首页> 外文会议>International Telecommunications Energy Conference >Evaluation of a delta-connection of three single-phase unity power factor rectifier modules (△-rectifier in comparison to a direct three-phase rectifier realization part II - component stress evaluation, efficiency, control)
【24h】

Evaluation of a delta-connection of three single-phase unity power factor rectifier modules (△-rectifier in comparison to a direct three-phase rectifier realization part II - component stress evaluation, efficiency, control)

机译:评估三个单相单位单位功率因数整流器模块的Δ连接(与直接三相整流器实现相比,△式 - 组件应力评估,效率,控制)

获取原文

摘要

In this paper the voltage and current stress of a delta-connection of three single-phase boost-type unity power factor rectifier modules (△-Rectifier) is analyzed in order to perform a design comparable to a direct three-phase three-level six-switch unity power factor (conventional) rectifier system. The conduction losses of the power semiconductors are calculated using analytical approximations of the average and rms values of the component currents, the switching losses are taken from previous experimental investigations. Based on this data an overview of the estimated power losses is given for the △-Rectifier as well as for the conventional rectifier for 10kW output power, 800VDC output and 320V/400V/480V/530V (rms, line-to-line) mains voltage. These investigations finally lead to efficiency and component count figures. Furthermore, special attention is paid to the control of the whole three-phase system including the DC/DC converter output stages of the line-to-line modules of the △-Rectifier. Finally, topics of the continuation of the research are identified as, e.g., the realization of a prototype in order to verify the theoretical results experimentally also for unbalanced mains voltage conditions and with nonideal components such as nonlinear input inductors employing iron powder cores and the analysis of a △-Rectifier being formed by single-stage SEPIC-type line-to-line modules.
机译:在本文中,分析了三种单相升压型Unity功率因数整流器(△-Rectifififififier)的Δ连接的电压和电流应力,以便执行与直接三阶段三级六级相当的设计-Switch Unity功率因数(传统)整流系统。使用组件电流的平均值和RMS值的分析近似来计算功率半导体的导通损耗,从先前的实验研究中取出开关损耗。基于该数据,给出了估计功率损耗的概述,以及用于10kW输出功率的传统整流器,800VDC输出和320V / 400V / 480V / 530V(RMS,线到线)主电源电压。这些调查最终导致效率和组件数量。此外,特别关注整个三相系统的控制,包括△-Rectififier的线到线模块的DC / DC转换器输出级。最后,将研究的延续的主题被识别为例如原型的实现,以便在实验上实验验证理论结果,用于实验上用于不平衡的电源电压条件和非线性组分,例如采用铁粉核的非线性输入电感器和分析通过单级剖面线到线模块形成的△-rectifier。

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