首页> 外文会议>Applied Power Electronics Conference and Exposition >A Novel Time Domain Analysis of the LLC-L Resonant Converter for the Use of the CLL and LLC Resonant Converter
【24h】

A Novel Time Domain Analysis of the LLC-L Resonant Converter for the Use of the CLL and LLC Resonant Converter

机译:用于使用CLL和LLC谐振变换器的LLC-L谐振转换器的新型时域分析

获取原文

摘要

The present work makes an effort to provide an accurate, approximation free time domain analysis of four elements LLC-L resonant converter for the precise modeling of the CLL and LLC resonant converters in high frequency applications. By this, the major contribution of this paper is to introduce the time domain modelling of the CLL resonant converter in the literature. The derived analytical expressions by modeling of LLC-L resonant tank is also useful for modeling of the series LC, parallel CL, series LCL topologies. Closed form solutions are being derived for converter's voltage gain, peak stress, tank RMS current, tank capacitor voltage, zero voltage switching (ZVS) angle etc. as a function of the load, frequency and other circuit parameters. The main feature of this novel time domain analysis has been accurately identifying the zero crossing points of various current flowing through the resonant tank. Analytically generated steady-state waveforms and design curves are verified and are an exact match with PSIM simulation studies. The other contribution of this paper by this way is to generate the accurate steady state waveforms for both LLC and CLL based on developed time domain mathematics. Performance curves are given, design issues are discussed and the resonant tank characteristics are demonstrated on an experimental setup of 320W power, 420V output voltage.
机译:本工作努力提供四元件LLC-L谐振转换器的精确,近似空闲时域分析,用于高频应用中CLL和LLC谐振转换器的精确建模。由此,本文的主要贡献是在文献中引入CLL谐振转换器的时域建模。通过建模LLC-L谐振箱的衍生分析表达也可用于模拟LC,并行CL,串联LCL拓扑的建模。为转换器的电压增益,峰值应力,罐RMS电流,罐电容电压,零电压切换(ZVS)角度等导出闭合形式解决方案作为负载,频率和其他电路参数的函数。该新型时域分析的主要特征已经准确地识别流过共振罐的各种电流的过零点。经过验证了分析生成的稳态波形和设计曲线,与PSIM仿真研究完全匹配。本文通过这种方式对本文的其他贡献是基于发育的时域数学生成LLC和CLL的准确稳态波形。给出了性能曲线,讨论了设计问题,并在320W功率的实验设置中对谐振槽特性进行了说明,420V输出电压。

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