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一种移相全桥ZVZCS PWM DC_DC变换器的研究及改进

作者:张劲武 日期:2009-08-18/span> 浏览:3760 查看PDF文档

一种移相全桥ZVZCS PWM DC_DC变换器的研究及改进

张劲武
(浙江大学 信息科学与工程学院,浙江 杭州 310027)

摘要:针对零电压零电流开关(ZVZCS)全桥变换器在轻载情况下,超前臂零电压开关(ZVS)效果不佳的问题,对其进行了改进,增加了由2只电容器及1只电感器组成的辅助电路;讨论并提出了一种基于两个独立变压器串联的带辅助电路的新型高效ZVZCS全桥变换器。该变换器的超前臂实现了零电压开关,滞后臂实现了零电流开关(ZCS)。仿真试验结果证明:该方法改善了超前臂ZVS效果不佳的缺陷,同时该变换器是简单可靠的。
关键词:变换器;移相控制;软开关;零电压零电流开关
中图分类号:TM41文献标识码:A文章编号:1001-4551(2009)08-0072-04

Research and improvement of a novel ZVZCS PWM DC_DC full bridge converter
ZHANG Jinwu
(College of Information Science & Engineering, Zhejiang University, Hangzhou 310027, China)
Abstract: Aiming that the zero voltage switching(ZVS) of this zerovoltage zerocurrent switching(ZVZCS) pulse width modulation(PWM) DC_DC full bridge converters leading leg switches could not be realized in the light load period, a simple auxiliary circuit consisted of two capacitors and one inductor were added before the leading leg. A novel ZVZCSPWM fullbridge topology with twotransformer structure with auxiliary circuit was presented. The zero current switching(ZVS) for leading leg switches and zero current switching(ZCS) for lagging leg switches were achieved. The emulation results prove that the proposed converter has improve the ZVS for leading leg, also has a simple and robust structure.
Key words: converter; transformer; softswitching; zerovoltage zerocurrent switching(ZVZCS)
参考文献(References):
[1]RUAN X B, YAN Y G. A novel zerovoltage and zerocurrentswitching PWM fullbridge converter using two diodes in series with the lagging leg[J]. IEEE Trans. on Power Electronics,2001,48(4):777-785.
[2]RUAN X B, YAN Y G. An improved phaseshifted zerovoltage and zerocurrent switching PWM converter[C]//IEEE Applied Power Electronics Conference and exposition,1998:811-814.
[3]KOO G B, MOON G W, YOUN M J. Analysis and design of phase shift full bridge converter with seriesconnected two transformers[J]. IEEE Trans. on Power Electronics,2004,19(2):411- 417.
[4]王夏,吕征宇.一种新型移相全桥ZVZCS PWM变换器拓扑[J].电源技术应用,2006,9(7):15-20.
[5]李升,姜久春,张维戈.新型ZVZCS全桥变换器的研究及其改进[J].电力电子技术,2008,42(2):21-23.



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