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首页> 外文期刊>Power Electronics, IEEE Transactions on >Secondary-Side Phase-Shift-Controlled Dual-Transformer-Based Asymmetrical Dual-Bridge Converter With Wide Voltage Gain
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Secondary-Side Phase-Shift-Controlled Dual-Transformer-Based Asymmetrical Dual-Bridge Converter With Wide Voltage Gain

机译:具有次级端相移控制,基于双变压器的不对称双桥转换器,具有宽电压增益

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摘要

A novel dual-transformer-based asymmetrical dual-bridge (DT-ADB) converter with secondary-side phase-shift control strategy is proposed. The primary side of the DT-ADB converter is a fully active full bridge, and the secondary side is a semiactive bridge comprising of one active leg and two passive legs. The current and power of the two transformers in the converter are shared automatically by adopting primary-side-series and secondary-side-parallel configuration, and the turns ratio of the transformer is reduced by employing two transformers. The high-frequency-link inductor is reduced because the voltage applied on the inductor is reduced compared to previous converters, and hence the efficiency and power density can be improved. Zero-voltage turn-on of all the active switches and zero-current turn-off of all the diodes are achieved in a wide operation range. Furthermore, the turn-off losses of the secondary-side active switches are reduced because only half of the output current flows through the switches. Moreover, the proposed topology offers several other advantages including continuous output current and smaller output filter requirement. The operation principle is analyzed and experimental results are provided to verify the effectiveness and advantages of the proposed converter.
机译:提出了一种具有次级侧相移控制策略的新型基于双变压器的不对称双桥(DT-ADB)转换器。 DT-ADB转换器的初级侧为全有源全桥,次级侧为半有源桥,由一个有源脚和两个无源脚组成。转换器中的两个变压器的电流和功率通过采用初级侧串联和次级侧并联配置自动共享,并且通过使用两个变压器降低了变压器的匝数比。由于与先前的转换器相比,减小了施加在电感器上的电压,因此减小了高频链路电感器,因此可以提高效率和功率密度。所有有源开关的零电压导通和所有二极管的零电流关断在较宽的工作范围内实现。此外,由于只有一半的输出电流流过开关,因此降低了次级侧有源开关的关断损耗。此外,所提出的拓扑还具有其他优点,包括连续输出电流和较小的输出滤波器要求。分析了其工作原理,并提供了实验结果,以验证所提出的转换器的有效性和优势。

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