...
首页> 外文期刊>Serbian Journal of Electrical Engineering >Analysis and design of LCS resonant cell based enhanced zero-voltage transition DC-DC boosting converter
【24h】

Analysis and design of LCS resonant cell based enhanced zero-voltage transition DC-DC boosting converter

机译:基于LCS谐振单元的增强型零电压过渡DC-DC升压转换器的分析与设计

获取原文
           

摘要

An enhanced zero-voltage transition boosting converter (EZVTBC) is introduced here which belongs to higher-order family. It exhibits lower source current and load voltage ripples and also it maintains better voltage gain with respect to traditional step-up converter. The zero-voltage transition is attained with an aid of a LCS resonant cell integrating Lr - Cr resonance tank network along with an extra switch. LCS resonant cell is the modified version of conventional ZVT switch cell and the salient feature of this cell is to eliminate peak current stress and conduction losses of main switch as this remains a predominant problem in hard-switched boost converter and it also improves efficiency. Initially, time domain expressions of EZVTBC are derived using Kirchhoff’s laws for different operational stages to predict the resonant transition phenomenon. The simulation is progressed in PSIM software in order to verify its soft-switching performance on a 12 - 24 V, 30 W converter and also dynamic performance of the converter has been studied with line and load variations. It is found that for rated load conditions, efficiency of the soft-switched converter is improved 5 to 10% approximately and resulted in 97%. Moreover the peak current stress and conduction losses were eliminated.
机译:本文介绍了一种增强型零电压过渡升压转换器(EZVTBC),它属于高阶系列。与传统的升压转换器相比,它具有较低的源电流和负载电压纹波,并且可以保持更好的电压增益。借助集成了Lr-Cr谐振回路网络的LCS谐振单元以及额外的开关,可以实现零电压过渡。 LCS谐振单元是传统ZVT开关单元的改进版本,该单元的显着特征是消除峰值电流应力和主开关的传导损耗,因为这仍然是硬开关升压转换器中的主要问题,并且还提高了效率。最初,EZVTBC的时域表达式是使用基尔霍夫定律针对不同的运行阶段推导的,以预测共振过渡现象。为了验证其在12-24 V,30 W转换器上的软开关性能,在PSIM软件中进行了仿真,并且还针对线路和负载变化研究了转换器的动态性能。可以发现,在额定负载条件下,软开关转换器的效率大约提高了5%至10%,并提高了97%。此外,消除了峰值电流应力和传导损耗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号