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首页> 外文期刊>International review of electrical engineering >Implementation of 48 V Series-Input Parallel-Output Zero-Voltage Switching Converter Using Secondary Resonant Technique
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Implementation of 48 V Series-Input Parallel-Output Zero-Voltage Switching Converter Using Secondary Resonant Technique

机译:使用二次谐振技术实现48 V系列输入并联零电压开关转换器

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This research paper aims to propose a series-input parallel-output zero-voltage switching converter (SIPO ZVS converter) by using the secondary resonant technique for achieving the Zero-Voltage-Switching (ZVS) condition for all the main switching devices in the proposed converter. Two half-bridge converters are applied for the proposed converter, connected in series at the input side and in parallel at the output side of the proposed converter (SIPO technique). By using the SIPO technique, the voltage stress on the main switching devices is decreased to be a half of the input voltage or V_(dc)/2. This leads to the reduction of rated voltage of main switching devices. The rated current of the rectifier diodes is also decreased because of the current sharing behavior. Moreover, the phase-shifted control method is analyzed in order to comprehend the impact on the ripple current at the output side. Finally, the prototype of the proposed converter has been designed, built, and tested in order to confirm the effectiveness of the proposed converter.
机译:本研究文件旨在通过使用次级谐振技术来提出串联输入并联零电压开关转换器(SIPO ZVS转换器),以实现所提出的所有主开关设备的零电压切换(ZVS)条件转换器。两个半桥转换器适用于所提出的转换器,在输入侧串联连接,并在所提出的转换器的输出侧并联(SIPO技术)。通过使用SIPO技术,主开关装置上的电压应力降低为输入电压的一半或V_(DC)/ 2。这导致主开关装置的额定电压的降低。由于当前共享行为,整流二极管的额定电流也会降低。此外,分析了相移控制方法以便理解输出侧对纹波电流的影响。最后,已经设计,构建和测试了所提出的转换器的原型,以确认所提出的转换器的有效性。

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