率超过了650W最大值的96.0%的额定功率的94%。根据假定为3 kW系统的静脉前优化的理论评估,所提出的电路达到20kHz的最大功率密度,其比无源功率去耦方法高115%。与传统的降压型有功功率去耦电路相比,所提出的电路中的电感量减少了30.4%。

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