首页> 外文OA文献 >A phase synchronization control scheme for LCL-T type high-frequency current source in parallel connection
【2h】

A phase synchronization control scheme for LCL-T type high-frequency current source in parallel connection

机译:LCL-T型并联高频电流源的相位同步控制方案

摘要

Considering the applications of high voltage gate driving system and contactless power transmission, a current-based power distribution is adopted as a kind of replacement of voltage based high-frequency Alternating Current (AC) power distribution system. In order to implement high-frequency current source, an LCL-T resonant inverter is examined with constant current characteristic and high conversion efficiency. First, the resonant topology is studied as a high-frequency power source, including circuit principle, operational cycle analysis, and AC analysis. The effective control and high conversion efficiency are both achieved by LCL-T resonant inverter. Second, the phase angle control scheme is explored to improve the synchronization performance in parallel system formed by multiple of LCL-T resonant inverters. Lastly, a prototype of parallel system is evaluated by simulation and experiment results, both of which are constructed by two resonant inverters with rated peak current of 2A, rated output frequency of 30kHz, and rated output power of 100W. The experimental results in accordance with simulation prove that the better phase synchronization of output currents is achieved by the phase angle control. Hence, the high-frequency resonant topology and phase control scheme are a feasible realization of current source that can be used to feed current-based high-frequency power distribution system.
机译:考虑到高压栅极驱动系统和非接触式电力传输的应用,采用基于电流的配电来替代基于电压的高频交流电(AC)配电系统。为了实现高频电流源,研究了具有恒定电流特性和高转换效率的LCL-T谐振逆变器。首先,将谐振拓扑作为高频电源进行研究,包括电路原理,工作周期分析和交流分析。 LCL-T谐振逆变器可实现有效控制和高转换效率。其次,探索了相位角控制方案,以改善由多个LCL-T谐振逆变器构成的并联系统的同步性能。最后,通过仿真和实验结果对并联系统的原型进行了评估,两者均由两个谐振逆变器构成,它们的额定峰值电流为2A,额定输出频率为30kHz,额定输出功率为100W。仿真实验结果表明,通过相位角控制可以实现更好的输出电流相位同步。因此,高频谐振拓扑和相位控制方案是电流源的可行实现,可用于为基于电流的高频配电系统供电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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