一种新型的双向交流-直流谐振变换器

Sunil Kumar Dube, Ramu Nair, Kalyan Yenduri, P. Das
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引用次数: 0

摘要

通常,交流到直流隔离转换器遵循两级设计方法,其中第一级是交流到直流功率因数校正(PFC)级,然后是用于直流电压调节的谐振变换器级。在现有的拓扑结构中,PFC级和初级侧谐振开关网络被合并到一个单一的开关网络中,从而减少了25%的设备。此外,这些拓扑结构中的交换机是软交换,有利于高开关频率。因此,小体积磁性元件和电容器可用于实现更高的功率密度。然而,它是一种单极电压馈电谐振拓扑结构,而且,功率传输是单向的,限制了功率仅从交流流向直流侧。本文提出了一种具有上述优点的新型隔离式双向双极压馈式交直流变换器。此外,它通过在谐振槽上产生双极电压来解决它们的缺点,并实现双向功率流。提出了一种用于直流链路电压控制和双向功率传输的开关脉冲调制控制技术。在130 kHz开关频率下,在150V (L-L)交流输入电压和200V直流输出电压下,传输1.35 kW的功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Integrated Bidirectional AC to DC Resonant Converter
Conventionally, an AC to DC isolated converter follows a two-stage design approach, wherein the first stage is an AC to DC power factor correction (PFC) stage followed by a resonant converter stage for DC voltage regulation. In existing topologies, the PFC stage and the primary side resonant switch network are merged into a single switch network giving rise to 25% fewer devices. Moreover, the switches in these topologies are soft switched that facilitates high switching frequency. Hence, low volume magnetic components and capacitors can be used to achieve higher power density. However, it is an unipolar voltage-fed resonant topology and also, the power transfer is unidirectional, restricting the power flow only from AC to DC side. This paper proposes a novel isolated bidirectional bipolar voltage-fed AC to DC converter which has all the aforementioned advantages. In addition, it addresses their shortcomings by generating a bipolar voltage across the resonant tanks and realizing bidirectional power flow. A modulation and control technique is proposed for generating switching pulses for DC link voltage control and bidirectional power transfer. These are demonstrated through simulations and experiments, where 1.35 kW power is transferred at 130 kHz switching frequency, 150V (L-L) AC input voltage and 200V output DC voltage.
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