DC ripple current reduction on multilevel, multiport, single-phase DC/AC converter for renewable energy applications

Mohammed Alsolami, Jin Wang, L. Herrera
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引用次数: 8

Abstract

This paper presents a new approach for DC-link 120 Hz ripple power cancellation in single-phase DC/AC converter for renewable energy applications. The converter utilizes the superior features of the switched capacitor circuit and the gallium nitride devices to achieve high efficiency and power density. The system has two-port, the first acts as a pure capacitor and can achieve continuous variable ac capacitor 0 ~ Cac to absorb the 120 Hz dc ripple power whereas the second port is designed to be the output. A small size DC-link capacitor can be achieved through adjusting the phase angle between the two-ac port voltages of the converter to cancel the second-order frequency. The theoretical analysis confirms that the 2ω component can be entirely eliminated from the system and a 2 kW prototype is built to verify the circuit analysis. Comparing to the conventional H-bridge converter, the ac capacitance can be reduced by 80 times.
用于可再生能源应用的多电平,多端口,单相DC/AC转换器的直流纹波电流降低
本文提出了一种用于可再生能源应用的单相DC/AC变换器中直流链路120 Hz纹波功率消除的新方法。该变换器利用了开关电容电路和氮化镓器件的优越特性,实现了高效率和功率密度。该系统有两个端口,第一个端口作为纯电容,可以实现0 ~ Cac的连续可变交流电容来吸收120 Hz的直流纹波功率,第二个端口设计为输出。通过调整变换器的两个交流端口电压之间的相位角来抵消二阶频率,可以实现小尺寸的直流链路电容。理论分析证实了2ω元件可以完全从系统中消除,并建立了一个2 kW的原型来验证电路分析。与传统的h桥变换器相比,交流电容可减小80倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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